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Chemistry For Your Life

en us
A podcast that helps you understand the fascinating chemistry hidden in your everyday life. Have you ever wondered why onions make you cry? Or how soap gets your hands clean? What really is margarine, or why do trees change colors in the fall? Melissa is a chemist, and to answer these questions she started a podcast, called Chemistry for your life! In each episode Melissa explains the chemistry behind one of life’s mysteries to Jam, who is definitely not a chemist, but she explains it in a way that is easy to understand, and totally fascinating. If you’re someone who loves learning new things, or who wonders about the way the world works, then give us a listen.
More details
A podcast that helps you understand the fascinating chemistry hidden in your everyday life. Have you ever wondered why onions make you cry? Or how soap gets your hands clean? What really is margarine, or why do trees change colors in the fall? Melissa is a chemist, and to answer these questions she started a podcast, called Chemistry for your life! In each episode Melissa explains the chemistry behind one of life’s mysteries to Jam, who is definitely not a chemist, but she explains it in a way that is easy to understand, and totally fascinating. If you’re someone who loves learning new things, or who wonders about the way the world works, then give us a listen.
Sources and links

Episodes

Page 1 · 50 per page

#007 Rebroadcast

Melissa finally explains to Jam how microwaves work after making him wait for an entire week. What the heck is going on inside microwaves? How does it do it's thing and make our food tasty? Is it magic?

Support this podcast on Patreon
Buy Podcast Merch and Apparel

Check out our website at chemforyourlife.com

Watch our episodes on YouTube

Find us on Instagram, Twitter, and Facebook @ChemForYourLife

Thanks to our monthly supporters
Sara Hull
Dog Day Dan
Bri .
Summer Alden
Amanda Raymond
Kyle McCray
Justine
Ash
Vince W
Julie S.
Heather Ragusa
Autoclave
Dorien VD
Scott Beyer
Jessie Reder
J0HNTR0Y
Cullyn R
Erica Bee
Elizabeth P
Rachel Reina
Letila
Katrina Barnum-Huckins
Suzanne Phillips
Venus Rebholz
Jacob Taber
Brian Kimball
Kristina Gotfredsen
Timothy Parker
Steven Boyles
Chris Skupien
Chelsea B
Avishai Barnoy
Hunter Reardon

Support this podcast on Patreon Buy Podcast Merch and Apparel

Check out our website at chemforyourlife.com

Watch our episodes on YouTube

Find us on Instagram, Twitter, and Facebook @ChemForYourLife

 


Hosted by Simplecast, an AdsWizz company. See pcm.adswizz.com for information about our collection and use of personal data for advertising.

More description

#007 Rebroadcast

Melissa finally explains to Jam how microwaves work after making him wait for an entire week. What the heck is going on inside microwaves? How does it do it's thing and make our food tasty? Is it magic?

Support this podcast on Patreon
Buy Podcast Merch and Apparel

Check out our website at chemforyourlife.com

Watch our episodes on YouTube

Find us on Instagram, Twitter, and Facebook @ChemForYourLife

Thanks to our monthly supporters
Sara Hull
Dog Day Dan
Bri .
Summer Alden
Amanda Raymond
Kyle McCray
Justine
Ash
Vince W
Julie S.
Heather Ragusa
Autoclave
Dorien VD
Scott Beyer
Jessie Reder
J0HNTR0Y
Cullyn R
Erica Bee
Elizabeth P
Rachel Reina
Letila
Katrina Barnum-Huckins
Suzanne Phillips
Venus Rebholz
Jacob Taber
Brian Kimball
Kristina Gotfredsen
Timothy Parker
Steven Boyles
Chris Skupien
Chelsea B
Avishai Barnoy
Hunter Reardon

Support this podcast on Patreon Buy Podcast Merch and Apparel

Check out our website at chemforyourlife.com

Watch our episodes on YouTube

Find us on Instagram, Twitter, and Facebook @ChemForYourLife

 


Hosted by Simplecast, an AdsWizz company. See pcm.adswizz.com for information about our collection and use of personal data for advertising.

Extract Knowledge
Listen elsewhere

What happens when a chemist and a non-chemist make a podcast together for seven years? Which chemistry lessons stuck, which episode ideas spectacularly refused to cooperate, and does Jam still count as a layperson after all this time? Joined by returning guest Claire, Melissa and Jam celebrate the seventh anniversary of Chemistry For Your Life with listener questions, behind-the-scenes stories, friendship reflections, favorite science facts, and one very large chemistry cookie cake. Come for the chemiversary; stay for the long-running argument about reality TV.

Support this podcast on Patreon Buy Podcast Merch and Apparel

Check out our website at chemforyourlife.com

Watch our episodes on YouTube

Find us on Instagram, Twitter, and Facebook @ChemForYourLife

Timestamps

00:00 — Celebrating seven years of Chemistry For Your Life
01:01 — Special guest Claire—and a chemistry cookie cake
03:04 — Nearly two million downloads and meeting listeners in real life
06:05 — What has the podcast done that Melissa and Jam never expected?
10:34 — The biggest surprises about making a podcast
16:35 — What has changed most over the past seven years?
18:30 — How the podcast changed Melissa and Jam’s friendship
25:24 — What would their past selves think of the show today?
27:24 — Episodes and guest collaborations that never panned out
35:02 — How has Jam used seven years of chemistry in everyday life?
39:09 — Is Jam still a chemistry layperson?
47:40 — Which chemistry concepts are hardest for Jam to understand?
52:12 — Their favorite things they’ve learned from the podcast
01:04:06 — Where do they hope to take the show next?

References from the Episode:

Thanks to our monthly supporters
Sara Hull
Dog Day Dan
Bri .
Summer Alden
Amanda Raymond
Kyle McCray
Justine
Ash
Vince W
Julie S.
Heather Ragusa
Autoclave
Dorien VD
Scott Beyer
Jessie Reder
J0HNTR0Y
Cullyn R
Erica Bee
Elizabeth P
Rachel Reina
Letila
Katrina Barnum-Huckins
Suzanne Phillips
Venus Rebholz
Jacob Taber
Brian Kimball
Kristina Gotfredsen
Timothy Parker
Steven Boyles
Chris Skupien
Chelsea B
Avishai Barnoy
Hunter Reardon

Support this podcast on Patreon Buy Podcast Merch and Apparel

Check out our website at chemforyourlife.com

Watch our episodes on YouTube

Find us on Instagram, Twitter, and Facebook @ChemForYourLife


Hosted by Simplecast, an AdsWizz company. See pcm.adswizz.com for information about our collection and use of personal data for advertising.

More description

What happens when a chemist and a non-chemist make a podcast together for seven years? Which chemistry lessons stuck, which episode ideas spectacularly refused to cooperate, and does Jam still count as a layperson after all this time? Joined by returning guest Claire, Melissa and Jam celebrate the seventh anniversary of Chemistry For Your Life with listener questions, behind-the-scenes stories, friendship reflections, favorite science facts, and one very large chemistry cookie cake. Come for the chemiversary; stay for the long-running argument about reality TV.

Support this podcast on Patreon Buy Podcast Merch and Apparel

Check out our website at chemforyourlife.com

Watch our episodes on YouTube

Find us on Instagram, Twitter, and Facebook @ChemForYourLife

Timestamps

00:00 — Celebrating seven years of Chemistry For Your Life
01:01 — Special guest Claire—and a chemistry cookie cake
03:04 — Nearly two million downloads and meeting listeners in real life
06:05 — What has the podcast done that Melissa and Jam never expected?
10:34 — The biggest surprises about making a podcast
16:35 — What has changed most over the past seven years?
18:30 — How the podcast changed Melissa and Jam’s friendship
25:24 — What would their past selves think of the show today?
27:24 — Episodes and guest collaborations that never panned out
35:02 — How has Jam used seven years of chemistry in everyday life?
39:09 — Is Jam still a chemistry layperson?
47:40 — Which chemistry concepts are hardest for Jam to understand?
52:12 — Their favorite things they’ve learned from the podcast
01:04:06 — Where do they hope to take the show next?

References from the Episode:

Thanks to our monthly supporters
Sara Hull
Dog Day Dan
Bri .
Summer Alden
Amanda Raymond
Kyle McCray
Justine
Ash
Vince W
Julie S.
Heather Ragusa
Autoclave
Dorien VD
Scott Beyer
Jessie Reder
J0HNTR0Y
Cullyn R
Erica Bee
Elizabeth P
Rachel Reina
Letila
Katrina Barnum-Huckins
Suzanne Phillips
Venus Rebholz
Jacob Taber
Brian Kimball
Kristina Gotfredsen
Timothy Parker
Steven Boyles
Chris Skupien
Chelsea B
Avishai Barnoy
Hunter Reardon

Support this podcast on Patreon Buy Podcast Merch and Apparel

Check out our website at chemforyourlife.com

Watch our episodes on YouTube

Find us on Instagram, Twitter, and Facebook @ChemForYourLife


Hosted by Simplecast, an AdsWizz company. See pcm.adswizz.com for information about our collection and use of personal data for advertising.

Published 2026-08-27

Can water air-condition your house?

31 min
View

What exactly is a swamp cooler, and why can it beat the heat in Arizona but leave you sweaty and betrayed in Houston? How can an air conditioner run on water, what does humidity have to do with its effectiveness, and could an icy new invention help prevent overloaded power grids? In the final installment of our air-conditioning series, Melissa and Jam explore evaporative cooling, ancient climate-control tricks, and some promising innovations for a hotter world. It turns out “It’s not the heat, it’s the humidity” is more scientifically accurate, and more annoying, than we’d like.

Support this podcast on Patreon Buy Podcast Merch and Apparel

Check out our website at chemforyourlife.com

Watch our episodes on YouTube

Find us on Instagram, Twitter, and Facebook @ChemForYourLife

Timestamps

00:00 — The happier finale to our air-conditioning trilogy
00:37 — What exactly is a swamp cooler?
02:34 — How water can be used as a refrigerant
04:16 — The benefits and drawbacks of evaporative cooling
06:26 — Why air can only hold so much water
08:08 — How much can a swamp cooler lower the temperature?
08:56 — Why swamp coolers only work in certain climates
09:47 — Are refrigerants basically reusable sweat?
12:55 — Jam explains the complete swamp-cooler process
15:45 — Ancient evaporative cooling technology
17:19 — Could swamp coolers affect indoor air quality?
18:40 — An ice-slurry air conditioner designed to relieve the power grid
25:06 — Could underground temperatures heat and cool our homes?

References from the Episode:

Thanks to our monthly supporters
Sara Hull
Dog Day Dan
Bri .
Summer Alden
Amanda Raymond
Kyle McCray
Justine
Ash
Vince W
Julie S.
Heather Ragusa
Autoclave
Dorien VD
Scott Beyer
Jessie Reder
J0HNTR0Y
Cullyn R
Erica Bee
Elizabeth P
Rachel Reina
Letila
Katrina Barnum-Huckins
Suzanne Phillips
Venus Rebholz
Jacob Taber
Brian Kimball
Kristina Gotfredsen
Timothy Parker
Steven Boyles
Chris Skupien
Chelsea B
Avishai Barnoy
Hunter Reardon

Support this podcast on Patreon Buy Podcast Merch and Apparel

Check out our website at chemforyourlife.com

Watch our episodes on YouTube

Find us on Instagram, Twitter, and Facebook @ChemForYourLife


Hosted by Simplecast, an AdsWizz company. See pcm.adswizz.com for information about our collection and use of personal data for advertising.

More description

What exactly is a swamp cooler, and why can it beat the heat in Arizona but leave you sweaty and betrayed in Houston? How can an air conditioner run on water, what does humidity have to do with its effectiveness, and could an icy new invention help prevent overloaded power grids? In the final installment of our air-conditioning series, Melissa and Jam explore evaporative cooling, ancient climate-control tricks, and some promising innovations for a hotter world. It turns out “It’s not the heat, it’s the humidity” is more scientifically accurate, and more annoying, than we’d like.

Support this podcast on Patreon Buy Podcast Merch and Apparel

Check out our website at chemforyourlife.com

Watch our episodes on YouTube

Find us on Instagram, Twitter, and Facebook @ChemForYourLife

Timestamps

00:00 — The happier finale to our air-conditioning trilogy
00:37 — What exactly is a swamp cooler?
02:34 — How water can be used as a refrigerant
04:16 — The benefits and drawbacks of evaporative cooling
06:26 — Why air can only hold so much water
08:08 — How much can a swamp cooler lower the temperature?
08:56 — Why swamp coolers only work in certain climates
09:47 — Are refrigerants basically reusable sweat?
12:55 — Jam explains the complete swamp-cooler process
15:45 — Ancient evaporative cooling technology
17:19 — Could swamp coolers affect indoor air quality?
18:40 — An ice-slurry air conditioner designed to relieve the power grid
25:06 — Could underground temperatures heat and cool our homes?

References from the Episode:

Thanks to our monthly supporters
Sara Hull
Dog Day Dan
Bri .
Summer Alden
Amanda Raymond
Kyle McCray
Justine
Ash
Vince W
Julie S.
Heather Ragusa
Autoclave
Dorien VD
Scott Beyer
Jessie Reder
J0HNTR0Y
Cullyn R
Erica Bee
Elizabeth P
Rachel Reina
Letila
Katrina Barnum-Huckins
Suzanne Phillips
Venus Rebholz
Jacob Taber
Brian Kimball
Kristina Gotfredsen
Timothy Parker
Steven Boyles
Chris Skupien
Chelsea B
Avishai Barnoy
Hunter Reardon

Support this podcast on Patreon Buy Podcast Merch and Apparel

Check out our website at chemforyourlife.com

Watch our episodes on YouTube

Find us on Instagram, Twitter, and Facebook @ChemForYourLife


Hosted by Simplecast, an AdsWizz company. See pcm.adswizz.com for information about our collection and use of personal data for advertising.

Extract Knowledge
Listen elsewhere

Could a cheaper, more environmentally friendly refrigerant already exist, and could corporate lobbying be helping keep it out of American air conditioners? Why did the chemicals once hailed as safe alternatives become environmental villains, and are their replacements actually much better? Melissa and Jam follow the twisty history of Freon, ozone depletion, greenhouse gases, propane, and air-conditioning regulations to find out why choosing a refrigerant is never as simple as “this one works.” Grab your red string and conspiracy board, because the chemistry drama is heating up.

Support this podcast on Patreon Buy Podcast Merch and Apparel

Check out our website at chemforyourlife.com

Watch our episodes on YouTube

Find us on Instagram, Twitter, and Facebook @ChemForYourLife

Timestamps

00:00 — The chemistry and drama hiding inside refrigerants
02:31 — Is propane an ideal refrigerant?
05:37 — How an AC episode became an eight-hour research rabbit hole
09:57 — What makes a good—and safe—refrigerant?
11:19 — The hazardous chemicals used in early refrigeration
12:08 — The invention of Freon and chlorofluorocarbons
13:18 — How CFCs damage the ozone layer
16:40 — The Montreal Protocol and the next generation of refrigerants
18:08 — Solving ozone depletion while worsening global warming
22:24 — Why isn’t propane widely used in American air conditioners?
25:35 — How US refrigerant regulations differ from international standards
29:02 — The document requesting government protection for synthetic refrigerants
40:42 — What conspiracy theories might actually be true?
50:00 — Coming next: the surprisingly cool science of swamp coolers

References from the Episode:

Thanks to our monthly supporters
Sara Hull
Dog Day Dan
Bri .
Summer Alden
Amanda Raymond
Kyle McCray
Justine
Ash
Vince W
Julie S.
Heather Ragusa
Autoclave
Dorien VD
Scott Beyer
Jessie Reder
J0HNTR0Y
Cullyn R
Erica Bee
Elizabeth P
Rachel Reina
Letila
Katrina Barnum-Huckins
Suzanne Phillips
Venus Rebholz
Jacob Taber
Brian Kimball
Kristina Gotfredsen
Timothy Parker
Steven Boyles
Chris Skupien
Chelsea B
Avishai Barnoy
Hunter Reardon

Support this podcast on Patreon Buy Podcast Merch and Apparel

Check out our website at chemforyourlife.com

Watch our episodes on YouTube

Find us on Instagram, Twitter, and Facebook @ChemForYourLife


Hosted by Simplecast, an AdsWizz company. See pcm.adswizz.com for information about our collection and use of personal data for advertising.

More description

Could a cheaper, more environmentally friendly refrigerant already exist, and could corporate lobbying be helping keep it out of American air conditioners? Why did the chemicals once hailed as safe alternatives become environmental villains, and are their replacements actually much better? Melissa and Jam follow the twisty history of Freon, ozone depletion, greenhouse gases, propane, and air-conditioning regulations to find out why choosing a refrigerant is never as simple as “this one works.” Grab your red string and conspiracy board, because the chemistry drama is heating up.

Support this podcast on Patreon Buy Podcast Merch and Apparel

Check out our website at chemforyourlife.com

Watch our episodes on YouTube

Find us on Instagram, Twitter, and Facebook @ChemForYourLife

Timestamps

00:00 — The chemistry and drama hiding inside refrigerants
02:31 — Is propane an ideal refrigerant?
05:37 — How an AC episode became an eight-hour research rabbit hole
09:57 — What makes a good—and safe—refrigerant?
11:19 — The hazardous chemicals used in early refrigeration
12:08 — The invention of Freon and chlorofluorocarbons
13:18 — How CFCs damage the ozone layer
16:40 — The Montreal Protocol and the next generation of refrigerants
18:08 — Solving ozone depletion while worsening global warming
22:24 — Why isn’t propane widely used in American air conditioners?
25:35 — How US refrigerant regulations differ from international standards
29:02 — The document requesting government protection for synthetic refrigerants
40:42 — What conspiracy theories might actually be true?
50:00 — Coming next: the surprisingly cool science of swamp coolers

References from the Episode:

Thanks to our monthly supporters
Sara Hull
Dog Day Dan
Bri .
Summer Alden
Amanda Raymond
Kyle McCray
Justine
Ash
Vince W
Julie S.
Heather Ragusa
Autoclave
Dorien VD
Scott Beyer
Jessie Reder
J0HNTR0Y
Cullyn R
Erica Bee
Elizabeth P
Rachel Reina
Letila
Katrina Barnum-Huckins
Suzanne Phillips
Venus Rebholz
Jacob Taber
Brian Kimball
Kristina Gotfredsen
Timothy Parker
Steven Boyles
Chris Skupien
Chelsea B
Avishai Barnoy
Hunter Reardon

Support this podcast on Patreon Buy Podcast Merch and Apparel

Check out our website at chemforyourlife.com

Watch our episodes on YouTube

Find us on Instagram, Twitter, and Facebook @ChemForYourLife


Hosted by Simplecast, an AdsWizz company. See pcm.adswizz.com for information about our collection and use of personal data for advertising.

Extract Knowledge
Listen elsewhere

What happens when a chemist ventures onto Reddit to answer the internet’s most pressing science questions? Why does carbon get its own entire branch of chemistry, what makes fireworks burn different colors, and can an invention work even when its inventor has no idea why? Melissa and Jam tackle those mysteries, plus laboratory disasters, stress recovery, wireless charging, and one surprisingly complicated “Am I the Jerk?” dilemma. It’s chemistry support for the internet, because Reddit clearly has plenty of need for it.

Support this podcast on Patreon Buy Podcast Merch and Apparel

Check out our website at chemforyourlife.com

Watch our episodes on YouTube

Find us on Instagram, Twitter, and Facebook @ChemForYourLife

Timestamps

00:00 — Chemistry Support: answering Reddit’s science questions
01:30 — A chemist’s biggest “oh shoot” laboratory moments
05:36 — Jam’s alarming muriatic acid spill story
09:28 — Can inventors discover something without knowing how it works?
11:49 — Why does wireless charging feel like magic?
16:50 — Why does carbon get its own branch of chemistry?
24:30 — Why do metals make flames different colors?
26:51 — What are some science-backed ways to recover from stress?
28:10 — Completing the body’s stress cycle
31:42 — Why rest isn’t optional—even for busy people
32:03 — “Am I the Jerk?”: A student, a failed class, and an awkward favor
36:01 — What grades really tell professors about their students

References from the Episode:

Thanks to our monthly supporters
Sara Hull
Dog Day Dan
Bri .
Summer Alden
Amanda Raymond
Kyle McCray
Justine
Ash
Vince W
Julie S.
Heather Ragusa
Autoclave
Dorien VD
Scott Beyer
Jessie Reder
J0HNTR0Y
Cullyn R
Erica Bee
Elizabeth P
Rachel Reina
Letila
Katrina Barnum-Huckins
Suzanne Phillips
Venus Rebholz
Jacob Taber
Brian Kimball
Kristina Gotfredsen
Timothy Parker
Steven Boyles
Chris Skupien
Chelsea B
Avishai Barnoy
Hunter Reardon

Support this podcast on Patreon Buy Podcast Merch and Apparel

Check out our website at chemforyourlife.com

Watch our episodes on YouTube

Find us on Instagram, Twitter, and Facebook @ChemForYourLife


Hosted by Simplecast, an AdsWizz company. See pcm.adswizz.com for information about our collection and use of personal data for advertising.

More description

What happens when a chemist ventures onto Reddit to answer the internet’s most pressing science questions? Why does carbon get its own entire branch of chemistry, what makes fireworks burn different colors, and can an invention work even when its inventor has no idea why? Melissa and Jam tackle those mysteries, plus laboratory disasters, stress recovery, wireless charging, and one surprisingly complicated “Am I the Jerk?” dilemma. It’s chemistry support for the internet, because Reddit clearly has plenty of need for it.

Support this podcast on Patreon Buy Podcast Merch and Apparel

Check out our website at chemforyourlife.com

Watch our episodes on YouTube

Find us on Instagram, Twitter, and Facebook @ChemForYourLife

Timestamps

00:00 — Chemistry Support: answering Reddit’s science questions
01:30 — A chemist’s biggest “oh shoot” laboratory moments
05:36 — Jam’s alarming muriatic acid spill story
09:28 — Can inventors discover something without knowing how it works?
11:49 — Why does wireless charging feel like magic?
16:50 — Why does carbon get its own branch of chemistry?
24:30 — Why do metals make flames different colors?
26:51 — What are some science-backed ways to recover from stress?
28:10 — Completing the body’s stress cycle
31:42 — Why rest isn’t optional—even for busy people
32:03 — “Am I the Jerk?”: A student, a failed class, and an awkward favor
36:01 — What grades really tell professors about their students

References from the Episode:

Thanks to our monthly supporters
Sara Hull
Dog Day Dan
Bri .
Summer Alden
Amanda Raymond
Kyle McCray
Justine
Ash
Vince W
Julie S.
Heather Ragusa
Autoclave
Dorien VD
Scott Beyer
Jessie Reder
J0HNTR0Y
Cullyn R
Erica Bee
Elizabeth P
Rachel Reina
Letila
Katrina Barnum-Huckins
Suzanne Phillips
Venus Rebholz
Jacob Taber
Brian Kimball
Kristina Gotfredsen
Timothy Parker
Steven Boyles
Chris Skupien
Chelsea B
Avishai Barnoy
Hunter Reardon

Support this podcast on Patreon Buy Podcast Merch and Apparel

Check out our website at chemforyourlife.com

Watch our episodes on YouTube

Find us on Instagram, Twitter, and Facebook @ChemForYourLife


Hosted by Simplecast, an AdsWizz company. See pcm.adswizz.com for information about our collection and use of personal data for advertising.

Extract Knowledge
Listen elsewhere
Published 2026-08-06

How does your AC actually make cold air?

38 min
View

Is your air conditioner secretly doing chemistry while you’re inside pretending summer doesn’t exist? How does it turn hot air into cool air, and why does part of the AC blow out even more heat? In this episode, Melissa and Jam crack open the mysterious black box of air conditioning to explore refrigerants, phase changes, energy transfer, and the surprisingly clever science keeping your house livable. Plus: frozen AC coils, summer survival drinks, and the beginning of Hibiscus Girl Summer.

Support this podcast on Patreon Buy Podcast Merch and Apparel

Check out our website at chemforyourlife.com

Watch our episodes on YouTube

Find us on Instagram, Twitter, and Facebook @ChemForYourLife

Timestamps

00:00 — Could we survive a Texas summer without air conditioning?
01:52 — Opening the mysterious black box that is your AC
02:50 — Traditional air conditioners vs. swamp coolers
03:33 — The two chemistry concepts behind air conditioning
04:38 — Understanding energy transfer through human collisions
05:49 — Phase changes explained using a crowded theater
10:30 — How an AC removes energy from hot air
14:20 — What happens inside the refrigerant coils
15:46 — Cooling and recycling the refrigerant
18:50 — Do refrigerators work the same way?
23:19 — Why would ice form inside a broken AC?
28:42 — Our favorite treats and drinks for surviving hot weather

References from the Episode:

Thanks to our monthly supporters
Sara Hull
Dog Day Dan
Bri .
Summer Alden
Amanda Raymond
Kyle McCray
Justine
Ash
Vince W
Julie S.
Heather Ragusa
Autoclave
Dorien VD
Scott Beyer
Jessie Reder
J0HNTR0Y
Cullyn R
Erica Bee
Elizabeth P
Rachel Reina
Letila
Katrina Barnum-Huckins
Suzanne Phillips
Venus Rebholz
Jacob Taber
Brian Kimball
Kristina Gotfredsen
Timothy Parker
Steven Boyles
Chris Skupien
Chelsea B
Avishai Barnoy
Hunter Reardon

Support this podcast on Patreon Buy Podcast Merch and Apparel

Check out our website at chemforyourlife.com

Watch our episodes on YouTube

Find us on Instagram, Twitter, and Facebook @ChemForYourLife


Hosted by Simplecast, an AdsWizz company. See pcm.adswizz.com for information about our collection and use of personal data for advertising.

More description

Is your air conditioner secretly doing chemistry while you’re inside pretending summer doesn’t exist? How does it turn hot air into cool air, and why does part of the AC blow out even more heat? In this episode, Melissa and Jam crack open the mysterious black box of air conditioning to explore refrigerants, phase changes, energy transfer, and the surprisingly clever science keeping your house livable. Plus: frozen AC coils, summer survival drinks, and the beginning of Hibiscus Girl Summer.

Support this podcast on Patreon Buy Podcast Merch and Apparel

Check out our website at chemforyourlife.com

Watch our episodes on YouTube

Find us on Instagram, Twitter, and Facebook @ChemForYourLife

Timestamps

00:00 — Could we survive a Texas summer without air conditioning?
01:52 — Opening the mysterious black box that is your AC
02:50 — Traditional air conditioners vs. swamp coolers
03:33 — The two chemistry concepts behind air conditioning
04:38 — Understanding energy transfer through human collisions
05:49 — Phase changes explained using a crowded theater
10:30 — How an AC removes energy from hot air
14:20 — What happens inside the refrigerant coils
15:46 — Cooling and recycling the refrigerant
18:50 — Do refrigerators work the same way?
23:19 — Why would ice form inside a broken AC?
28:42 — Our favorite treats and drinks for surviving hot weather

References from the Episode:

Thanks to our monthly supporters
Sara Hull
Dog Day Dan
Bri .
Summer Alden
Amanda Raymond
Kyle McCray
Justine
Ash
Vince W
Julie S.
Heather Ragusa
Autoclave
Dorien VD
Scott Beyer
Jessie Reder
J0HNTR0Y
Cullyn R
Erica Bee
Elizabeth P
Rachel Reina
Letila
Katrina Barnum-Huckins
Suzanne Phillips
Venus Rebholz
Jacob Taber
Brian Kimball
Kristina Gotfredsen
Timothy Parker
Steven Boyles
Chris Skupien
Chelsea B
Avishai Barnoy
Hunter Reardon

Support this podcast on Patreon Buy Podcast Merch and Apparel

Check out our website at chemforyourlife.com

Watch our episodes on YouTube

Find us on Instagram, Twitter, and Facebook @ChemForYourLife


Hosted by Simplecast, an AdsWizz company. See pcm.adswizz.com for information about our collection and use of personal data for advertising.

Extract Knowledge
Listen elsewhere
Published 2026-07-30

Why do diet coke and mentos do that thing?

31 min Transcript
View

#044 Rebroadcast

You know what we're talking about. That spectacular fizzy geyser. This week, Melissa and Jam explore what makes diet coke and mentos go crazy together. Is it love? Is it hate? Is it chemistry? Why diet coke specifically? Or more importantly, why mentos? Let's get into it.

Support this podcast on Patreon
Buy Podcast Merch and Apparel

Check out our website at chemforyourlife.com

Watch our episodes on YouTube

Find us on Instagram, Twitter, and Facebook @ChemForYourLife

References from this episode

  1. Diet Coke and Mentos: What is really behind this physical reaction? - American Journal of Physics 76, 551 (2008)
  2. Diet Coke and Mentos: What is really behind this physical reaction? - Tonya Coffey
  3. Spurting Science: Erupting Diet Coke with Mentos - Scientific American - Science Buddies
 

Thanks to our monthly supporters
Sara Hull
Dog Day Dan
Bri .
Summer Alden
Amanda Raymond
Kyle McCray
Justine
Ash
Vince W
Julie S.
Heather Ragusa
Autoclave
Dorien VD
Scott Beyer
Jessie Reder
J0HNTR0Y
Cullyn R
Erica Bee
Elizabeth P
Rachel Reina
Letila
Katrina Barnum-Huckins
Suzanne Phillips
Venus Rebholz
Jacob Taber
Brian Kimball
Kristina Gotfredsen
Timothy Parker
Steven Boyles
Chris Skupien
Chelsea B
Avishai Barnoy
Hunter Reardon

Support this podcast on Patreon Buy Podcast Merch and Apparel

Check out our website at chemforyourlife.com

Watch our episodes on YouTube

Find us on Instagram, Twitter, and Facebook @ChemForYourLife

 


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More description

#044 Rebroadcast

You know what we're talking about. That spectacular fizzy geyser. This week, Melissa and Jam explore what makes diet coke and mentos go crazy together. Is it love? Is it hate? Is it chemistry? Why diet coke specifically? Or more importantly, why mentos? Let's get into it.

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References from this episode

  1. Diet Coke and Mentos: What is really behind this physical reaction? - American Journal of Physics 76, 551 (2008)
  2. Diet Coke and Mentos: What is really behind this physical reaction? - Tonya Coffey
  3. Spurting Science: Erupting Diet Coke with Mentos - Scientific American - Science Buddies
 

Thanks to our monthly supporters
Sara Hull
Dog Day Dan
Bri .
Summer Alden
Amanda Raymond
Kyle McCray
Justine
Ash
Vince W
Julie S.
Heather Ragusa
Autoclave
Dorien VD
Scott Beyer
Jessie Reder
J0HNTR0Y
Cullyn R
Erica Bee
Elizabeth P
Rachel Reina
Letila
Katrina Barnum-Huckins
Suzanne Phillips
Venus Rebholz
Jacob Taber
Brian Kimball
Kristina Gotfredsen
Timothy Parker
Steven Boyles
Chris Skupien
Chelsea B
Avishai Barnoy
Hunter Reardon

Support this podcast on Patreon Buy Podcast Merch and Apparel

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Published 2026-07-23

Why do people hate organic chemistry?

53 min Transcript
View

#135 Rebroadcast

Well guess what, Melissa is a PhD Doctor now! And you know what that means? She gets to tell us more details about the research she did to get her PhD. Listen to hear what Melissa found as she dove deep into the question "Why do people hate organic chemistry?" for the past few years.

References from this episode

  1. National Research Council, (2012), Discipline-based education research: Understanding and improving learning in undergraduate science and engineering, The National Academies Press.
  2. Graulich N., (2015), The tip of the iceberg in organic chemistry classes: How do students deal with the invisible? Chem. Educ. Res. Pract., 16(1), 9–21.
  3. Xu X. and Lewis J. E., (2011), Refinement of a chemistry attitude measure for college students. J. Chem. Educ., 88(5), 561–568.
  4. Gibbons R. E. and Raker J. R., (2019), Self-beliefs in organic chemistry: Evaluation of a reciprocal causation, cross-lagged model. J. Res. Sci. Teach., 56(5), 598–618.
 

Support this podcast on Patreon
Buy Podcast Merch and Apparel

Check out our website at chemforyourlife.com

Watch our episodes on YouTube

Find us on Instagram, Twitter, and Facebook @ChemForYourLife

 

Thanks to our monthly supporters

Sara Hull
Dog Day Dan
Bri .
Summer Alden
Amanda Raymond
Kyle McCray
Justine
Ash
Vince W
Julie S.
Heather Ragusa
Autoclave
Dorien VD
Scott Beyer
Jessie Reder
J0HNTR0Y
Cullyn R
Erica Bee
Elizabeth P
Rachel Reina
Letila
Katrina Barnum-Huckins
Suzanne Phillips
Venus Rebholz
Jacob Taber
Brian Kimball
Kristina Gotfredsen
Timothy Parker
Steven Boyles
Chris Skupien
Chelsea B
Avishai Barnoy
Hunter Reardon

 

Support this podcast on Patreon
Buy Podcast Merch and Apparel

Check out our website at chemforyourlife.com

Watch our episodes on YouTube

Find us on Instagram, Twitter, and Facebook @ChemForYourLife


Hosted by Simplecast, an AdsWizz company. See pcm.adswizz.com for information about our collection and use of personal data for advertising.

More description

#135 Rebroadcast

Well guess what, Melissa is a PhD Doctor now! And you know what that means? She gets to tell us more details about the research she did to get her PhD. Listen to hear what Melissa found as she dove deep into the question "Why do people hate organic chemistry?" for the past few years.

References from this episode

  1. National Research Council, (2012), Discipline-based education research: Understanding and improving learning in undergraduate science and engineering, The National Academies Press.
  2. Graulich N., (2015), The tip of the iceberg in organic chemistry classes: How do students deal with the invisible? Chem. Educ. Res. Pract., 16(1), 9–21.
  3. Xu X. and Lewis J. E., (2011), Refinement of a chemistry attitude measure for college students. J. Chem. Educ., 88(5), 561–568.
  4. Gibbons R. E. and Raker J. R., (2019), Self-beliefs in organic chemistry: Evaluation of a reciprocal causation, cross-lagged model. J. Res. Sci. Teach., 56(5), 598–618.
 

Support this podcast on Patreon
Buy Podcast Merch and Apparel

Check out our website at chemforyourlife.com

Watch our episodes on YouTube

Find us on Instagram, Twitter, and Facebook @ChemForYourLife

 

Thanks to our monthly supporters

Sara Hull
Dog Day Dan
Bri .
Summer Alden
Amanda Raymond
Kyle McCray
Justine
Ash
Vince W
Julie S.
Heather Ragusa
Autoclave
Dorien VD
Scott Beyer
Jessie Reder
J0HNTR0Y
Cullyn R
Erica Bee
Elizabeth P
Rachel Reina
Letila
Katrina Barnum-Huckins
Suzanne Phillips
Venus Rebholz
Jacob Taber
Brian Kimball
Kristina Gotfredsen
Timothy Parker
Steven Boyles
Chris Skupien
Chelsea B
Avishai Barnoy
Hunter Reardon

 

Support this podcast on Patreon
Buy Podcast Merch and Apparel

Check out our website at chemforyourlife.com

Watch our episodes on YouTube

Find us on Instagram, Twitter, and Facebook @ChemForYourLife


Hosted by Simplecast, an AdsWizz company. See pcm.adswizz.com for information about our collection and use of personal data for advertising.

What if the biggest challenge in chemistry education isn’t helping students survive—but helping them thrive? In this final bonus episode of our BCCE Community Conversation series, Melissa talks with Dr. Leyte Winfield about creating learning environments where students feel like they belong. They discuss moving beyond “weed-out” culture, designing courses that maintain high standards while expanding opportunity, and why the future of chemistry depends on empowering talented students rather than simply filtering them out. It’s a fitting conclusion to a series all about rethinking how we teach and learn chemistry.

 

Important Links

  Timestamps
  • 0:00 – Introducing the final BCCE Community Conversation
  • 2:40 – Meet Leyte Winfield and the vision behind “Shifting the Equilibrium”
  • 4:25 – From “weed out” culture to empowering student success
  • 9:30 – Success-oriented vs. deficit-oriented teaching
  • 13:30 – Practical ways to help students thrive without lowering standards
  • 16:00 – Open deadlines, accountability, and lessons from COVID
  • 18:40 – Connecting chemistry to students’ everyday lives
  • 20:00 – Why organic chemistry shouldn’t be about memorization
  • 22:20 – Rethinking mentoring and preparing the next generation of chemists
  • 27:40 – Wrapping up the BCCE series and looking ahead
 

Support this podcast on Patreon 

Buy Podcast Merch and Apparel

Check out our website at chemforyourlife.com

Watch our episodes on YouTube

Find us on Instagram, Twitter, and Facebook @ChemForYourLife


Hosted by Simplecast, an AdsWizz company. See pcm.adswizz.com for information about our collection and use of personal data for advertising.

More description

What if the biggest challenge in chemistry education isn’t helping students survive—but helping them thrive? In this final bonus episode of our BCCE Community Conversation series, Melissa talks with Dr. Leyte Winfield about creating learning environments where students feel like they belong. They discuss moving beyond “weed-out” culture, designing courses that maintain high standards while expanding opportunity, and why the future of chemistry depends on empowering talented students rather than simply filtering them out. It’s a fitting conclusion to a series all about rethinking how we teach and learn chemistry.

 

Important Links

  Timestamps
  • 0:00 – Introducing the final BCCE Community Conversation
  • 2:40 – Meet Leyte Winfield and the vision behind “Shifting the Equilibrium”
  • 4:25 – From “weed out” culture to empowering student success
  • 9:30 – Success-oriented vs. deficit-oriented teaching
  • 13:30 – Practical ways to help students thrive without lowering standards
  • 16:00 – Open deadlines, accountability, and lessons from COVID
  • 18:40 – Connecting chemistry to students’ everyday lives
  • 20:00 – Why organic chemistry shouldn’t be about memorization
  • 22:20 – Rethinking mentoring and preparing the next generation of chemists
  • 27:40 – Wrapping up the BCCE series and looking ahead
 

Support this podcast on Patreon 

Buy Podcast Merch and Apparel

Check out our website at chemforyourlife.com

Watch our episodes on YouTube

Find us on Instagram, Twitter, and Facebook @ChemForYourLife


Hosted by Simplecast, an AdsWizz company. See pcm.adswizz.com for information about our collection and use of personal data for advertising.

Extract Knowledge
Listen elsewhere
Published 2026-07-16

What’s really happening when our hair gets damaged?

34 min Transcript
View

#028

This week, Melissa and Jam travel even further down the rabbit hole of hair chemistry. How does our hair get damaged? How do we curl, straighten, and perm our hair? What's going on there at the molecular level? Let's find out!

References from this episode

  1. Biochemistry, Edition 4 - Garret and Grisham
  2. Making waves: The chemistry of hair perms - Christine Herman, Chemistry & Engineering News
  3. How Did the 80s Get Hair So Big? - American Chemical Society
  4. The Chemistry of Hair - C. S. Whewell, Ph.D., F.R.I.C., F.T.I.
  5. The Science of Curls - Leidamarie Tirado-Lee
Support this podcast on Patreon Buy Podcast Merch and Apparel

Check out our website at chemforyourlife.com

Watch our episodes on YouTube

Find us on Instagram, Twitter, and Facebook @ChemForYourLife

 

Thanks to our monthly supporters
Sara Hull
Dog Day Dan
Bri .
Summer Alden
Amanda Raymond
Kyle McCray
Justine
Ash
Vince W
Julie S.
Heather Ragusa
Autoclave
Dorien VD
Scott Beyer
Jessie Reder
J0HNTR0Y
Cullyn R
Erica Bee
Elizabeth P
Rachel Reina
Letila
Katrina Barnum-Huckins
Suzanne Phillips
Venus Rebholz
Jacob Taber
Brian Kimball
Kristina Gotfredsen
Timothy Parker
Steven Boyles
Chris Skupien
Chelsea B
Avishai Barnoy
Hunter Reardon

Support this podcast on Patreon Buy Podcast Merch and Apparel

Check out our website at chemforyourlife.com

Watch our episodes on YouTube

Find us on Instagram, Twitter, and Facebook @ChemForYourLife


Hosted by Simplecast, an AdsWizz company. See pcm.adswizz.com for information about our collection and use of personal data for advertising.

More description

#028

This week, Melissa and Jam travel even further down the rabbit hole of hair chemistry. How does our hair get damaged? How do we curl, straighten, and perm our hair? What's going on there at the molecular level? Let's find out!

References from this episode

  1. Biochemistry, Edition 4 - Garret and Grisham
  2. Making waves: The chemistry of hair perms - Christine Herman, Chemistry & Engineering News
  3. How Did the 80s Get Hair So Big? - American Chemical Society
  4. The Chemistry of Hair - C. S. Whewell, Ph.D., F.R.I.C., F.T.I.
  5. The Science of Curls - Leidamarie Tirado-Lee
Support this podcast on Patreon Buy Podcast Merch and Apparel

Check out our website at chemforyourlife.com

Watch our episodes on YouTube

Find us on Instagram, Twitter, and Facebook @ChemForYourLife

 

Thanks to our monthly supporters
Sara Hull
Dog Day Dan
Bri .
Summer Alden
Amanda Raymond
Kyle McCray
Justine
Ash
Vince W
Julie S.
Heather Ragusa
Autoclave
Dorien VD
Scott Beyer
Jessie Reder
J0HNTR0Y
Cullyn R
Erica Bee
Elizabeth P
Rachel Reina
Letila
Katrina Barnum-Huckins
Suzanne Phillips
Venus Rebholz
Jacob Taber
Brian Kimball
Kristina Gotfredsen
Timothy Parker
Steven Boyles
Chris Skupien
Chelsea B
Avishai Barnoy
Hunter Reardon

Support this podcast on Patreon Buy Podcast Merch and Apparel

Check out our website at chemforyourlife.com

Watch our episodes on YouTube

Find us on Instagram, Twitter, and Facebook @ChemForYourLife


Hosted by Simplecast, an AdsWizz company. See pcm.adswizz.com for information about our collection and use of personal data for advertising.

How do we build chemistry classrooms where more students can thrive? In this bonus BCCE Community Conversation preview, Melissa talks with Matt Mio about neurodiversity in chemistry education. They discuss why every student experiences learning differently, how understanding those differences can make us better teachers and colleagues, and why creating more accessible learning environments benefits far more people than we might expect. It’s a thoughtful conversation about curiosity, empathy, and what it means to teach the whole student.

 

Important Links

  Timestamps
  • 0:00 – Introducing the Community Conversation on neurodiversity
  • 2:40 – Meet Matt Mio and why this topic matters to him
  • 6:10 – What the BCCE session will explore: students and faculty
  • 11:00 – Why more educators are thinking differently about neurodiversity
  • 14:00 – Melissa’s ADHD journey and designing courses that help everyone
  • 18:30 – Questions to bring back to your own teaching community
  • 19:10 – Universal Design for Learning and meeting students where they are
  • 24:00 – Why awareness is the best place to start
  • 25:30 – ADHD “superpowers” and different ways of thinking
  • 28:00 – Looking ahead to the Community Conversation at BCCE
 

Support this podcast on Patreon 

Buy Podcast Merch and Apparel

Check out our website at chemforyourlife.com

Watch our episodes on YouTube

Find us on Instagram, Twitter, and Facebook @ChemForYourLife


Hosted by Simplecast, an AdsWizz company. See pcm.adswizz.com for information about our collection and use of personal data for advertising.

More description

How do we build chemistry classrooms where more students can thrive? In this bonus BCCE Community Conversation preview, Melissa talks with Matt Mio about neurodiversity in chemistry education. They discuss why every student experiences learning differently, how understanding those differences can make us better teachers and colleagues, and why creating more accessible learning environments benefits far more people than we might expect. It’s a thoughtful conversation about curiosity, empathy, and what it means to teach the whole student.

 

Important Links

  Timestamps
  • 0:00 – Introducing the Community Conversation on neurodiversity
  • 2:40 – Meet Matt Mio and why this topic matters to him
  • 6:10 – What the BCCE session will explore: students and faculty
  • 11:00 – Why more educators are thinking differently about neurodiversity
  • 14:00 – Melissa’s ADHD journey and designing courses that help everyone
  • 18:30 – Questions to bring back to your own teaching community
  • 19:10 – Universal Design for Learning and meeting students where they are
  • 24:00 – Why awareness is the best place to start
  • 25:30 – ADHD “superpowers” and different ways of thinking
  • 28:00 – Looking ahead to the Community Conversation at BCCE
 

Support this podcast on Patreon 

Buy Podcast Merch and Apparel

Check out our website at chemforyourlife.com

Watch our episodes on YouTube

Find us on Instagram, Twitter, and Facebook @ChemForYourLife


Hosted by Simplecast, an AdsWizz company. See pcm.adswizz.com for information about our collection and use of personal data for advertising.

Extract Knowledge
Listen elsewhere
Published 2026-07-09

What’s the chemistry behind hairspray?

61 min
View

Hairspray seems simple… until you actually stop and think about it. How does it come out as a fine mist? Why doesn’t it dry up inside the can? How can it hold your hair in place without acting like glue? This week we’re unpacking the surprisingly clever chemistry behind one of the most common products in our homes—and discovering it’s far more complicated than either of us expected.

Support this podcast on Patreon Buy Podcast Merch and Apparel

Check out our website at chemforyourlife.com

Watch our episodes on YouTube

Find us on Instagram, Twitter, and Facebook @ChemForYourLife

Timestamps

  • 0:00 – A question inspired by our forensics episode: what is hairspray?
  • 4:40 – The three ingredients inside a can of hairspray
  • 10:40 – How the propellant turns liquid into a fine aerosol spray
  • 18:30 – How polymers create an invisible “hairnet”
  • 29:00 – Why designing hairspray is harder than you might expect
  • 36:20 – How hairspray compares to gel and mousse
  • 45:50 – Fun categories: movies, cast iron, and things that turned out to be more complicated than expected

References from the Episode:

Thanks to our monthly supporters
Sara Hull
Dog Day Dan
Bri .
Summer Alden
Amanda Raymond
Kyle McCray
Justine
Ash
Vince W
Julie S.
Heather Ragusa
Autoclave
Dorien VD
Scott Beyer
Jessie Reder
J0HNTR0Y
Cullyn R
Erica Bee
Elizabeth P
Rachel Reina
Letila
Katrina Barnum-Huckins
Suzanne Phillips
Venus Rebholz
Jacob Taber
Brian Kimball
Kristina Gotfredsen
Timothy Parker
Steven Boyles
Chris Skupien
Chelsea B
Avishai Barnoy
Hunter Reardon

Support this podcast on Patreon Buy Podcast Merch and Apparel

Check out our website at chemforyourlife.com

Watch our episodes on YouTube

Find us on Instagram, Twitter, and Facebook @ChemForYourLife


Hosted by Simplecast, an AdsWizz company. See pcm.adswizz.com for information about our collection and use of personal data for advertising.

More description

Hairspray seems simple… until you actually stop and think about it. How does it come out as a fine mist? Why doesn’t it dry up inside the can? How can it hold your hair in place without acting like glue? This week we’re unpacking the surprisingly clever chemistry behind one of the most common products in our homes—and discovering it’s far more complicated than either of us expected.

Support this podcast on Patreon Buy Podcast Merch and Apparel

Check out our website at chemforyourlife.com

Watch our episodes on YouTube

Find us on Instagram, Twitter, and Facebook @ChemForYourLife

Timestamps

  • 0:00 – A question inspired by our forensics episode: what is hairspray?
  • 4:40 – The three ingredients inside a can of hairspray
  • 10:40 – How the propellant turns liquid into a fine aerosol spray
  • 18:30 – How polymers create an invisible “hairnet”
  • 29:00 – Why designing hairspray is harder than you might expect
  • 36:20 – How hairspray compares to gel and mousse
  • 45:50 – Fun categories: movies, cast iron, and things that turned out to be more complicated than expected

References from the Episode:

Thanks to our monthly supporters
Sara Hull
Dog Day Dan
Bri .
Summer Alden
Amanda Raymond
Kyle McCray
Justine
Ash
Vince W
Julie S.
Heather Ragusa
Autoclave
Dorien VD
Scott Beyer
Jessie Reder
J0HNTR0Y
Cullyn R
Erica Bee
Elizabeth P
Rachel Reina
Letila
Katrina Barnum-Huckins
Suzanne Phillips
Venus Rebholz
Jacob Taber
Brian Kimball
Kristina Gotfredsen
Timothy Parker
Steven Boyles
Chris Skupien
Chelsea B
Avishai Barnoy
Hunter Reardon

Support this podcast on Patreon Buy Podcast Merch and Apparel

Check out our website at chemforyourlife.com

Watch our episodes on YouTube

Find us on Instagram, Twitter, and Facebook @ChemForYourLife


Hosted by Simplecast, an AdsWizz company. See pcm.adswizz.com for information about our collection and use of personal data for advertising.

Great teaching doesn’t happen in isolation—it happens in community. In this bonus BCCE Community Conversation preview, Melissa talks with chemistry educator Dr. Joanne Stewart about communities of practice: groups of educators who come together to share ideas, solve problems, and help one another grow. They explore why teaching is hard to improve on your own, how these communities support both faculty and students, and why meaningful change in chemistry education depends on building relationships, not just sharing resources.

 

Important Links

  Timestamps
  • 0:00 – Introducing the BCCE Community Conversation series
  • 2:40 – Meet Joanne Stewart and her work in chemistry education
  • 5:10 – What is a community of practice?
  • 8:20 – How educators can get involved (even as a “lurker”)
  • 11:50 – Sharing teaching resources and learning from one another
  • 15:30 – Building a “community of communities” in chemistry
  • 18:50 – What this year’s Community Conversation will explore
  • 23:50 – Why lasting educational change requires strong networks
  • 29:20 – BCCE events, communities to explore, and final invitations
Support this podcast on Patreon 

Buy Podcast Merch and Apparel

Check out our website at chemforyourlife.com

Watch our episodes on YouTube

Find us on Instagram, Twitter, and Facebook @ChemForYourLife


Hosted by Simplecast, an AdsWizz company. See pcm.adswizz.com for information about our collection and use of personal data for advertising.

More description

Great teaching doesn’t happen in isolation—it happens in community. In this bonus BCCE Community Conversation preview, Melissa talks with chemistry educator Dr. Joanne Stewart about communities of practice: groups of educators who come together to share ideas, solve problems, and help one another grow. They explore why teaching is hard to improve on your own, how these communities support both faculty and students, and why meaningful change in chemistry education depends on building relationships, not just sharing resources.

 

Important Links

  Timestamps
  • 0:00 – Introducing the BCCE Community Conversation series
  • 2:40 – Meet Joanne Stewart and her work in chemistry education
  • 5:10 – What is a community of practice?
  • 8:20 – How educators can get involved (even as a “lurker”)
  • 11:50 – Sharing teaching resources and learning from one another
  • 15:30 – Building a “community of communities” in chemistry
  • 18:50 – What this year’s Community Conversation will explore
  • 23:50 – Why lasting educational change requires strong networks
  • 29:20 – BCCE events, communities to explore, and final invitations
Support this podcast on Patreon 

Buy Podcast Merch and Apparel

Check out our website at chemforyourlife.com

Watch our episodes on YouTube

Find us on Instagram, Twitter, and Facebook @ChemForYourLife


Hosted by Simplecast, an AdsWizz company. See pcm.adswizz.com for information about our collection and use of personal data for advertising.

Extract Knowledge
Listen elsewhere

What happens when some listeners challenge one of our past episodes? This week we’re revisiting our silicone episodes after several listeners pointed us toward new research. Along the way we answer questions about mosquito wristbands, waterproof mascara, stubborn adhesives, and whether amino acids may have formed on the early Earth after all. It’s an Ask a Chemist episode full of updates, follow-ups, and a reminder that science is always a work in progress.

Support this podcast on Patreon Buy Podcast Merch and Apparel

Check out our website at chemforyourlife.com

Watch our episodes on YouTube

Find us on Instagram, Twitter, and Facebook @ChemForYourLife

Timestamps

  • 0:00 – Revisiting our silicone episodes after new research
  • 2:00 – Does silicone really leach into food, and should we be worried?
  • 10:30 – What we know (and don’t know) about silicone safety
  • 17:30 – Do mosquito patches and wristbands actually work?
  • 23:30 – How does waterproof mascara stay waterproof?
  • 27:20 – A chemistry detour: removing paint and stubborn adhesives
  • 30:20 – The Miller–Urey experiment and the origin of amino acids
  • 33:20 – Wrap-up + send us your chemistry questions

References from the Episode:

Thanks to our monthly supporters
Sara Hull
Dog Day Dan
Bri .
Summer Alden
Amanda Raymond
Kyle McCray
Justine
Ash
Vince W
Julie S.
Heather Ragusa
Autoclave
Dorien VD
Scott Beyer
Jessie Reder
J0HNTR0Y
Cullyn R
Erica Bee
Elizabeth P
Rachel Reina
Letila
Katrina Barnum-Huckins
Suzanne Phillips
Venus Rebholz
Jacob Taber
Brian Kimball
Kristina Gotfredsen
Timothy Parker
Steven Boyles
Chris Skupien
Chelsea B
Avishai Barnoy
Hunter Reardon

Support this podcast on Patreon Buy Podcast Merch and Apparel

Check out our website at chemforyourlife.com

Watch our episodes on YouTube

Find us on Instagram, Twitter, and Facebook @ChemForYourLife


Hosted by Simplecast, an AdsWizz company. See pcm.adswizz.com for information about our collection and use of personal data for advertising.

More description

What happens when some listeners challenge one of our past episodes? This week we’re revisiting our silicone episodes after several listeners pointed us toward new research. Along the way we answer questions about mosquito wristbands, waterproof mascara, stubborn adhesives, and whether amino acids may have formed on the early Earth after all. It’s an Ask a Chemist episode full of updates, follow-ups, and a reminder that science is always a work in progress.

Support this podcast on Patreon Buy Podcast Merch and Apparel

Check out our website at chemforyourlife.com

Watch our episodes on YouTube

Find us on Instagram, Twitter, and Facebook @ChemForYourLife

Timestamps

  • 0:00 – Revisiting our silicone episodes after new research
  • 2:00 – Does silicone really leach into food, and should we be worried?
  • 10:30 – What we know (and don’t know) about silicone safety
  • 17:30 – Do mosquito patches and wristbands actually work?
  • 23:30 – How does waterproof mascara stay waterproof?
  • 27:20 – A chemistry detour: removing paint and stubborn adhesives
  • 30:20 – The Miller–Urey experiment and the origin of amino acids
  • 33:20 – Wrap-up + send us your chemistry questions

References from the Episode:

Thanks to our monthly supporters
Sara Hull
Dog Day Dan
Bri .
Summer Alden
Amanda Raymond
Kyle McCray
Justine
Ash
Vince W
Julie S.
Heather Ragusa
Autoclave
Dorien VD
Scott Beyer
Jessie Reder
J0HNTR0Y
Cullyn R
Erica Bee
Elizabeth P
Rachel Reina
Letila
Katrina Barnum-Huckins
Suzanne Phillips
Venus Rebholz
Jacob Taber
Brian Kimball
Kristina Gotfredsen
Timothy Parker
Steven Boyles
Chris Skupien
Chelsea B
Avishai Barnoy
Hunter Reardon

Support this podcast on Patreon Buy Podcast Merch and Apparel

Check out our website at chemforyourlife.com

Watch our episodes on YouTube

Find us on Instagram, Twitter, and Facebook @ChemForYourLife


Hosted by Simplecast, an AdsWizz company. See pcm.adswizz.com for information about our collection and use of personal data for advertising.

What if chemistry classes were organized around real-world problems instead of chapters in a textbook?In this bonus BCCE Community Conversation preview, Melissa talks with Vicente Talanquer about helping students think like chemists rather than simply memorize chemistry. They explore why authentic, real-world problems can transform learning, how instructors can make meaningful changes without rewriting an entire course, and why teaching chemistry is about developing a way of thinking—not just delivering content.

 

Important Links

Free resources Chemical Thinking Curriculum Structure: https://sites.google.com/site/chemicalthinking/structure

More on Chemical Thinking Curriculum: https://sites.google.com/site/chemicalthinking/

General Chemistry - CLUE textbook & activities: https://www.chemistry.msu.edu/clue/general-chemistry.aspx

Organic Chemistry OCLUE textbook & activities: https://www.chemistry.msu.edu/clue/organic-chemistry.aspx

Time Stamps

  • 0:00 – Introducing the Community Conversation series
  • 2:40 – Meet Vicente Talanquer and this year’s discussion topic
  • 4:10 – What does “authentic phenomena” actually mean?
  • 7:40 – Memorization vs. meaningful understanding
  • 12:10 – The two big questions guiding the Community Conversation
  • 16:25 – What an authentically engaged chemistry classroom looks like
  • 21:40 – Where should instructors begin making changes?
  • 24:30 – Formative vs. summative assessment
  • 26:50 – Free teaching resources and curriculum examples
  • 30:50 – Why Vicente is excited about this year’s BCCE conversations
Support this podcast on Patreon 

Buy Podcast Merch and Apparel

Check out our website at chemforyourlife.com

Watch our episodes on YouTube

Find us on Instagram, Twitter, and Facebook @ChemForYourLife


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More description

What if chemistry classes were organized around real-world problems instead of chapters in a textbook?In this bonus BCCE Community Conversation preview, Melissa talks with Vicente Talanquer about helping students think like chemists rather than simply memorize chemistry. They explore why authentic, real-world problems can transform learning, how instructors can make meaningful changes without rewriting an entire course, and why teaching chemistry is about developing a way of thinking—not just delivering content.

 

Important Links

Free resources Chemical Thinking Curriculum Structure: https://sites.google.com/site/chemicalthinking/structure

More on Chemical Thinking Curriculum: https://sites.google.com/site/chemicalthinking/

General Chemistry - CLUE textbook & activities: https://www.chemistry.msu.edu/clue/general-chemistry.aspx

Organic Chemistry OCLUE textbook & activities: https://www.chemistry.msu.edu/clue/organic-chemistry.aspx

Time Stamps

  • 0:00 – Introducing the Community Conversation series
  • 2:40 – Meet Vicente Talanquer and this year’s discussion topic
  • 4:10 – What does “authentic phenomena” actually mean?
  • 7:40 – Memorization vs. meaningful understanding
  • 12:10 – The two big questions guiding the Community Conversation
  • 16:25 – What an authentically engaged chemistry classroom looks like
  • 21:40 – Where should instructors begin making changes?
  • 24:30 – Formative vs. summative assessment
  • 26:50 – Free teaching resources and curriculum examples
  • 30:50 – Why Vicente is excited about this year’s BCCE conversations
Support this podcast on Patreon 

Buy Podcast Merch and Apparel

Check out our website at chemforyourlife.com

Watch our episodes on YouTube

Find us on Instagram, Twitter, and Facebook @ChemForYourLife


Hosted by Simplecast, an AdsWizz company. See pcm.adswizz.com for information about our collection and use of personal data for advertising.

Extract Knowledge
Listen elsewhere
Published 2026-06-25

How do forensic scientists find fingerprints?

54 min Transcript
View

There are a lot more ways to reveal a fingerprint than the black powder you see on TV.In this second part of our forensic chemistry series with Nicki Stewart, we explore the surprising chemistry behind fingerprints. From powders and iodine vapor to super glue fumes and chemical reactions, we break down how forensic scientists reveal invisible fingerprints—and why choosing the right method depends entirely on the surface, the chemistry, and the evidence they’re trying to preserve.

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  • 0:00 – What are fingerprints, really?
  • 5:30 – What’s actually left behind when you touch something?
  • 9:20 – The two main categories of fingerprint detection
  • 14:00 – How fingerprint powder actually works
  • 18:40 – Iodine fuming and why fingerprints disappear again
  • 25:25 – Revealing fingerprints on sticky tape
  • 29:40 – Ninhydrin and the chemistry behind purple fingerprints
  • 35:05 – The surprising science of super glue fuming
  • 42:20 – Why collecting fingerprints is much harder than TV makes it look
  • 46:10 – Jam’s biggest takeaways from fingerprint chemistry

References from the Episode:

Thanks to our monthly supporters
Sara Hull
Dog Day Dan
Bri .
Summer Alden
Amanda Raymond
Kyle McCray
Justine
Ash
Vince W
Julie S.
Heather Ragusa
Autoclave
Dorien VD
Scott Beyer
Jessie Reder
J0HNTR0Y
Cullyn R
Erica Bee
Elizabeth P
Rachel Reina
Letila
Katrina Barnum-Huckins
Suzanne Phillips
Venus Rebholz
Jacob Taber
Brian Kimball
Kristina Gotfredsen
Timothy Parker
Steven Boyles
Chris Skupien
Chelsea B
Avishai Barnoy
Hunter Reardon

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More description

There are a lot more ways to reveal a fingerprint than the black powder you see on TV.In this second part of our forensic chemistry series with Nicki Stewart, we explore the surprising chemistry behind fingerprints. From powders and iodine vapor to super glue fumes and chemical reactions, we break down how forensic scientists reveal invisible fingerprints—and why choosing the right method depends entirely on the surface, the chemistry, and the evidence they’re trying to preserve.

Support this podcast on Patreon Buy Podcast Merch and Apparel

Check out our website at chemforyourlife.com

Watch our episodes on YouTube

Find us on Instagram, Twitter, and Facebook @ChemForYourLife

  • 0:00 – What are fingerprints, really?
  • 5:30 – What’s actually left behind when you touch something?
  • 9:20 – The two main categories of fingerprint detection
  • 14:00 – How fingerprint powder actually works
  • 18:40 – Iodine fuming and why fingerprints disappear again
  • 25:25 – Revealing fingerprints on sticky tape
  • 29:40 – Ninhydrin and the chemistry behind purple fingerprints
  • 35:05 – The surprising science of super glue fuming
  • 42:20 – Why collecting fingerprints is much harder than TV makes it look
  • 46:10 – Jam’s biggest takeaways from fingerprint chemistry

References from the Episode:

Thanks to our monthly supporters
Sara Hull
Dog Day Dan
Bri .
Summer Alden
Amanda Raymond
Kyle McCray
Justine
Ash
Vince W
Julie S.
Heather Ragusa
Autoclave
Dorien VD
Scott Beyer
Jessie Reder
J0HNTR0Y
Cullyn R
Erica Bee
Elizabeth P
Rachel Reina
Letila
Katrina Barnum-Huckins
Suzanne Phillips
Venus Rebholz
Jacob Taber
Brian Kimball
Kristina Gotfredsen
Timothy Parker
Steven Boyles
Chris Skupien
Chelsea B
Avishai Barnoy
Hunter Reardon

Support this podcast on Patreon Buy Podcast Merch and Apparel

Check out our website at chemforyourlife.com

Watch our episodes on YouTube

Find us on Instagram, Twitter, and Facebook @ChemForYourLife


Hosted by Simplecast, an AdsWizz company. See pcm.adswizz.com for information about our collection and use of personal data for advertising.

What does it mean to teach chemistry like a scientist? In this BCCE Community Conversation preview, Melissa talks with chemistry education researcher Ellen Yezierski about scholarly teaching: making evidence-guided decisions about how we teach and how students learn. They discuss why content knowledge alone isn’t enough, how educators can improve their teaching without becoming full-time researchers, and why some of the best chemistry teaching ideas come from asking better questions about learning.

 

Important Links

 

Time Stamps

0:00 – Why Melissa loves BCCE and chemistry education 2:50 – Meet Ellen Yezierski and the idea of scholarly teaching 4:00 – Moving beyond intuition and using evidence to improve teaching 6:35 – What chemistry educators can learn from cognitive science and education research 8:30 – The biggest challenge: finding time to improve your teaching 11:00 – Why conferences and community matter for innovation 13:45 – Barriers to evidence-based teaching and the risk of changing what’s familiar 16:20 – Applying the same scientific scrutiny to old teaching methods 19:40 – A practical first step toward scholarly teaching 21:00 – Finding useful teaching research without getting overwhelmed 25:20 – Meet the panelists and the ideas they’ll bring to BCCE 29:10 – How the Community Conversation will work 32:35 – Why good teachers are made, not born 34:00 – Filling your teaching cup back up at BCCE

Support this podcast on Patreon 

Buy Podcast Merch and Apparel

Check out our website at chemforyourlife.com

Watch our episodes on YouTube

Find us on Instagram, Twitter, and Facebook @ChemForYourLife


Hosted by Simplecast, an AdsWizz company. See pcm.adswizz.com for information about our collection and use of personal data for advertising.

More description

What does it mean to teach chemistry like a scientist? In this BCCE Community Conversation preview, Melissa talks with chemistry education researcher Ellen Yezierski about scholarly teaching: making evidence-guided decisions about how we teach and how students learn. They discuss why content knowledge alone isn’t enough, how educators can improve their teaching without becoming full-time researchers, and why some of the best chemistry teaching ideas come from asking better questions about learning.

 

Important Links

 

Time Stamps

0:00 – Why Melissa loves BCCE and chemistry education 2:50 – Meet Ellen Yezierski and the idea of scholarly teaching 4:00 – Moving beyond intuition and using evidence to improve teaching 6:35 – What chemistry educators can learn from cognitive science and education research 8:30 – The biggest challenge: finding time to improve your teaching 11:00 – Why conferences and community matter for innovation 13:45 – Barriers to evidence-based teaching and the risk of changing what’s familiar 16:20 – Applying the same scientific scrutiny to old teaching methods 19:40 – A practical first step toward scholarly teaching 21:00 – Finding useful teaching research without getting overwhelmed 25:20 – Meet the panelists and the ideas they’ll bring to BCCE 29:10 – How the Community Conversation will work 32:35 – Why good teachers are made, not born 34:00 – Filling your teaching cup back up at BCCE

Support this podcast on Patreon 

Buy Podcast Merch and Apparel

Check out our website at chemforyourlife.com

Watch our episodes on YouTube

Find us on Instagram, Twitter, and Facebook @ChemForYourLife


Hosted by Simplecast, an AdsWizz company. See pcm.adswizz.com for information about our collection and use of personal data for advertising.

Extract Knowledge
Listen elsewhere
Published 2026-06-18

How does super glue glue things?

31 min
View

#061

Be honest. Have you ever glued yourself with super glue? Everyone should accidentally make that mistake at least once, so you can literally feel the impressive stickiness of super glue. Well today, you can learn about the chemistry within super glue, without putting any fingers or other body parts at risk! Let's do this.

 

References from this episode

  1. Introduction to Polymers R.J. Young and P. A. Lovell
  2. http://www.chm.bris.ac.uk/motm/superglue/superglueh.htm
  3. https://www.chemistryworld.com/podcasts/cyanoacrylate/6261.article
  4. https://pubsapp.acs.org/cen/whatstuff/86/8624sci5.html
  5. https://www.acs.org/content/dam/acsorg/education/students/highschool/chemistryclubs/March_ChemClubCal.pdf
  6. https://www.acs.org/content/dam/acsorg/education/resources/highschool/chemmatters/articlesbytopic/bonding/chemmatters-dec2006-glue.pdf
Find us on Instagram, Twitter, and Facebook @ChemForYourLife. Email us at chemforyourlife@gmail.com

Thanks to our monthly supporters

  • Ciara Linville
  • J0HNTR0Y
  • Jeannette Napoleon
  • Cullyn R
  • Erica Bee
  • Elizabeth P
  • Sarah Moar
  • Rachel Reina
  • Letila
  • Katrina Barnum-Huckins
  • Suzanne Phillips
  • Nelly Silva
  • Venus Rebholz
  • Lyn Stubblefield
  • Jacob Taber
  • Brian Kimball
  • Emerson Woodhall
  • Kristina Gotfredsen
  • Timothy Parker
  • Steven Boyles
  • Chris Skupien
  • Chelsea B
  • Bri McAllister
  • Avishai Barnoy
  • Hunter Reardon
Support this podcast on Patreon

Hosted by Simplecast, an AdsWizz company. See pcm.adswizz.com for information about our collection and use of personal data for advertising.

More description

#061

Be honest. Have you ever glued yourself with super glue? Everyone should accidentally make that mistake at least once, so you can literally feel the impressive stickiness of super glue. Well today, you can learn about the chemistry within super glue, without putting any fingers or other body parts at risk! Let's do this.

 

References from this episode

  1. Introduction to Polymers R.J. Young and P. A. Lovell
  2. http://www.chm.bris.ac.uk/motm/superglue/superglueh.htm
  3. https://www.chemistryworld.com/podcasts/cyanoacrylate/6261.article
  4. https://pubsapp.acs.org/cen/whatstuff/86/8624sci5.html
  5. https://www.acs.org/content/dam/acsorg/education/students/highschool/chemistryclubs/March_ChemClubCal.pdf
  6. https://www.acs.org/content/dam/acsorg/education/resources/highschool/chemmatters/articlesbytopic/bonding/chemmatters-dec2006-glue.pdf
Find us on Instagram, Twitter, and Facebook @ChemForYourLife. Email us at chemforyourlife@gmail.com

Thanks to our monthly supporters

  • Ciara Linville
  • J0HNTR0Y
  • Jeannette Napoleon
  • Cullyn R
  • Erica Bee
  • Elizabeth P
  • Sarah Moar
  • Rachel Reina
  • Letila
  • Katrina Barnum-Huckins
  • Suzanne Phillips
  • Nelly Silva
  • Venus Rebholz
  • Lyn Stubblefield
  • Jacob Taber
  • Brian Kimball
  • Emerson Woodhall
  • Kristina Gotfredsen
  • Timothy Parker
  • Steven Boyles
  • Chris Skupien
  • Chelsea B
  • Bri McAllister
  • Avishai Barnoy
  • Hunter Reardon
Support this podcast on Patreon

Hosted by Simplecast, an AdsWizz company. See pcm.adswizz.com for information about our collection and use of personal data for advertising.

AI is everywhere in education right now, but is that the only technology chemistry educators should be thinking about?

In this bonus BCCE preview episode, Melissa talks with Resa Kelly about technology in chemistry education, from visualizations and videos to flipped classrooms and AI. What do we actually want students to be able to do in a technology-rich world? How should that shape our teaching? And how can educators stay curious without feeling pressured to adopt every new tool that comes along?

 

Important Links

 

Time Stamps

  • 0:00 – Introducing the Community Conversation on technology
  • 1:11 – Resa Kelly’s journey into chemistry education research
  • 2:20 – How visualizations and animations help students learn chemistry
  • 3:31 – Why this conversation is about more than just AI
  • 5:50 – Technology already shaping chemistry classrooms
  • 7:20 – Staying curious even if you’re skeptical of new technology
  • 9:10 – Time constraints and practical barriers for teachers
  • 10:00 – Creative ways educators are using AI
  • 14:15 – Teaching students to evaluate trustworthy information
  • 17:13 – The central question: What should students be able to do in a technology-rich environment?
  • 18:20 – Is technology helping students learn or just complete tasks?
  • 19:00 – If AI gives answers, what are we really teaching?
  • 24:00 – Why these conversations matter beyond BCCE
  • 28:15 – Assumptions, AI, and trusting students
  • 30:05 – Final thoughts and invitation to the conference conversation
Support this podcast on Patreon 

Buy Podcast Merch and Apparel

Check out our website at chemforyourlife.com

Watch our episodes on YouTube

Find us on Instagram, Twitter, and Facebook @ChemForYourLife


Hosted by Simplecast, an AdsWizz company. See pcm.adswizz.com for information about our collection and use of personal data for advertising.

More description

AI is everywhere in education right now, but is that the only technology chemistry educators should be thinking about?

In this bonus BCCE preview episode, Melissa talks with Resa Kelly about technology in chemistry education, from visualizations and videos to flipped classrooms and AI. What do we actually want students to be able to do in a technology-rich world? How should that shape our teaching? And how can educators stay curious without feeling pressured to adopt every new tool that comes along?

 

Important Links

 

Time Stamps

  • 0:00 – Introducing the Community Conversation on technology
  • 1:11 – Resa Kelly’s journey into chemistry education research
  • 2:20 – How visualizations and animations help students learn chemistry
  • 3:31 – Why this conversation is about more than just AI
  • 5:50 – Technology already shaping chemistry classrooms
  • 7:20 – Staying curious even if you’re skeptical of new technology
  • 9:10 – Time constraints and practical barriers for teachers
  • 10:00 – Creative ways educators are using AI
  • 14:15 – Teaching students to evaluate trustworthy information
  • 17:13 – The central question: What should students be able to do in a technology-rich environment?
  • 18:20 – Is technology helping students learn or just complete tasks?
  • 19:00 – If AI gives answers, what are we really teaching?
  • 24:00 – Why these conversations matter beyond BCCE
  • 28:15 – Assumptions, AI, and trusting students
  • 30:05 – Final thoughts and invitation to the conference conversation
Support this podcast on Patreon 

Buy Podcast Merch and Apparel

Check out our website at chemforyourlife.com

Watch our episodes on YouTube

Find us on Instagram, Twitter, and Facebook @ChemForYourLife


Hosted by Simplecast, an AdsWizz company. See pcm.adswizz.com for information about our collection and use of personal data for advertising.

Extract Knowledge
Listen elsewhere

CSI makes forensic science look fast, easy, and almost magical. But how much of that is actually true?This week we’re joined by forensic chemist and graduate student Nicki Stewart to answer your questions about forensic science. We talk about crime shows, fingerprints, toxicology, illicit drugs, and what really happens inside a forensic laboratory. Plus, Nicki shares what surprised her most when she worked in a real crime lab and why forensic science is often much slower (and more complicated) than TV would have you believe.

Support this podcast on Patreon Buy Podcast Merch and Apparel

Check out our website at chemforyourlife.com

Watch our episodes on YouTube

Find us on Instagram, Twitter, and Facebook @ChemForYourLife

Time Stamps

  • 0:00 – Do crime shows get forensics right?
  • 1:20 – Nicki’s background in forensic chemistry and toxicology
  • 6:15 – From forensic chemistry to chemistry education
  • 9:10 – The “CSI Effect” and common TV misconceptions
  • 12:30 – Breaking Bad, Project Hail Mary, and science accuracy in entertainment
  • 14:10 – Transitioning from clinical chemistry to forensic chemistry
  • 17:40 – The biggest misconceptions about forensic work
  • 20:20 – Forensic chemistry vs. forensic biology
  • 22:05 – How fingerprints actually form
  • 26:35 – Can fingerprints be removed?
  • 26:55 – How forensic labs identify illicit drugs
  • 31:10 – Which shows portray science most accurately?
  • 33:00 – What’s coming in our next forensic chemistry episode
Support this podcast on Patreon Buy Podcast Merch and Apparel

Check out our website at chemforyourlife.com

Watch our episodes on YouTube

Find us on Instagram, Twitter, and Facebook @ChemForYourLife

References from the Episode:

Thanks to our monthly supporters
Sara Hull
Dog Day Dan
Bri .
Summer Alden
Amanda Raymond
Kyle McCray
Justine
Ash
Vince W
Julie S.
Heather Ragusa
Autoclave
Dorien VD
Scott Beyer
Jessie Reder
J0HNTR0Y
Cullyn R
Erica Bee
Elizabeth P
Rachel Reina
Letila
Katrina Barnum-Huckins
Suzanne Phillips
Venus Rebholz
Jacob Taber
Brian Kimball
Kristina Gotfredsen
Timothy Parker
Steven Boyles
Chris Skupien
Chelsea B
Avishai Barnoy
Hunter Reardon

Support this podcast on Patreon Buy Podcast Merch and Apparel

Check out our website at chemforyourlife.com

Watch our episodes on YouTube

Find us on Instagram, Twitter, and Facebook @ChemForYourLife


Hosted by Simplecast, an AdsWizz company. See pcm.adswizz.com for information about our collection and use of personal data for advertising.

More description

CSI makes forensic science look fast, easy, and almost magical. But how much of that is actually true?This week we’re joined by forensic chemist and graduate student Nicki Stewart to answer your questions about forensic science. We talk about crime shows, fingerprints, toxicology, illicit drugs, and what really happens inside a forensic laboratory. Plus, Nicki shares what surprised her most when she worked in a real crime lab and why forensic science is often much slower (and more complicated) than TV would have you believe.

Support this podcast on Patreon Buy Podcast Merch and Apparel

Check out our website at chemforyourlife.com

Watch our episodes on YouTube

Find us on Instagram, Twitter, and Facebook @ChemForYourLife

Time Stamps

  • 0:00 – Do crime shows get forensics right?
  • 1:20 – Nicki’s background in forensic chemistry and toxicology
  • 6:15 – From forensic chemistry to chemistry education
  • 9:10 – The “CSI Effect” and common TV misconceptions
  • 12:30 – Breaking Bad, Project Hail Mary, and science accuracy in entertainment
  • 14:10 – Transitioning from clinical chemistry to forensic chemistry
  • 17:40 – The biggest misconceptions about forensic work
  • 20:20 – Forensic chemistry vs. forensic biology
  • 22:05 – How fingerprints actually form
  • 26:35 – Can fingerprints be removed?
  • 26:55 – How forensic labs identify illicit drugs
  • 31:10 – Which shows portray science most accurately?
  • 33:00 – What’s coming in our next forensic chemistry episode
Support this podcast on Patreon Buy Podcast Merch and Apparel

Check out our website at chemforyourlife.com

Watch our episodes on YouTube

Find us on Instagram, Twitter, and Facebook @ChemForYourLife

References from the Episode:

Thanks to our monthly supporters
Sara Hull
Dog Day Dan
Bri .
Summer Alden
Amanda Raymond
Kyle McCray
Justine
Ash
Vince W
Julie S.
Heather Ragusa
Autoclave
Dorien VD
Scott Beyer
Jessie Reder
J0HNTR0Y
Cullyn R
Erica Bee
Elizabeth P
Rachel Reina
Letila
Katrina Barnum-Huckins
Suzanne Phillips
Venus Rebholz
Jacob Taber
Brian Kimball
Kristina Gotfredsen
Timothy Parker
Steven Boyles
Chris Skupien
Chelsea B
Avishai Barnoy
Hunter Reardon

Support this podcast on Patreon Buy Podcast Merch and Apparel

Check out our website at chemforyourlife.com

Watch our episodes on YouTube

Find us on Instagram, Twitter, and Facebook @ChemForYourLife


Hosted by Simplecast, an AdsWizz company. See pcm.adswizz.com for information about our collection and use of personal data for advertising.

What happens when the world’s largest gathering of chemistry educators decides to try something new? This summer we’re partnering with the Biennial Conference on Chemical Education (BCCE) for a special series of Monday episodes. In this kickoff conversation, Melissa sits down with conference organizers to talk about the vision behind this year’s event, why community conversations are replacing traditional keynotes, and how chemistry educators are thinking about the future of teaching and learning. Whether you’re attending BCCE or just curious about how people learn chemistry, this episode offers a behind-the-scenes look at one of the biggest conversations happening in chemistry education today.

 

Important Links

 

Time Stamps

0:00 – Introducing our BCCE summer series 2:00 – Why Melissa loves BCCE 4:50 – Meet Ariel Vaughn and Ginger Schultz 7:00 – What are Community Conversations? 8:20 – Replacing keynote speakers with interactive discussions 9:00 – How the conversation topics were selected 13:40 – Empowering the community to shape the conference 14:40 – Previewing this year’s Community Conversation topics 16:00 – Neurodiversity, equity, and communities of practice 19:50 – Why community matters in chemistry education 25:20 – Meet BCCE General Chair Sam Pazicni 28:30 – The vision behind this year’s conference 29:00 – “Reflecting Back and Marching Forward” explained 32:30 – The six conference contexts and Community Conversations 37:20 – Who should attend BCCE? 39:00 – Tips for first-time conference attendees 41:00 – Remote attendance and recorded sessions 45:20 – Planning your schedule with the conference app 50:40 – What to wear and what to pack 57:30 – Madison food recommendations and cheese curds 1:03:50 – Special events, parking tips, and final advice 1:08:20 – Final BCCE details and registration information

Podcast Transcript

Support this podcast on Patreon

Buy Podcast Merch and Apparel

Check out our website at chemforyourlife.com

Watch our episodes on YouTube

Find us on Instagram, Twitter, and Facebook @ChemForYourLife


Hosted by Simplecast, an AdsWizz company. See pcm.adswizz.com for information about our collection and use of personal data for advertising.

More description

What happens when the world’s largest gathering of chemistry educators decides to try something new? This summer we’re partnering with the Biennial Conference on Chemical Education (BCCE) for a special series of Monday episodes. In this kickoff conversation, Melissa sits down with conference organizers to talk about the vision behind this year’s event, why community conversations are replacing traditional keynotes, and how chemistry educators are thinking about the future of teaching and learning. Whether you’re attending BCCE or just curious about how people learn chemistry, this episode offers a behind-the-scenes look at one of the biggest conversations happening in chemistry education today.

 

Important Links

 

Time Stamps

0:00 – Introducing our BCCE summer series 2:00 – Why Melissa loves BCCE 4:50 – Meet Ariel Vaughn and Ginger Schultz 7:00 – What are Community Conversations? 8:20 – Replacing keynote speakers with interactive discussions 9:00 – How the conversation topics were selected 13:40 – Empowering the community to shape the conference 14:40 – Previewing this year’s Community Conversation topics 16:00 – Neurodiversity, equity, and communities of practice 19:50 – Why community matters in chemistry education 25:20 – Meet BCCE General Chair Sam Pazicni 28:30 – The vision behind this year’s conference 29:00 – “Reflecting Back and Marching Forward” explained 32:30 – The six conference contexts and Community Conversations 37:20 – Who should attend BCCE? 39:00 – Tips for first-time conference attendees 41:00 – Remote attendance and recorded sessions 45:20 – Planning your schedule with the conference app 50:40 – What to wear and what to pack 57:30 – Madison food recommendations and cheese curds 1:03:50 – Special events, parking tips, and final advice 1:08:20 – Final BCCE details and registration information

Podcast Transcript

Support this podcast on Patreon

Buy Podcast Merch and Apparel

Check out our website at chemforyourlife.com

Watch our episodes on YouTube

Find us on Instagram, Twitter, and Facebook @ChemForYourLife


Hosted by Simplecast, an AdsWizz company. See pcm.adswizz.com for information about our collection and use of personal data for advertising.

Extract Knowledge
Listen elsewhere
Published 2026-06-04

How does a pencil eraser remove graphite?

35 min Transcript
View

How can the same element make both pencil lead and diamonds? This week we wrap up our pencil chemistry mini-series by answering a surprisingly tricky question: how do erasers actually erase? Then we dive into one of chemistry’s coolest ideas. Graphite and diamond are both made entirely of carbon, but one is soft enough to write with and the other is the hardest natural material we know. What changed? The answer reveals something remarkable about chemistry, structure, and the hidden world of atoms.

Support this podcast on Patreon Buy Podcast Merch and Apparel

Check out our website at chemforyourlife.com

Watch our episodes on YouTube

Find us on Instagram, Twitter, and Facebook @ChemForYourLife

0:00 – Intro: diamonds, carbon, and the hardest natural material 2:25 – How erasers actually erase pencil marks 6:50 – Why erasers get old, crumbly, and less effective 9:50 – Graphite vs. diamond: same element, completely different materials 13:50 – Why diamonds are so hard (and why they sparkle) 15:30 – Allotropes: how carbon can become radically different substances 17:00 – Melissa’s carbon epiphany: appreciating chemistry in a new way 20:20 – Things we didn’t appreciate until later in life (birds, coffee, and more) 25:20 – Father’s Day advice for dads and families 31:50 – Wrap-up + your carbon questions

Support this podcast on Patreon Buy Podcast Merch and Apparel

Check out our website at chemforyourlife.com

Watch our episodes on YouTube

Find us on Instagram, Twitter, and Facebook @ChemForYourLife

References from the Episode:

Thanks to our monthly supporters
Sara Hull
Dog Day Dan
Bri .
Summer Alden
Amanda Raymond
Kyle McCray
Justine
Ash
Vince W
Julie S.
Heather Ragusa
Autoclave
Dorien VD
Scott Beyer
Jessie Reder
J0HNTR0Y
Cullyn R
Erica Bee
Elizabeth P
Rachel Reina
Letila
Katrina Barnum-Huckins
Suzanne Phillips
Venus Rebholz
Jacob Taber
Brian Kimball
Kristina Gotfredsen
Timothy Parker
Steven Boyles
Chris Skupien
Chelsea B
Avishai Barnoy
Hunter Reardon

Support this podcast on Patreon Buy Podcast Merch and Apparel

Check out our website at chemforyourlife.com

Watch our episodes on YouTube

Find us on Instagram, Twitter, and Facebook @ChemForYourLife

 

 


Hosted by Simplecast, an AdsWizz company. See pcm.adswizz.com for information about our collection and use of personal data for advertising.

More description

How can the same element make both pencil lead and diamonds? This week we wrap up our pencil chemistry mini-series by answering a surprisingly tricky question: how do erasers actually erase? Then we dive into one of chemistry’s coolest ideas. Graphite and diamond are both made entirely of carbon, but one is soft enough to write with and the other is the hardest natural material we know. What changed? The answer reveals something remarkable about chemistry, structure, and the hidden world of atoms.

Support this podcast on Patreon Buy Podcast Merch and Apparel

Check out our website at chemforyourlife.com

Watch our episodes on YouTube

Find us on Instagram, Twitter, and Facebook @ChemForYourLife

0:00 – Intro: diamonds, carbon, and the hardest natural material 2:25 – How erasers actually erase pencil marks 6:50 – Why erasers get old, crumbly, and less effective 9:50 – Graphite vs. diamond: same element, completely different materials 13:50 – Why diamonds are so hard (and why they sparkle) 15:30 – Allotropes: how carbon can become radically different substances 17:00 – Melissa’s carbon epiphany: appreciating chemistry in a new way 20:20 – Things we didn’t appreciate until later in life (birds, coffee, and more) 25:20 – Father’s Day advice for dads and families 31:50 – Wrap-up + your carbon questions

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References from the Episode:

Thanks to our monthly supporters
Sara Hull
Dog Day Dan
Bri .
Summer Alden
Amanda Raymond
Kyle McCray
Justine
Ash
Vince W
Julie S.
Heather Ragusa
Autoclave
Dorien VD
Scott Beyer
Jessie Reder
J0HNTR0Y
Cullyn R
Erica Bee
Elizabeth P
Rachel Reina
Letila
Katrina Barnum-Huckins
Suzanne Phillips
Venus Rebholz
Jacob Taber
Brian Kimball
Kristina Gotfredsen
Timothy Parker
Steven Boyles
Chris Skupien
Chelsea B
Avishai Barnoy
Hunter Reardon

Support this podcast on Patreon Buy Podcast Merch and Apparel

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Published 2026-05-28

How do gemstones get their color?

44 min
View

#158 Rebroadcast

Gemstones come in all sorts of colors, but how do they get them? Are different stones super different at the molecular level? How do these different colors happen naturally? And how can those colors be replicated in lab-made gemstones? Let's get into it.

References from this episode

  1. https://www.acs.org/education/students/highschool/chemistryclubs/activities/jewelry-science.html
Thanks to our monthly supporters
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  • J0HNTR0Y
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More description

#158 Rebroadcast

Gemstones come in all sorts of colors, but how do they get them? Are different stones super different at the molecular level? How do these different colors happen naturally? And how can those colors be replicated in lab-made gemstones? Let's get into it.

References from this episode

  1. https://www.acs.org/education/students/highschool/chemistryclubs/activities/jewelry-science.html
Thanks to our monthly supporters
  • Ciara Linville
  • J0HNTR0Y
  • Jeannette Napoleon
  • Cullyn R
  • Erica Bee
  • Elizabeth P
  • Sarah Moar
  • Rachel Reina
  • Letila
  • Katrina Barnum-Huckins
  • Suzanne Phillips
  • Nelly Silva
  • Venus Rebholz
  • Lyn Stubblefield
  • Jacob Taber
  • Brian Kimball
  • Emerson Woodhall
  • Kristina Gotfredsen
  • Timothy Parker
  • Steven Boyles
  • Chris Skupien
  • Chelsea B
  • Bri McAllister
  • Avishai Barnoy
  • Hunter Reardon
Support this podcast on Patreon

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Extract Knowledge
Listen elsewhere
Published 2026-05-21

How do pencils write on paper?

46 min Transcript
View

Why does a pencil work so perfectly? Why does graphite leave marks on paper instead of just crumbling apart? And what do pancakes, honeycombs, geckos, and intermolecular forces have to do with any of it? This week we follow a simple pencil all the way down to carbon atoms, graphene sheets, and the weirdly satisfying chemistry that makes writing possible. Plus: final exam horror stories, missed alarms, and why reading the syllabus might save your GPA.

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Timestamps

0:00 – The strangely satisfying feeling of fresh pencils 1:03 – So… how do pencils actually work? 2:07 – A “polymer eraser” sparks this whole episode 3:10 – Are pencils disappearing for Gen Alpha? 4:35 – Graphite, graphene, and carbon structures 6:20 – What graphene actually looks like 7:10 – Carbon bonding and tetrahedral shapes 8:10 – Double bonds and flat molecular structures 9:40 – Electron highways and conductivity 10:20 – Melissa’s graphene model demonstration 13:10 – Why graphene could replace silicon chips 13:30 – Carbon nanotubes explained 14:40 – What holds graphite layers together? 15:00 – Intermolecular forces return 17:10 – Quick refresher on intermolecular forces 18:50 – London dispersion forces and temporary dipoles 19:30 – Why graphite is brittle 20:00 – How pencils leave marks on paper 21:20 – Why graphite is basically perfectly designed for writing 22:00 – A detour into paper, parchment, and writing history 24:00 – Pencil hardness and clay mixtures 26:30 – Jam attempts a chemistry-heavy recap 33:20 – Cliffhanger: how erasers work 34:00 – Final exam disaster stories 36:50 – Oversleeping a college final 39:10 – Melissa’s sprint across campus in pajamas 41:00 – Read the syllabus. Seriously. 43:10 – Teasing next episode: erasers and other forms of carbon

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References from the Episode:

Thanks to our monthly supporters
Kelly D.
Bri
Summer Alden
Amanda Raymond
Kyle McCray
Justine
Ash
Vince W
Julie S.
Heather Ragusa
Autoclave
Dorien VD
Scott Beyer
Jessie Reder
J0HNTR0Y
Jeannette Napoleon
Cullyn R
Erica Bee
Elizabeth P
Rachel Reina
Letila
Katrina Barnum-Huckins
Suzanne Phillips
Venus Rebholz
Jacob Taber
Brian Kimball
Kristina Gotfredsen
Timothy Parker
Steven Boyles
Chris Skupien
Chelsea B
Avishai Barnoy
Hunter Reardon

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More description

Why does a pencil work so perfectly? Why does graphite leave marks on paper instead of just crumbling apart? And what do pancakes, honeycombs, geckos, and intermolecular forces have to do with any of it? This week we follow a simple pencil all the way down to carbon atoms, graphene sheets, and the weirdly satisfying chemistry that makes writing possible. Plus: final exam horror stories, missed alarms, and why reading the syllabus might save your GPA.

Support this podcast on Patreon
Buy Podcast Merch and Apparel

Check out our website at chemforyourlife.com

Watch our episodes on YouTube

Find us on Instagram, Twitter, and Facebook @ChemForYourLife

Timestamps

0:00 – The strangely satisfying feeling of fresh pencils 1:03 – So… how do pencils actually work? 2:07 – A “polymer eraser” sparks this whole episode 3:10 – Are pencils disappearing for Gen Alpha? 4:35 – Graphite, graphene, and carbon structures 6:20 – What graphene actually looks like 7:10 – Carbon bonding and tetrahedral shapes 8:10 – Double bonds and flat molecular structures 9:40 – Electron highways and conductivity 10:20 – Melissa’s graphene model demonstration 13:10 – Why graphene could replace silicon chips 13:30 – Carbon nanotubes explained 14:40 – What holds graphite layers together? 15:00 – Intermolecular forces return 17:10 – Quick refresher on intermolecular forces 18:50 – London dispersion forces and temporary dipoles 19:30 – Why graphite is brittle 20:00 – How pencils leave marks on paper 21:20 – Why graphite is basically perfectly designed for writing 22:00 – A detour into paper, parchment, and writing history 24:00 – Pencil hardness and clay mixtures 26:30 – Jam attempts a chemistry-heavy recap 33:20 – Cliffhanger: how erasers work 34:00 – Final exam disaster stories 36:50 – Oversleeping a college final 39:10 – Melissa’s sprint across campus in pajamas 41:00 – Read the syllabus. Seriously. 43:10 – Teasing next episode: erasers and other forms of carbon

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References from the Episode:

Thanks to our monthly supporters
Kelly D.
Bri
Summer Alden
Amanda Raymond
Kyle McCray
Justine
Ash
Vince W
Julie S.
Heather Ragusa
Autoclave
Dorien VD
Scott Beyer
Jessie Reder
J0HNTR0Y
Jeannette Napoleon
Cullyn R
Erica Bee
Elizabeth P
Rachel Reina
Letila
Katrina Barnum-Huckins
Suzanne Phillips
Venus Rebholz
Jacob Taber
Brian Kimball
Kristina Gotfredsen
Timothy Parker
Steven Boyles
Chris Skupien
Chelsea B
Avishai Barnoy
Hunter Reardon

Support this podcast on Patreon Buy Podcast Merch and Apparel

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What happens when you mix bleach and ammonia? Why does perfume smell amazing on one person and weird on another? And why is getting a job so hard right now? This week we’re answering a huge batch of listener questions about chemistry, sunscreen, scents, books, careers, birds, and somehow even British accents. Plus, we accidentally brainstorm several new podcast ideas along the way.

Support this podcast on Patreon Buy Podcast Merch and Apparel

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Timestamps

0:00 – Listener question extravaganza begins
1:00 – What ingredients should NEVER be mixed together?
1:30 – Bleach + ammonia and dangerous chloramine gas
2:40 – Food combinations that actually are bad
3:30 – How SPF and sunscreen work
5:00 – Why perfumes smell different on different people
6:30 – Body chemistry, temperature, and scent longevity
8:00 – “Why is it so hard to get a job?”
9:00 – Post-graduation job hunting advice
10:15 – Treating job searching like a full-time job
11:00 – Using chemistry skills in unexpected careers
12:00 – Certifications, courses, and standing out
14:15 – Book recommendations from listeners and hosts
15:50 – Narnia, Lord of the Rings, and classic books
17:00 – “Phoebe Reads a Mystery” and audiobook-style podcasts
18:20 – Human similarities to elements and chemical bonding
19:45 – Why chemistry analogies help us learn
22:00 – Are American accents annoying to British listeners?
23:45 – Melissa considers starting a reading podcast
25:00 – Listener suggestion: chemistry changes that impacted real life
25:45 – Podcast-inspired life changes: sunscreen and Teflon
27:00 – Shoutouts to listeners, friends, and good coffee
29:20 – The missing bird fact mystery
30:20 – “Please don’t stop uploading”
31:00 – Reflecting on nearly 7 years of the podcast
31:45 – Patreon, merch, and intermolecular forces merch talk
33:45 – Chemmunity thank-yous and outro

Support this podcast on Patreon
Buy Podcast Merch and Apparel

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References from the Episode:

Thanks to our monthly supporters
Kelly D.
Bri
Summer Alden
Amanda Raymond
Kyle McCray
Justine
Ash
Vince W
Julie S.
Heather Ragusa
Autoclave
Dorien VD
Scott Beyer
Jessie Reder
J0HNTR0Y
Jeannette Napoleon
Cullyn R
Erica Bee
Elizabeth P
Rachel Reina
Letila
Katrina Barnum-Huckins
Suzanne Phillips
Venus Rebholz
Jacob Taber
Brian Kimball
Kristina Gotfredsen
Timothy Parker
Steven Boyles
Chris Skupien
Chelsea B
Avishai Barnoy
Hunter Reardon

Support this podcast on Patreon Buy Podcast Merch and Apparel

Check out our website at chemforyourlife.com

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Find us on Instagram, Twitter, and Facebook @ChemForYourLife


Hosted by Simplecast, an AdsWizz company. See pcm.adswizz.com for information about our collection and use of personal data for advertising.

More description

What happens when you mix bleach and ammonia? Why does perfume smell amazing on one person and weird on another? And why is getting a job so hard right now? This week we’re answering a huge batch of listener questions about chemistry, sunscreen, scents, books, careers, birds, and somehow even British accents. Plus, we accidentally brainstorm several new podcast ideas along the way.

Support this podcast on Patreon Buy Podcast Merch and Apparel

Check out our website at chemforyourlife.com

Watch our episodes on YouTube

Find us on Instagram, Twitter, and Facebook @ChemForYourLife

Timestamps

0:00 – Listener question extravaganza begins
1:00 – What ingredients should NEVER be mixed together?
1:30 – Bleach + ammonia and dangerous chloramine gas
2:40 – Food combinations that actually are bad
3:30 – How SPF and sunscreen work
5:00 – Why perfumes smell different on different people
6:30 – Body chemistry, temperature, and scent longevity
8:00 – “Why is it so hard to get a job?”
9:00 – Post-graduation job hunting advice
10:15 – Treating job searching like a full-time job
11:00 – Using chemistry skills in unexpected careers
12:00 – Certifications, courses, and standing out
14:15 – Book recommendations from listeners and hosts
15:50 – Narnia, Lord of the Rings, and classic books
17:00 – “Phoebe Reads a Mystery” and audiobook-style podcasts
18:20 – Human similarities to elements and chemical bonding
19:45 – Why chemistry analogies help us learn
22:00 – Are American accents annoying to British listeners?
23:45 – Melissa considers starting a reading podcast
25:00 – Listener suggestion: chemistry changes that impacted real life
25:45 – Podcast-inspired life changes: sunscreen and Teflon
27:00 – Shoutouts to listeners, friends, and good coffee
29:20 – The missing bird fact mystery
30:20 – “Please don’t stop uploading”
31:00 – Reflecting on nearly 7 years of the podcast
31:45 – Patreon, merch, and intermolecular forces merch talk
33:45 – Chemmunity thank-yous and outro

Support this podcast on Patreon
Buy Podcast Merch and Apparel

Check out our website at chemforyourlife.com

Watch our episodes on YouTube

Find us on Instagram, Twitter, and Facebook @ChemForYourLife

References from the Episode:

Thanks to our monthly supporters
Kelly D.
Bri
Summer Alden
Amanda Raymond
Kyle McCray
Justine
Ash
Vince W
Julie S.
Heather Ragusa
Autoclave
Dorien VD
Scott Beyer
Jessie Reder
J0HNTR0Y
Jeannette Napoleon
Cullyn R
Erica Bee
Elizabeth P
Rachel Reina
Letila
Katrina Barnum-Huckins
Suzanne Phillips
Venus Rebholz
Jacob Taber
Brian Kimball
Kristina Gotfredsen
Timothy Parker
Steven Boyles
Chris Skupien
Chelsea B
Avishai Barnoy
Hunter Reardon

Support this podcast on Patreon Buy Podcast Merch and Apparel

Check out our website at chemforyourlife.com

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Published 2026-05-07

How was kevlar accidentally invented?

48 min Transcript
View

How do you turn a weird cloudy liquid into something stronger than steel? This week we’re telling the story of Kevlar: the chemistry breakthrough that led to bulletproof vests, firefighter gear, reinforced tires, and so much more. Along the way we talk polymers, hydrogen bonding, accidental discoveries, and the chemist who almost went to medical school instead.

Support this podcast on Patreon
Buy Podcast Merch and Apparel

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Timestamps

0:00 – Story time setup: bulletproof gear and the chemistry behind it
1:30 – Meet Stephanie Kwolek, the chemist behind Kevlar
4:00 – DuPont, polymers, and the early days of synthetic fibers
6:30 – Why Stephanie stayed in chemistry instead of medical school
8:30 – The gas shortage problem that sparked the search for Kevlar
9:50 – What polymers actually are
10:20 – Benzene rings, resonance, and rigid molecular structures
11:30 – The strange watery solution that almost got ignored
13:30 – The accidental breakthrough that created Kevlar fibers
14:20 – Why Kevlar is so unusually strong
16:30 – Hydrogen bonding and “molecular Velcro”
18:40 – How Kevlar chains organize into massive strong sheets
21:30 – Why Kevlar behaves almost like a metal
24:00 – Stronger than steel, lighter than steel
26:30 – Melissa’s theory about the mysterious cloudy solution
27:00 – How Kevlar became bulletproof vests
28:00 – Why “detours” in life aren’t always failures
32:30 – Other surprising uses for Kevlar
35:00 – “Mistakes” that turned into good things (personal stories)
44:00 – Wrap-up + chemistry storytime appreciation

Support this podcast on Patreon
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Check out our website at chemforyourlife.com

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References from the Episode:

Thanks to our monthly supporters
Kelly D.
Bri
Summer Alden
Amanda Raymond
Kyle McCray
Justine
Ash
Vince W
Julie S.
Heather Ragusa
Autoclave
Dorien VD
Scott Beyer
Jessie Reder
J0HNTR0Y
Jeannette Napoleon
Cullyn R
Erica Bee
Elizabeth P
Rachel Reina
Letila
Katrina Barnum-Huckins
Suzanne Phillips
Venus Rebholz
Jacob Taber
Brian Kimball
Kristina Gotfredsen
Timothy Parker
Steven Boyles
Chris Skupien
Chelsea B
Avishai Barnoy
Hunter Reardon

Support this podcast on Patreon Buy Podcast Merch and Apparel

Check out our website at chemforyourlife.com

Watch our episodes on YouTube

Find us on Instagram, Twitter, and Facebook @ChemForYourLife


Hosted by Simplecast, an AdsWizz company. See pcm.adswizz.com for information about our collection and use of personal data for advertising.

More description

How do you turn a weird cloudy liquid into something stronger than steel? This week we’re telling the story of Kevlar: the chemistry breakthrough that led to bulletproof vests, firefighter gear, reinforced tires, and so much more. Along the way we talk polymers, hydrogen bonding, accidental discoveries, and the chemist who almost went to medical school instead.

Support this podcast on Patreon
Buy Podcast Merch and Apparel

Check out our website at chemforyourlife.com

Watch our episodes on YouTube

Find us on Instagram, Twitter, and Facebook @ChemForYourLife

Timestamps

0:00 – Story time setup: bulletproof gear and the chemistry behind it
1:30 – Meet Stephanie Kwolek, the chemist behind Kevlar
4:00 – DuPont, polymers, and the early days of synthetic fibers
6:30 – Why Stephanie stayed in chemistry instead of medical school
8:30 – The gas shortage problem that sparked the search for Kevlar
9:50 – What polymers actually are
10:20 – Benzene rings, resonance, and rigid molecular structures
11:30 – The strange watery solution that almost got ignored
13:30 – The accidental breakthrough that created Kevlar fibers
14:20 – Why Kevlar is so unusually strong
16:30 – Hydrogen bonding and “molecular Velcro”
18:40 – How Kevlar chains organize into massive strong sheets
21:30 – Why Kevlar behaves almost like a metal
24:00 – Stronger than steel, lighter than steel
26:30 – Melissa’s theory about the mysterious cloudy solution
27:00 – How Kevlar became bulletproof vests
28:00 – Why “detours” in life aren’t always failures
32:30 – Other surprising uses for Kevlar
35:00 – “Mistakes” that turned into good things (personal stories)
44:00 – Wrap-up + chemistry storytime appreciation

Support this podcast on Patreon
Buy Podcast Merch and Apparel

Check out our website at chemforyourlife.com

Watch our episodes on YouTube

Find us on Instagram, Twitter, and Facebook @ChemForYourLife

References from the Episode:

Thanks to our monthly supporters
Kelly D.
Bri
Summer Alden
Amanda Raymond
Kyle McCray
Justine
Ash
Vince W
Julie S.
Heather Ragusa
Autoclave
Dorien VD
Scott Beyer
Jessie Reder
J0HNTR0Y
Jeannette Napoleon
Cullyn R
Erica Bee
Elizabeth P
Rachel Reina
Letila
Katrina Barnum-Huckins
Suzanne Phillips
Venus Rebholz
Jacob Taber
Brian Kimball
Kristina Gotfredsen
Timothy Parker
Steven Boyles
Chris Skupien
Chelsea B
Avishai Barnoy
Hunter Reardon

Support this podcast on Patreon Buy Podcast Merch and Apparel

Check out our website at chemforyourlife.com

Watch our episodes on YouTube

Find us on Instagram, Twitter, and Facebook @ChemForYourLife


Hosted by Simplecast, an AdsWizz company. See pcm.adswizz.com for information about our collection and use of personal data for advertising.

Published 2026-04-30

Is there a helium shortage?

39 min Transcript
View

#038 Rebroadcast

Helium is all fun and games right? High voice, super funny, no worries right? Or is there a serious shortage of helium? This week, Melissa and Jam answer this question.

References from this episode

  1. Helium: Its Discovery and Applications – Locker
  2. We Discovered Helium 150 Years Ago. Are We Running Out? - Greshko
  3. Introductory Physics I - Brown
  4. Helium beer: prank or possible? - American Chemical Society
  5. Organic Chemistry, Edition 11 - Solomon
Find us on Instagram, Twitter, and Facebook @ChemForYourLife. Email us at chemforyourlife@gmail.com And check out our chill, simple little website at https://chemforyourlife.transistor.fm/

Thanks to our monthly supporters

  • Ciara Linville
  • J0HNTR0Y
  • Jeannette Napoleon
  • Cullyn R
  • Erica Bee
  • Elizabeth P
  • Sarah Moar
  • Rachel Reina
  • Letila
  • Katrina Barnum-Huckins
  • Suzanne Phillips
  • Nelly Silva
  • Venus Rebholz
  • Lyn Stubblefield
  • Jacob Taber
  • Brian Kimball
  • Emerson Woodhall
  • Kristina Gotfredsen
  • Timothy Parker
  • Steven Boyles
  • Chris Skupien
  • Chelsea B
  • Bri McAllister
  • Avishai Barnoy
  • Hunter Reardon
Support this podcast on Patreon

Hosted by Simplecast, an AdsWizz company. See pcm.adswizz.com for information about our collection and use of personal data for advertising.

More description

#038 Rebroadcast

Helium is all fun and games right? High voice, super funny, no worries right? Or is there a serious shortage of helium? This week, Melissa and Jam answer this question.

References from this episode

  1. Helium: Its Discovery and Applications – Locker
  2. We Discovered Helium 150 Years Ago. Are We Running Out? - Greshko
  3. Introductory Physics I - Brown
  4. Helium beer: prank or possible? - American Chemical Society
  5. Organic Chemistry, Edition 11 - Solomon
Find us on Instagram, Twitter, and Facebook @ChemForYourLife. Email us at chemforyourlife@gmail.com And check out our chill, simple little website at https://chemforyourlife.transistor.fm/

Thanks to our monthly supporters

  • Ciara Linville
  • J0HNTR0Y
  • Jeannette Napoleon
  • Cullyn R
  • Erica Bee
  • Elizabeth P
  • Sarah Moar
  • Rachel Reina
  • Letila
  • Katrina Barnum-Huckins
  • Suzanne Phillips
  • Nelly Silva
  • Venus Rebholz
  • Lyn Stubblefield
  • Jacob Taber
  • Brian Kimball
  • Emerson Woodhall
  • Kristina Gotfredsen
  • Timothy Parker
  • Steven Boyles
  • Chris Skupien
  • Chelsea B
  • Bri McAllister
  • Avishai Barnoy
  • Hunter Reardon
Support this podcast on Patreon

Hosted by Simplecast, an AdsWizz company. See pcm.adswizz.com for information about our collection and use of personal data for advertising.

Published 2026-04-23

How does reverse osmosis actually work?

38 min Transcript
View

#236

When a retired chemist wrote in… we had to explore to his great questions. How does reverse osmosis actually work? Should you put aluminum foil in your dishwasher? Why do mixed powders mysteriously un-mix themselves? This episode is full of clever questions, surprising chemistry, and very strong contributions from listener Vince!

Support this podcast on Patreon Buy Podcast Merch and Apparel

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Timestamps

0:00 – Intro + listener Vince brings the chemistry 1:30 – Reverse osmosis: what it is and why it works 2:00 – Osmosis explained simply 3:35 – Reverse osmosis vs normal filtration 4:20 – What reverse osmosis removes (PFAS, salt, contaminants) 5:00 – Why “pure” water can create new problems 6:10 – Why some companies re-mineralize water 8:10 – Water kiosks, PFAS, and an unexpected lead problem 10:40 – Why reverse osmosis creates so much wastewater 11:40 – Should you put aluminum foil in your dishwasher? 13:00 – Why dishwashers are secretly chemical reactors 16:00 – Melissa’s theories on what the foil might be doing 17:00 – Aluminum, silver tarnish, and stainless steel 21:10 – Sacrificial metals: aluminum protecting steel 24:20 – Dishwasher complaints + real life testing plans 26:20 – Why powders and solids can “un-mix” themselves 27:45 – The Brazil Nut Effect explained 29:20 – Why mixed particle sizes matter 30:40 – Instant coffee jars, Raisin Bran, and product design 31:30 – Mark Rober, floating in sand, and weird physics/chemistry crossover 33:40 – Bird tangent: woodcocks stomping for worms 35:15 – Wrap-up + thanks to Vince and the Chemmunity

Support this podcast on Patreon Buy Podcast Merch and Apparel

Check out our website at chemforyourlife.com

Watch our episodes on YouTube

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References from the Episode:

Thanks to our monthly supporters
Kelly D.
Bri
Summer Alden
Amanda Raymond
Kyle McCray
Justine
Ash
Vince W
Julie S.
Heather Ragusa
Autoclave
Dorien VD
Scott Beyer
Jessie Reder
J0HNTR0Y
Jeannette Napoleon
Cullyn R
Erica Bee
Elizabeth P
Rachel Reina
Letila
Katrina Barnum-Huckins
Suzanne Phillips
Venus Rebholz
Jacob Taber
Brian Kimball
Kristina Gotfredsen
Timothy Parker
Steven Boyles
Chris Skupien
Chelsea B
Avishai Barnoy
Hunter Reardon

Support this podcast on Patreon Buy Podcast Merch and Apparel

Check out our website at chemforyourlife.com

Watch our episodes on YouTube

Find us on Instagram, Twitter, and Facebook @ChemForYourLife


Hosted by Simplecast, an AdsWizz company. See pcm.adswizz.com for information about our collection and use of personal data for advertising.

More description

#236

When a retired chemist wrote in… we had to explore to his great questions. How does reverse osmosis actually work? Should you put aluminum foil in your dishwasher? Why do mixed powders mysteriously un-mix themselves? This episode is full of clever questions, surprising chemistry, and very strong contributions from listener Vince!

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Timestamps

0:00 – Intro + listener Vince brings the chemistry 1:30 – Reverse osmosis: what it is and why it works 2:00 – Osmosis explained simply 3:35 – Reverse osmosis vs normal filtration 4:20 – What reverse osmosis removes (PFAS, salt, contaminants) 5:00 – Why “pure” water can create new problems 6:10 – Why some companies re-mineralize water 8:10 – Water kiosks, PFAS, and an unexpected lead problem 10:40 – Why reverse osmosis creates so much wastewater 11:40 – Should you put aluminum foil in your dishwasher? 13:00 – Why dishwashers are secretly chemical reactors 16:00 – Melissa’s theories on what the foil might be doing 17:00 – Aluminum, silver tarnish, and stainless steel 21:10 – Sacrificial metals: aluminum protecting steel 24:20 – Dishwasher complaints + real life testing plans 26:20 – Why powders and solids can “un-mix” themselves 27:45 – The Brazil Nut Effect explained 29:20 – Why mixed particle sizes matter 30:40 – Instant coffee jars, Raisin Bran, and product design 31:30 – Mark Rober, floating in sand, and weird physics/chemistry crossover 33:40 – Bird tangent: woodcocks stomping for worms 35:15 – Wrap-up + thanks to Vince and the Chemmunity

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References from the Episode:

Thanks to our monthly supporters
Kelly D.
Bri
Summer Alden
Amanda Raymond
Kyle McCray
Justine
Ash
Vince W
Julie S.
Heather Ragusa
Autoclave
Dorien VD
Scott Beyer
Jessie Reder
J0HNTR0Y
Jeannette Napoleon
Cullyn R
Erica Bee
Elizabeth P
Rachel Reina
Letila
Katrina Barnum-Huckins
Suzanne Phillips
Venus Rebholz
Jacob Taber
Brian Kimball
Kristina Gotfredsen
Timothy Parker
Steven Boyles
Chris Skupien
Chelsea B
Avishai Barnoy
Hunter Reardon

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Question and Response #76

You asked… so we answered. What do carbon chains have to do with Greek words? How do MRIs make “3D pixels”? Is that pool smell actually chlorine? And wait… are birds blue, or is that just a trick of the light? This episode is a rapid-fire round of your questions, and the chemistry behind them.

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Timestamps

0:00 – Intro + “Ask a Chemist” episode setup
1:20 – Listener shoutout + why we love your questions
2:20 – Why a 20-carbon chain is called “icosane” (Greek roots)
6:00 – MRI “3D pixels” explained (and the Minecraft analogy)
9:20 – What is a particle accelerator actually doing?
12:40 – Can we really taste CO₂? (and Pop Rocks teaser)
13:40 – Why birds look blue (without blue pigment)
16:20 – “Isn’t this physics?” + bird stories from listeners
21:30 – Pool chemistry questions: chlorine, salt, and safety
22:20 – What that “pool smell” actually is
23:30 – Why pool chemistry feels different from “real” chemistry
27:00 – Stabilized chlorine + lingering pool mysteries
28:50 – Wrap-up + how to send in your questions

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References from the Episode:

Thanks to our monthly supporters
Bri
Summer Alden
Amanda Raymond
Kyle McCray
Justine
Ash
Vince W
Julie S.
Heather Ragusa
Autoclave
Dorien VD
Scott Beyer
Jessie Reder
J0HNTR0Y
Jeannette Napoleon
Cullyn R
Erica Bee
Elizabeth P
Rachel Reina
Letila
Katrina Barnum-Huckins
Suzanne Phillips
Venus Rebholz
Jacob Taber
Brian Kimball
Kristina Gotfredsen
Timothy Parker
Steven Boyles
Chris Skupien
Chelsea B
Avishai Barnoy
Hunter Reardon

Support this podcast on Patreon Buy Podcast Merch and Apparel

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Hosted by Simplecast, an AdsWizz company. See pcm.adswizz.com for information about our collection and use of personal data for advertising.

More description

Question and Response #76

You asked… so we answered. What do carbon chains have to do with Greek words? How do MRIs make “3D pixels”? Is that pool smell actually chlorine? And wait… are birds blue, or is that just a trick of the light? This episode is a rapid-fire round of your questions, and the chemistry behind them.

Support this podcast on Patreon
Buy Podcast Merch and Apparel

Check out our website at chemforyourlife.com

Watch our episodes on YouTube

Find us on Instagram, Twitter, and Facebook @ChemForYourLife

Timestamps

0:00 – Intro + “Ask a Chemist” episode setup
1:20 – Listener shoutout + why we love your questions
2:20 – Why a 20-carbon chain is called “icosane” (Greek roots)
6:00 – MRI “3D pixels” explained (and the Minecraft analogy)
9:20 – What is a particle accelerator actually doing?
12:40 – Can we really taste CO₂? (and Pop Rocks teaser)
13:40 – Why birds look blue (without blue pigment)
16:20 – “Isn’t this physics?” + bird stories from listeners
21:30 – Pool chemistry questions: chlorine, salt, and safety
22:20 – What that “pool smell” actually is
23:30 – Why pool chemistry feels different from “real” chemistry
27:00 – Stabilized chlorine + lingering pool mysteries
28:50 – Wrap-up + how to send in your questions

Support this podcast on Patreon
Buy Podcast Merch and Apparel

Check out our website at chemforyourlife.com

Watch our episodes on YouTube

Find us on Instagram, Twitter, and Facebook @ChemForYourLife

References from the Episode:

Thanks to our monthly supporters
Bri
Summer Alden
Amanda Raymond
Kyle McCray
Justine
Ash
Vince W
Julie S.
Heather Ragusa
Autoclave
Dorien VD
Scott Beyer
Jessie Reder
J0HNTR0Y
Jeannette Napoleon
Cullyn R
Erica Bee
Elizabeth P
Rachel Reina
Letila
Katrina Barnum-Huckins
Suzanne Phillips
Venus Rebholz
Jacob Taber
Brian Kimball
Kristina Gotfredsen
Timothy Parker
Steven Boyles
Chris Skupien
Chelsea B
Avishai Barnoy
Hunter Reardon

Support this podcast on Patreon Buy Podcast Merch and Apparel

Check out our website at chemforyourlife.com

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Extract Knowledge
Listen elsewhere
Published 2026-04-09

How do diapers change color when wet?

50 min Transcript
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#235

You’ve seen it a hundred times… but how does it actually work? Why do diapers change color when they’re wet? What kind of chemistry is happening in there? And how does something as simple as pee trigger such a dramatic color shift? Let’s talk acids, bases, color, and one surprisingly deep piece of everyday science.

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0:00 – Intro + diapers, parenting, and the big question
1:00 – Melissa’s nose update + community shoutouts
4:00 – Where this question came from (real-life inspiration)
5:30 – The two chemistry ideas: acids/bases + color
6:00 – What’s inside a diaper (polymers + absorption)
7:30 – The indicator strip: where the chemistry happens
8:30 – Acid-base reactions explained (with a breakup analogy)
11:30 – What happens after the “breakup” (conjugates + stability)
13:00 – Conjugation + the “electron highway”
18:30 – How this leads to color change
21:30 – What is an indicator? (and how this compares to cabbage juice)
23:30 – Why this reaction is so dramatic visually
24:50 – Jam explains it back (and works through the concepts)
30:00 – Clarifying acids vs bases (and common confusion)
33:00 – Building the full picture step-by-step
38:30 – Color, light, and energy (why we see yellow → blue)
44:50 – Wrap-up + why this matters in everyday life

Support this podcast on Patreon
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References from the Episode:

Thanks to our monthly supporters
Bri
Summer Alden
Amanda Raymond
Kyle McCray
Justine
Ash
Vince W
Julie S.
Heather Ragusa
Autoclave
Dorien VD
Scott Beyer
Jessie Reder
J0HNTR0Y
Jeannette Napoleon
Cullyn R
Erica Bee
Elizabeth P
Rachel Reina
Letila
Katrina Barnum-Huckins
Suzanne Phillips
Venus Rebholz
Jacob Taber
Brian Kimball
Kristina Gotfredsen
Timothy Parker
Steven Boyles
Chris Skupien
Chelsea B
Avishai Barnoy
Hunter Reardon

Support this podcast on Patreon Buy Podcast Merch and Apparel

Check out our website at chemforyourlife.com

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Find us on Instagram, Twitter, and Facebook @ChemForYourLife


Hosted by Simplecast, an AdsWizz company. See pcm.adswizz.com for information about our collection and use of personal data for advertising.

More description

#235

You’ve seen it a hundred times… but how does it actually work? Why do diapers change color when they’re wet? What kind of chemistry is happening in there? And how does something as simple as pee trigger such a dramatic color shift? Let’s talk acids, bases, color, and one surprisingly deep piece of everyday science.

Support this podcast on Patreon Buy Podcast Merch and Apparel

Check out our website at chemforyourlife.com

Watch our episodes on YouTube

Find us on Instagram, Twitter, and Facebook @ChemForYourLife

0:00 – Intro + diapers, parenting, and the big question
1:00 – Melissa’s nose update + community shoutouts
4:00 – Where this question came from (real-life inspiration)
5:30 – The two chemistry ideas: acids/bases + color
6:00 – What’s inside a diaper (polymers + absorption)
7:30 – The indicator strip: where the chemistry happens
8:30 – Acid-base reactions explained (with a breakup analogy)
11:30 – What happens after the “breakup” (conjugates + stability)
13:00 – Conjugation + the “electron highway”
18:30 – How this leads to color change
21:30 – What is an indicator? (and how this compares to cabbage juice)
23:30 – Why this reaction is so dramatic visually
24:50 – Jam explains it back (and works through the concepts)
30:00 – Clarifying acids vs bases (and common confusion)
33:00 – Building the full picture step-by-step
38:30 – Color, light, and energy (why we see yellow → blue)
44:50 – Wrap-up + why this matters in everyday life

Support this podcast on Patreon
Buy Podcast Merch and Apparel

Check out our website at chemforyourlife.com

Watch our episodes on YouTube

Find us on Instagram, Twitter, and Facebook @ChemForYourLife

References from the Episode:

Thanks to our monthly supporters
Bri
Summer Alden
Amanda Raymond
Kyle McCray
Justine
Ash
Vince W
Julie S.
Heather Ragusa
Autoclave
Dorien VD
Scott Beyer
Jessie Reder
J0HNTR0Y
Jeannette Napoleon
Cullyn R
Erica Bee
Elizabeth P
Rachel Reina
Letila
Katrina Barnum-Huckins
Suzanne Phillips
Venus Rebholz
Jacob Taber
Brian Kimball
Kristina Gotfredsen
Timothy Parker
Steven Boyles
Chris Skupien
Chelsea B
Avishai Barnoy
Hunter Reardon

Support this podcast on Patreon Buy Podcast Merch and Apparel

Check out our website at chemforyourlife.com

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Published 2026-04-02

How do deodorant and antiperspirant work?

46 min Transcript
View

#042 Rebroadcast

What's that smell? Is it us? Is it you? We hope it's neither, thanks to deodorants and antiperspirants. This week, Melissa and Jam delve into the chemistry of this everyday important substance. What are the differences between deodorant and antiperspirant? How do they work in the first place? Does one work better? Is one better for us? Be kind to one another, wear deodorant.

References from this episode

  1. Individual and gender fingerprints in human body odour – Dustin J Penn, Elisabeth Oberzaucher, Karl Grammer, Gottfried Fischer, Helena A Soini, Donald Wiesler, Milos V Novotny, Sarah J Dixon, Yun Xu, and Richard G Brereton
  2. What are deodorants and antiperspirants, and how do they fight sweat? - Everts, Chemical and Engineering News
  3. Studies of trans 3 methyl 2 hexenoic acid in normal and schizophrenic humans - S. G. Gordon, K. Smith, L. Rabinowitz, P. R. Vagelos, Journal of lipid research
  4. Breast Cancer and Deodorants/Antiperspirants: A Systematic Review
  5. Aluminium, antiperspirants and breast cancer
  6. The mechanism of eccrine sweat pore plugging by aluminium salts using microfluidics combined with small angle X-ray scattering. - Bretagne A, Cotot F, Arnaud-Roux M, Sztucki M, Cabane B, Galey JB.
 

Support this podcast on Patreon
Buy Podcast Merch and Apparel

Check out our website at chemforyourlife.com

Watch our episodes on YouTube

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References from the Episode:

Thanks to our monthly supporters

  • Amanda Raymond
  • Emily Morrison
  • Kyle McCray
  • Justine
  • Emily Hardy
  • Ash
  • Vince W
  • Julie S.
  • Heather Ragusa
  • Autoclave
  • Dorien VD
  • Scott Beyer
  • Jessie Reder
  • J0HNTR0Y
  • Jeannette Napoleon
  • Cullyn R
  • Erica Bee
  • Elizabeth P
  • Rachel Reina
  • Letila
  • Katrina Barnum-Huckins
  • Suzanne Phillips
  • Venus Rebholz
  • Jacob Taber
  • Brian Kimball
  • Kristina Gotfredsen
  • Timothy Parker
  • Steven Boyles
  • Chris Skupien
  • Chelsea B
  • Avishai Barnoy
  • Hunter Reardon
Support this podcast on Patreon Buy Podcast Merch and Apparel

Check out our website at chemforyourlife.com

Watch our episodes on YouTube

Find us on Instagram, Twitter, and Facebook @ChemForYourLife

 


Hosted by Simplecast, an AdsWizz company. See pcm.adswizz.com for information about our collection and use of personal data for advertising.

More description

#042 Rebroadcast

What's that smell? Is it us? Is it you? We hope it's neither, thanks to deodorants and antiperspirants. This week, Melissa and Jam delve into the chemistry of this everyday important substance. What are the differences between deodorant and antiperspirant? How do they work in the first place? Does one work better? Is one better for us? Be kind to one another, wear deodorant.

References from this episode

  1. Individual and gender fingerprints in human body odour – Dustin J Penn, Elisabeth Oberzaucher, Karl Grammer, Gottfried Fischer, Helena A Soini, Donald Wiesler, Milos V Novotny, Sarah J Dixon, Yun Xu, and Richard G Brereton
  2. What are deodorants and antiperspirants, and how do they fight sweat? - Everts, Chemical and Engineering News
  3. Studies of trans 3 methyl 2 hexenoic acid in normal and schizophrenic humans - S. G. Gordon, K. Smith, L. Rabinowitz, P. R. Vagelos, Journal of lipid research
  4. Breast Cancer and Deodorants/Antiperspirants: A Systematic Review
  5. Aluminium, antiperspirants and breast cancer
  6. The mechanism of eccrine sweat pore plugging by aluminium salts using microfluidics combined with small angle X-ray scattering. - Bretagne A, Cotot F, Arnaud-Roux M, Sztucki M, Cabane B, Galey JB.
 

Support this podcast on Patreon
Buy Podcast Merch and Apparel

Check out our website at chemforyourlife.com

Watch our episodes on YouTube

Find us on Instagram, Twitter, and Facebook @ChemForYourLife

References from the Episode:

Thanks to our monthly supporters

  • Amanda Raymond
  • Emily Morrison
  • Kyle McCray
  • Justine
  • Emily Hardy
  • Ash
  • Vince W
  • Julie S.
  • Heather Ragusa
  • Autoclave
  • Dorien VD
  • Scott Beyer
  • Jessie Reder
  • J0HNTR0Y
  • Jeannette Napoleon
  • Cullyn R
  • Erica Bee
  • Elizabeth P
  • Rachel Reina
  • Letila
  • Katrina Barnum-Huckins
  • Suzanne Phillips
  • Venus Rebholz
  • Jacob Taber
  • Brian Kimball
  • Kristina Gotfredsen
  • Timothy Parker
  • Steven Boyles
  • Chris Skupien
  • Chelsea B
  • Avishai Barnoy
  • Hunter Reardon
Support this podcast on Patreon Buy Podcast Merch and Apparel

Check out our website at chemforyourlife.com

Watch our episodes on YouTube

Find us on Instagram, Twitter, and Facebook @ChemForYourLife

 


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Published 2026-03-26

More bird chemistry?!

35 min Transcript
View

Birds… but chemistry.
What does compost have to do with eggs? How are birds basically doing chemistry experiments to make their colors? Why would a bird eat dirt… or rub ants all over itself?? This episode is a grab bag of wild, fascinating bird facts that connect back to chemistry you already know. No quiz, just vibes.

Support this podcast on Patreon
Buy Podcast Merch and Apparel

Check out our website at chemforyourlife.com

Watch our episodes on YouTube

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00:00 Bird Chemistry Vibes
02:02 Compost Egg Incubators
02:58 Feather Colors Chemistry
06:20 Seeing Ultraviolet Light
08:11 Clay Eating Detox Trick
09:28 Hot Bodies Fast Reactions
14:23 Preening Oil Waterproofing
16:15 Rainy Day Birdwatching
16:44 Anting Bird Hygiene
19:17 Seabird Feather Sunscreen
20:14 More Bird Chemistry Ahead
20:41 Bird Phobia Banter
21:19 Documentary Media Swap
22:22 Mississippi Kite Swoops
28:19 Do Birds Recognize Faces
31:12 Photo IDs and Backyard Hawks
32:34 Chicken Show Family Lore
33:00 Wrap Up and Support

Support this podcast on Patreon
Buy Podcast Merch and Apparel

Check out our website at chemforyourlife.com

Watch our episodes on YouTube

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References from the Episode:

Thanks to our monthly supporters

  • Amanda Raymond
  • Emily Morrison
  • Kyle McCray
  • Justine
  • Emily Hardy
  • Ash
  • Vince W
  • Julie S.
  • Heather Ragusa
  • Autoclave
  • Dorien VD
  • Scott Beyer
  • Jessie Reder
  • J0HNTR0Y
  • Jeannette Napoleon
  • Cullyn R
  • Erica Bee
  • Elizabeth P
  • Rachel Reina
  • Letila
  • Katrina Barnum-Huckins
  • Suzanne Phillips
  • Venus Rebholz
  • Jacob Taber
  • Brian Kimball
  • Kristina Gotfredsen
  • Timothy Parker
  • Steven Boyles
  • Chris Skupien
  • Chelsea B
  • Avishai Barnoy
  • Hunter Reardon
Support this podcast on Patreon Buy Podcast Merch and Apparel

Check out our website at chemforyourlife.com

Watch our episodes on YouTube

Find us on Instagram, Twitter, and Facebook @ChemForYourLife


Hosted by Simplecast, an AdsWizz company. See pcm.adswizz.com for information about our collection and use of personal data for advertising.

More description

Birds… but chemistry.
What does compost have to do with eggs? How are birds basically doing chemistry experiments to make their colors? Why would a bird eat dirt… or rub ants all over itself?? This episode is a grab bag of wild, fascinating bird facts that connect back to chemistry you already know. No quiz, just vibes.

Support this podcast on Patreon
Buy Podcast Merch and Apparel

Check out our website at chemforyourlife.com

Watch our episodes on YouTube

Find us on Instagram, Twitter, and Facebook @ChemForYourLife

00:00 Bird Chemistry Vibes
02:02 Compost Egg Incubators
02:58 Feather Colors Chemistry
06:20 Seeing Ultraviolet Light
08:11 Clay Eating Detox Trick
09:28 Hot Bodies Fast Reactions
14:23 Preening Oil Waterproofing
16:15 Rainy Day Birdwatching
16:44 Anting Bird Hygiene
19:17 Seabird Feather Sunscreen
20:14 More Bird Chemistry Ahead
20:41 Bird Phobia Banter
21:19 Documentary Media Swap
22:22 Mississippi Kite Swoops
28:19 Do Birds Recognize Faces
31:12 Photo IDs and Backyard Hawks
32:34 Chicken Show Family Lore
33:00 Wrap Up and Support

Support this podcast on Patreon
Buy Podcast Merch and Apparel

Check out our website at chemforyourlife.com

Watch our episodes on YouTube

Find us on Instagram, Twitter, and Facebook @ChemForYourLife

References from the Episode:

Thanks to our monthly supporters

  • Amanda Raymond
  • Emily Morrison
  • Kyle McCray
  • Justine
  • Emily Hardy
  • Ash
  • Vince W
  • Julie S.
  • Heather Ragusa
  • Autoclave
  • Dorien VD
  • Scott Beyer
  • Jessie Reder
  • J0HNTR0Y
  • Jeannette Napoleon
  • Cullyn R
  • Erica Bee
  • Elizabeth P
  • Rachel Reina
  • Letila
  • Katrina Barnum-Huckins
  • Suzanne Phillips
  • Venus Rebholz
  • Jacob Taber
  • Brian Kimball
  • Kristina Gotfredsen
  • Timothy Parker
  • Steven Boyles
  • Chris Skupien
  • Chelsea B
  • Avishai Barnoy
  • Hunter Reardon
Support this podcast on Patreon Buy Podcast Merch and Apparel

Check out our website at chemforyourlife.com

Watch our episodes on YouTube

Find us on Instagram, Twitter, and Facebook @ChemForYourLife


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Published 2026-03-19

What even is DEET?

37 min Transcript
View

#053 Rebroadcast

This week, Melissa and Jam revisit one of their fav episodes on the topic of mosquitos. What is DEET? What part does it play in repelling mosquitos? How do repellants repel mosquitos in the first place? Is it just straight witchcraft? Let's do it.

Support this podcast on Patreon
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Check out our website at chemforyourlife.com

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References from this episode

  1. Staph Retreat - Radiolab - WYNC
  2. https://www.acs.org/content/acs/en/education/whatischemistry/landmarks/rachel-carson-silent-spring.html
  3. https://www3.epa.gov/pesticides/chem_search/reg_actions/reregistration/fs_PC-080301_1-Apr-98.pdf
  4. https://www.scientificamerican.com/article/is-it-true-that-the-deet/
  5. https://pubmed.ncbi.nlm.nih.gov/24892824/
  6. https://pubmed.ncbi.nlm.nih.gov/11693870/
  7. https://pubmed.ncbi.nlm.nih.gov/26827259/
  8. https://www.cell.com/current-biology/fulltext/S0960-9822(19)31167-4?_returnURL=https%3A%2F%2Flinkinghub.elsevier.com%2Fretrieve%2Fpii%2FS0960982219311674%3Fshowall%3Dtrue
  9. https://www.cell.com/current-biology/fulltext/S0960-9822(19)31167-4?_returnURL=https%3A%2F%2Flinkinghub.elsevier.com%2Fretrieve%2Fpii%2FS0960982219311674%3Fshowall%3Dtrue
  10. https://cen.acs.org/biological-chemistry/biochemistry/does-DEET-fend-off-malaria/97/web/2019/10
 

 

Thanks to our monthly supporters

  • Amanda Raymond
  • Emily Morrison
  • Kyle McCray
  • Justine
  • Emily Hardy
  • Ash
  • Vince W
  • Julie S.
  • Heather Ragusa
  • Autoclave
  • Dorien VD
  • Scott Beyer
  • Jessie Reder
  • J0HNTR0Y
  • Jeannette Napoleon
  • Cullyn R
  • Erica Bee
  • Elizabeth P
  • Rachel Reina
  • Letila
  • Katrina Barnum-Huckins
  • Suzanne Phillips
  • Venus Rebholz
  • Jacob Taber
  • Brian Kimball
  • Kristina Gotfredsen
  • Timothy Parker
  • Steven Boyles
  • Chris Skupien
  • Chelsea B
  • Avishai Barnoy
  • Hunter Reardon
Support this podcast on Patreon Buy Podcast Merch and Apparel

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More description

#053 Rebroadcast

This week, Melissa and Jam revisit one of their fav episodes on the topic of mosquitos. What is DEET? What part does it play in repelling mosquitos? How do repellants repel mosquitos in the first place? Is it just straight witchcraft? Let's do it.

Support this podcast on Patreon
Buy Podcast Merch and Apparel

Check out our website at chemforyourlife.com

Watch our episodes on YouTube

Find us on Instagram, Twitter, and Facebook @ChemForYourLife

References from this episode

  1. Staph Retreat - Radiolab - WYNC
  2. https://www.acs.org/content/acs/en/education/whatischemistry/landmarks/rachel-carson-silent-spring.html
  3. https://www3.epa.gov/pesticides/chem_search/reg_actions/reregistration/fs_PC-080301_1-Apr-98.pdf
  4. https://www.scientificamerican.com/article/is-it-true-that-the-deet/
  5. https://pubmed.ncbi.nlm.nih.gov/24892824/
  6. https://pubmed.ncbi.nlm.nih.gov/11693870/
  7. https://pubmed.ncbi.nlm.nih.gov/26827259/
  8. https://www.cell.com/current-biology/fulltext/S0960-9822(19)31167-4?_returnURL=https%3A%2F%2Flinkinghub.elsevier.com%2Fretrieve%2Fpii%2FS0960982219311674%3Fshowall%3Dtrue
  9. https://www.cell.com/current-biology/fulltext/S0960-9822(19)31167-4?_returnURL=https%3A%2F%2Flinkinghub.elsevier.com%2Fretrieve%2Fpii%2FS0960982219311674%3Fshowall%3Dtrue
  10. https://cen.acs.org/biological-chemistry/biochemistry/does-DEET-fend-off-malaria/97/web/2019/10
 

 

Thanks to our monthly supporters

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Published 2026-03-12

How do birds fly? And how is chemistry involved?!

40 min Transcript
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Birds fly all the time. We see it constantly. But how does it actually work? Is it just "Bernoulli’s" principle? Is the air pushing up? Are the wings pushing down? And what’s happening at the molecular level when a bird takes off? Let’s talk about feathers, airflow, collisions between air molecules, and why the way flight is usually explained might not actually be the whole story.

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Timestamps:

  • 00:00 — The Question Have you ever actually wondered how birds fly? A kid’s question sparks the episode.
  • 01:00 — “Isn’t this physics?” Why a chemistry podcast is talking about aerodynamics.
  • 02:00 — A disclaimer about flight explanations Melissa explains why common explanations of bird flight can be misleading.
  • 04:00 — The weird analogy that starts it all What does oobleck (cornstarch and water) have to do with bird wings?
  • 06:00 — Air isn’t nothing Thinking about air as billions of tiny molecules interacting with wings.
  • 09:00 — The classic explanation of lift Bernoulli’s principle and why it’s often used to explain flight.
  • 13:00 — Why that explanation isn’t the whole story What’s missing from the “air moves faster over the top” idea.
  • 18:00 — Collisions at the molecular level What air molecules are actually doing when a wing moves through them.
  • 22:00 — Pushing air downward Why deflecting air matters for creating lift.
  • 26:00 — Wing shape and angle How airfoil shape and angle of attack change the behavior of airflow.
  • 30:00 — Flapping vs gliding Why bird flight isn’t the same as airplane flight.
  • 34:00 — Turbulence and airflow patterns What’s happening behind the wing as the bird moves through the air.
  • 37:00 — Bringing chemistry into the picture How thinking about molecular motion helps make sense of the physics.
  • 39:00 — Final recap So… what actually keeps birds in the air?
 

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References from the Episode:

Thanks to our monthly supporters

  • Amanda Raymond
  • Emily Morrison
  • Kyle McCray
  • Justine
  • Emily Hardy
  • Ash
  • Vince W
  • Julie S.
  • Heather Ragusa
  • Autoclave
  • Dorien VD
  • Scott Beyer
  • Jessie Reder
  • J0HNTR0Y
  • Jeannette Napoleon
  • Cullyn R
  • Erica Bee
  • Elizabeth P
  • Rachel Reina
  • Letila
  • Katrina Barnum-Huckins
  • Suzanne Phillips
  • Venus Rebholz
  • Jacob Taber
  • Brian Kimball
  • Kristina Gotfredsen
  • Timothy Parker
  • Steven Boyles
  • Chris Skupien
  • Chelsea B
  • Avishai Barnoy
  • Hunter Reardon
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More description

Birds fly all the time. We see it constantly. But how does it actually work? Is it just "Bernoulli’s" principle? Is the air pushing up? Are the wings pushing down? And what’s happening at the molecular level when a bird takes off? Let’s talk about feathers, airflow, collisions between air molecules, and why the way flight is usually explained might not actually be the whole story.

Support this podcast on Patreon
Buy Podcast Merch and Apparel

Check out our website at chemforyourlife.com

Watch our episodes on YouTube

Find us on Instagram, Twitter, and Facebook @ChemForYourLife

Timestamps:

  • 00:00 — The Question Have you ever actually wondered how birds fly? A kid’s question sparks the episode.
  • 01:00 — “Isn’t this physics?” Why a chemistry podcast is talking about aerodynamics.
  • 02:00 — A disclaimer about flight explanations Melissa explains why common explanations of bird flight can be misleading.
  • 04:00 — The weird analogy that starts it all What does oobleck (cornstarch and water) have to do with bird wings?
  • 06:00 — Air isn’t nothing Thinking about air as billions of tiny molecules interacting with wings.
  • 09:00 — The classic explanation of lift Bernoulli’s principle and why it’s often used to explain flight.
  • 13:00 — Why that explanation isn’t the whole story What’s missing from the “air moves faster over the top” idea.
  • 18:00 — Collisions at the molecular level What air molecules are actually doing when a wing moves through them.
  • 22:00 — Pushing air downward Why deflecting air matters for creating lift.
  • 26:00 — Wing shape and angle How airfoil shape and angle of attack change the behavior of airflow.
  • 30:00 — Flapping vs gliding Why bird flight isn’t the same as airplane flight.
  • 34:00 — Turbulence and airflow patterns What’s happening behind the wing as the bird moves through the air.
  • 37:00 — Bringing chemistry into the picture How thinking about molecular motion helps make sense of the physics.
  • 39:00 — Final recap So… what actually keeps birds in the air?
 

Support this podcast on Patreon
Buy Podcast Merch and Apparel

Check out our website at chemforyourlife.com

Watch our episodes on YouTube

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References from the Episode:

Thanks to our monthly supporters

  • Amanda Raymond
  • Emily Morrison
  • Kyle McCray
  • Justine
  • Emily Hardy
  • Ash
  • Vince W
  • Julie S.
  • Heather Ragusa
  • Autoclave
  • Dorien VD
  • Scott Beyer
  • Jessie Reder
  • J0HNTR0Y
  • Jeannette Napoleon
  • Cullyn R
  • Erica Bee
  • Elizabeth P
  • Rachel Reina
  • Letila
  • Katrina Barnum-Huckins
  • Suzanne Phillips
  • Venus Rebholz
  • Jacob Taber
  • Brian Kimball
  • Kristina Gotfredsen
  • Timothy Parker
  • Steven Boyles
  • Chris Skupien
  • Chelsea B
  • Avishai Barnoy
  • Hunter Reardon
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In this bonus episode, we host a rematch of our game “Fun Fact or Fake Factoid” with Claire and Jam, using stricter rules: each claim must be entirely true or false as worded, and the winner earns a treat. We test statements about pregnancy-related brain changes, koala fingerprints, bird body temperature, whether every fig contains a dead wasp, how egg markings form, woodpecker tongues wrapping around their skulls, unique parrot pigments, bald eagles’ ability to take off from the ground, black bear maternal instinct, and whether red bird color is structural rather than pigment-based.

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00:00 Rematch Setup
00:42 Rules and Stakes
02:46 Pregnancy Brain Changes
05:55 Koala Fingerprints
07:48 Bird Body Temperature Myth
11:26 Fig Wasp Debate
15:33 Egg Markings Explained
16:53 Egg Pigment Mystery
17:57 Woodpecker Tongue Wrap
19:13 Tie Breaker Rules
20:26 Parrot Pigment Class
21:18 Eagle Takeoff Myth
24:27 Bear Instinct Debate
25:19 Bird Color Science
29:54 Rematch And Submissions
31:21 Support And Credits

References from the Episode:

Thanks to our monthly supporters

  • Amanda Raymond
  • Emily Morrison
  • Kyle McCray
  • Justine
  • Emily Hardy
  • Ash
  • Vince W
  • Julie S.
  • Heather Ragusa
  • Autoclave
  • Dorien VD
  • Scott Beyer
  • Jessie Reder
  • J0HNTR0Y
  • Jeannette Napoleon
  • Cullyn R
  • Erica Bee
  • Elizabeth P
  • Rachel Reina
  • Letila
  • Katrina Barnum-Huckins
  • Suzanne Phillips
  • Venus Rebholz
  • Jacob Taber
  • Brian Kimball
  • Kristina Gotfredsen
  • Timothy Parker
  • Steven Boyles
  • Chris Skupien
  • Chelsea B
  • Avishai Barnoy
  • Hunter Reardon
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More description

In this bonus episode, we host a rematch of our game “Fun Fact or Fake Factoid” with Claire and Jam, using stricter rules: each claim must be entirely true or false as worded, and the winner earns a treat. We test statements about pregnancy-related brain changes, koala fingerprints, bird body temperature, whether every fig contains a dead wasp, how egg markings form, woodpecker tongues wrapping around their skulls, unique parrot pigments, bald eagles’ ability to take off from the ground, black bear maternal instinct, and whether red bird color is structural rather than pigment-based.

Support this podcast on Patreon
Buy Podcast Merch and Apparel

Check out our website at chemforyourlife.com

Watch our episodes on YouTube

Find us on Instagram, Twitter, and Facebook @ChemForYourLife

00:00 Rematch Setup
00:42 Rules and Stakes
02:46 Pregnancy Brain Changes
05:55 Koala Fingerprints
07:48 Bird Body Temperature Myth
11:26 Fig Wasp Debate
15:33 Egg Markings Explained
16:53 Egg Pigment Mystery
17:57 Woodpecker Tongue Wrap
19:13 Tie Breaker Rules
20:26 Parrot Pigment Class
21:18 Eagle Takeoff Myth
24:27 Bear Instinct Debate
25:19 Bird Color Science
29:54 Rematch And Submissions
31:21 Support And Credits

References from the Episode:

Thanks to our monthly supporters

  • Amanda Raymond
  • Emily Morrison
  • Kyle McCray
  • Justine
  • Emily Hardy
  • Ash
  • Vince W
  • Julie S.
  • Heather Ragusa
  • Autoclave
  • Dorien VD
  • Scott Beyer
  • Jessie Reder
  • J0HNTR0Y
  • Jeannette Napoleon
  • Cullyn R
  • Erica Bee
  • Elizabeth P
  • Rachel Reina
  • Letila
  • Katrina Barnum-Huckins
  • Suzanne Phillips
  • Venus Rebholz
  • Jacob Taber
  • Brian Kimball
  • Kristina Gotfredsen
  • Timothy Parker
  • Steven Boyles
  • Chris Skupien
  • Chelsea B
  • Avishai Barnoy
  • Hunter Reardon
Support this podcast on Patreon Buy Podcast Merch and Apparel

Check out our website at chemforyourlife.com

Watch our episodes on YouTube

Find us on Instagram, Twitter, and Facebook @ChemForYourLife


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MRIs are loud. They’re huge. They’re magnetic. But what are they actually doing? This week, we bring Claire back to help us connect the dots between NMR (yes, organic chem flashbacks) and MRI. How does a technique built on tiny hydrogen protons turn into a 3D image of your brain? How can it tell the difference between tissue and fluid? Why can’t you bring metal anywhere near the machine?

We ask:
• What are your protons doing inside an MRI?
• How does “magnetic resonance” become an image?
• Why does oxygenated blood matter?
• And how did anyone figure this out in the first place?

If you’ve ever had an MRI, or just wondered how we can see inside the body without radiation or surgery, this episode pulls back the curtain.

Listen in and rethink what’s happening inside that giant magnet.

00:00 MRI Episode Kickoff
01:11 Meet Claire Again
02:27 PhD Candidate Explained
03:44 NMR Basics Begin
04:33 Protons And Magnets
06:46 RF Pulse And Signal
11:16 Hydrogen Everywhere
13:35 Reading NMR Peaks
16:02 Matrix And Practice
18:31 Jam Summarizes NMR
20:44 Why MRI Not NMR
22:45 Spin And Isotopes
29:02 MRI Uses Body Water
30:37 Tissue Contrast And T1
33:38 Resolution Limits
34:25 MRI Resolution Limits
35:34 From NMR to Images
36:50 K Space and Gradients
41:30 Voxels and 3D Views
44:05 Contrast and Clinical Uses
49:47 Research Possibilities
51:11 Functional MRI Explained
56:14 MRI Safety and Magnet Strength
58:00 Helium and Heavy Machines
01:02:43 Science Boundaries and Wrap Up

 

Support this podcast on Patreon
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References from the Episode:

Thanks to our monthly supporters

  • Amanda Raymond
  • Emily Morrison
  • Kyle McCray
  • Justine
  • Emily Hardy
  • Ash
  • Vince W
  • Julie S.
  • Heather Ragusa
  • Autoclave
  • Dorien VD
  • Scott Beyer
  • Jessie Reder
  • J0HNTR0Y
  • Jeannette Napoleon
  • Cullyn R
  • Erica Bee
  • Elizabeth P
  • Rachel Reina
  • Letila
  • Katrina Barnum-Huckins
  • Suzanne Phillips
  • Venus Rebholz
  • Jacob Taber
  • Brian Kimball
  • Kristina Gotfredsen
  • Timothy Parker
  • Steven Boyles
  • Chris Skupien
  • Chelsea B
  • Avishai Barnoy
  • Hunter Reardon
Support this podcast on Patreon Buy Podcast Merch and Apparel

Check out our website at chemforyourlife.com

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Find us on Instagram, Twitter, and Facebook @ChemForYourLife


Hosted by Simplecast, an AdsWizz company. See pcm.adswizz.com for information about our collection and use of personal data for advertising.

More description

MRIs are loud. They’re huge. They’re magnetic. But what are they actually doing? This week, we bring Claire back to help us connect the dots between NMR (yes, organic chem flashbacks) and MRI. How does a technique built on tiny hydrogen protons turn into a 3D image of your brain? How can it tell the difference between tissue and fluid? Why can’t you bring metal anywhere near the machine?

We ask:
• What are your protons doing inside an MRI?
• How does “magnetic resonance” become an image?
• Why does oxygenated blood matter?
• And how did anyone figure this out in the first place?

If you’ve ever had an MRI, or just wondered how we can see inside the body without radiation or surgery, this episode pulls back the curtain.

Listen in and rethink what’s happening inside that giant magnet.

00:00 MRI Episode Kickoff
01:11 Meet Claire Again
02:27 PhD Candidate Explained
03:44 NMR Basics Begin
04:33 Protons And Magnets
06:46 RF Pulse And Signal
11:16 Hydrogen Everywhere
13:35 Reading NMR Peaks
16:02 Matrix And Practice
18:31 Jam Summarizes NMR
20:44 Why MRI Not NMR
22:45 Spin And Isotopes
29:02 MRI Uses Body Water
30:37 Tissue Contrast And T1
33:38 Resolution Limits
34:25 MRI Resolution Limits
35:34 From NMR to Images
36:50 K Space and Gradients
41:30 Voxels and 3D Views
44:05 Contrast and Clinical Uses
49:47 Research Possibilities
51:11 Functional MRI Explained
56:14 MRI Safety and Magnet Strength
58:00 Helium and Heavy Machines
01:02:43 Science Boundaries and Wrap Up

 

Support this podcast on Patreon
Buy Podcast Merch and Apparel

Check out our website at chemforyourlife.com

Watch our episodes on YouTube

Find us on Instagram, Twitter, and Facebook @ChemForYourLife

References from the Episode:

Thanks to our monthly supporters

  • Amanda Raymond
  • Emily Morrison
  • Kyle McCray
  • Justine
  • Emily Hardy
  • Ash
  • Vince W
  • Julie S.
  • Heather Ragusa
  • Autoclave
  • Dorien VD
  • Scott Beyer
  • Jessie Reder
  • J0HNTR0Y
  • Jeannette Napoleon
  • Cullyn R
  • Erica Bee
  • Elizabeth P
  • Rachel Reina
  • Letila
  • Katrina Barnum-Huckins
  • Suzanne Phillips
  • Venus Rebholz
  • Jacob Taber
  • Brian Kimball
  • Kristina Gotfredsen
  • Timothy Parker
  • Steven Boyles
  • Chris Skupien
  • Chelsea B
  • Avishai Barnoy
  • Hunter Reardon
Support this podcast on Patreon Buy Podcast Merch and Apparel

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Published 2026-02-19

Is glass actually a liquid?

32 min
View

#079 Rebroadcast

Glass. The more you look at it, the more clear it becomes that it holds some serious mysteries. So what really is glass? Is it a liquid? How is it different from typical solids? Does it flow and ooze over time? Is that why old windows are thicker at the bottom? Let's find out!

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References from this episode

  1. https://cen.acs.org/articles/95/i47/s-glass-modern-day-researchers.html
  2. https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7245478/
  3. https://math.ucr.edu/home/baez/physics/General/Glass/glass.html
  4. https://phys.org/news/2016-03-scientists-temperature-glass-liquid.html
  5. https://ceramics.onlinelibrary.wiley.com/doi/abs/10.1111/jace.15092
  6. https://cen.acs.org/articles/93/i20/Pyrex-100.html
  7. Chemistry by Julia Burdge
 

Thanks to our monthly supporters

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More description

#079 Rebroadcast

Glass. The more you look at it, the more clear it becomes that it holds some serious mysteries. So what really is glass? Is it a liquid? How is it different from typical solids? Does it flow and ooze over time? Is that why old windows are thicker at the bottom? Let's find out!

Support this podcast on Patreon
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Check out our website at chemforyourlife.com

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References from this episode

  1. https://cen.acs.org/articles/95/i47/s-glass-modern-day-researchers.html
  2. https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7245478/
  3. https://math.ucr.edu/home/baez/physics/General/Glass/glass.html
  4. https://phys.org/news/2016-03-scientists-temperature-glass-liquid.html
  5. https://ceramics.onlinelibrary.wiley.com/doi/abs/10.1111/jace.15092
  6. https://cen.acs.org/articles/93/i20/Pyrex-100.html
  7. Chemistry by Julia Burdge
 

Thanks to our monthly supporters

  • Amanda Raymond
  • Emily Morrison
  • Kyle McCray
  • Justine
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  • Ash
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  • Julie S.
  • Heather Ragusa
  • Autoclave
  • Dorien VD
  • Scott Beyer
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  • Cullyn R
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  • Venus Rebholz
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Extract Knowledge
Listen elsewhere
Published 2026-02-12

What makes ice slippery? (A surprising science mystery)

52 min Transcript
View

#231

Why is ice so slippery? Is it because of a layer of water on top, or is it something more complex? Join us as we dive into the chemistry behind icy surfaces, inspired by a curious 5-year-old's question. You'll hear about experimental findings, the special properties of water, and even some amusing snow day memories. Perfect for anyone who's ever wondered why ice makes us slip and slide!

00:00 Experiencing Alaska in Texas
00:24 The Chemistry of Ice and Snow
01:42 Why is Ice Slippery?
03:10 Listener Questions and Ice Skating Chemistry
04:02 Debunking Ice Slipperiness Theories
11:42 Water's Unique Properties
17:43 Pressure and Melting Ice
22:30 Scientific Findings on Ice Slipperiness
24:12 Addressing Common Comments
24:31 The Science of Ice Skating
25:30 New Research on Ice
26:37 Amorphous Solids and Ice
37:09 Practical Implications of Ice Behavior
41:12 Snow Day Memories
49:14 Supporting the Show

Support this podcast on Patreon
Buy Podcast Merch and Apparel

Check out our website at chemforyourlife.com

Watch our episodes on YouTube

Find us on Instagram, Twitter, and Facebook @ChemForYourLife

References from the Episode:

Thanks to our monthly supporters

  • Amanda Raymond
  • Emily Morrison
  • Kyle McCray
  • Justine
  • Emily Hardy
  • Ash
  • Vince W
  • Julie S.
  • Heather Ragusa
  • Autoclave
  • Dorien VD
  • Scott Beyer
  • Jessie Reder
  • J0HNTR0Y
  • Jeannette Napoleon
  • Cullyn R
  • Erica Bee
  • Elizabeth P
  • Rachel Reina
  • Letila
  • Katrina Barnum-Huckins
  • Suzanne Phillips
  • Venus Rebholz
  • Jacob Taber
  • Brian Kimball
  • Kristina Gotfredsen
  • Timothy Parker
  • Steven Boyles
  • Chris Skupien
  • Chelsea B
  • Avishai Barnoy
  • Hunter Reardon
Support this podcast on Patreon Buy Podcast Merch and Apparel

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Hosted by Simplecast, an AdsWizz company. See pcm.adswizz.com for information about our collection and use of personal data for advertising.

More description

#231

Why is ice so slippery? Is it because of a layer of water on top, or is it something more complex? Join us as we dive into the chemistry behind icy surfaces, inspired by a curious 5-year-old's question. You'll hear about experimental findings, the special properties of water, and even some amusing snow day memories. Perfect for anyone who's ever wondered why ice makes us slip and slide!

00:00 Experiencing Alaska in Texas
00:24 The Chemistry of Ice and Snow
01:42 Why is Ice Slippery?
03:10 Listener Questions and Ice Skating Chemistry
04:02 Debunking Ice Slipperiness Theories
11:42 Water's Unique Properties
17:43 Pressure and Melting Ice
22:30 Scientific Findings on Ice Slipperiness
24:12 Addressing Common Comments
24:31 The Science of Ice Skating
25:30 New Research on Ice
26:37 Amorphous Solids and Ice
37:09 Practical Implications of Ice Behavior
41:12 Snow Day Memories
49:14 Supporting the Show

Support this podcast on Patreon
Buy Podcast Merch and Apparel

Check out our website at chemforyourlife.com

Watch our episodes on YouTube

Find us on Instagram, Twitter, and Facebook @ChemForYourLife

References from the Episode:

Thanks to our monthly supporters

  • Amanda Raymond
  • Emily Morrison
  • Kyle McCray
  • Justine
  • Emily Hardy
  • Ash
  • Vince W
  • Julie S.
  • Heather Ragusa
  • Autoclave
  • Dorien VD
  • Scott Beyer
  • Jessie Reder
  • J0HNTR0Y
  • Jeannette Napoleon
  • Cullyn R
  • Erica Bee
  • Elizabeth P
  • Rachel Reina
  • Letila
  • Katrina Barnum-Huckins
  • Suzanne Phillips
  • Venus Rebholz
  • Jacob Taber
  • Brian Kimball
  • Kristina Gotfredsen
  • Timothy Parker
  • Steven Boyles
  • Chris Skupien
  • Chelsea B
  • Avishai Barnoy
  • Hunter Reardon
Support this podcast on Patreon Buy Podcast Merch and Apparel

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Why can birds sit on electrical wires without getting shocked? What's the chemistry behind cake mix versus baking from scratch? Why do some materials create more fire than others? Melissa and Jam tackle these questions and more, drawn from curious listeners and the 'Explain Like I'm Five' subreddit, in this engaging episode of Chemistry for Your Life. Plus, find out how popular TV shows might be influencing career choices and explore the fascinating world of chemical reactions. Got a burning question? Tune in and satisfy your curiosity with Chemistry for Your Life!

00:00 Introduction and Episode Inspiration
01:25 Why Birds Don't Get Shocked on Electrical Wires
06:57 The Science Behind Cake Mixes and Baking
10:13 Why Some Materials Burn and Others Don't
12:51 Why Hot Beverages Steam Below Boiling Point
15:31 Am I the Jerk? - Discussing Career Choices
18:45 Family Ties in Medicine
19:17 Influence of TV Shows on Career Choices
20:18 Realizations About Medical Careers
22:09 Exploring Alternative Medical Careers
23:46 Advice for Aspiring Medical Professionals
26:05 Considering the Medical Field Despite Challenges
36:02 Celebrating Academic Achievements
38:00 Conclusion and Listener Engagement

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References from the Episode:

Thanks to our monthly supporters

  • Amanda Raymond
  • Emily Morrison
  • Kyle McCray
  • Justine
  • Emily Hardy
  • Ash
  • Vince W
  • Julie S.
  • Heather Ragusa
  • Autoclave
  • Dorien VD
  • Scott Beyer
  • Jessie Reder
  • J0HNTR0Y
  • Jeannette Napoleon
  • Cullyn R
  • Erica Bee
  • Elizabeth P
  • Rachel Reina
  • Letila
  • Katrina Barnum-Huckins
  • Suzanne Phillips
  • Venus Rebholz
  • Jacob Taber
  • Brian Kimball
  • Kristina Gotfredsen
  • Timothy Parker
  • Steven Boyles
  • Chris Skupien
  • Chelsea B
  • Avishai Barnoy
  • Hunter Reardon
Support this podcast on Patreon Buy Podcast Merch and Apparel

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More description

Why can birds sit on electrical wires without getting shocked? What's the chemistry behind cake mix versus baking from scratch? Why do some materials create more fire than others? Melissa and Jam tackle these questions and more, drawn from curious listeners and the 'Explain Like I'm Five' subreddit, in this engaging episode of Chemistry for Your Life. Plus, find out how popular TV shows might be influencing career choices and explore the fascinating world of chemical reactions. Got a burning question? Tune in and satisfy your curiosity with Chemistry for Your Life!

00:00 Introduction and Episode Inspiration
01:25 Why Birds Don't Get Shocked on Electrical Wires
06:57 The Science Behind Cake Mixes and Baking
10:13 Why Some Materials Burn and Others Don't
12:51 Why Hot Beverages Steam Below Boiling Point
15:31 Am I the Jerk? - Discussing Career Choices
18:45 Family Ties in Medicine
19:17 Influence of TV Shows on Career Choices
20:18 Realizations About Medical Careers
22:09 Exploring Alternative Medical Careers
23:46 Advice for Aspiring Medical Professionals
26:05 Considering the Medical Field Despite Challenges
36:02 Celebrating Academic Achievements
38:00 Conclusion and Listener Engagement

Support this podcast on Patreon
Buy Podcast Merch and Apparel

Check out our website at chemforyourlife.com

Watch our episodes on YouTube

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References from the Episode:

Thanks to our monthly supporters

  • Amanda Raymond
  • Emily Morrison
  • Kyle McCray
  • Justine
  • Emily Hardy
  • Ash
  • Vince W
  • Julie S.
  • Heather Ragusa
  • Autoclave
  • Dorien VD
  • Scott Beyer
  • Jessie Reder
  • J0HNTR0Y
  • Jeannette Napoleon
  • Cullyn R
  • Erica Bee
  • Elizabeth P
  • Rachel Reina
  • Letila
  • Katrina Barnum-Huckins
  • Suzanne Phillips
  • Venus Rebholz
  • Jacob Taber
  • Brian Kimball
  • Kristina Gotfredsen
  • Timothy Parker
  • Steven Boyles
  • Chris Skupien
  • Chelsea B
  • Avishai Barnoy
  • Hunter Reardon
Support this podcast on Patreon Buy Podcast Merch and Apparel

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Published 2026-01-29

How do fans cool us off?

27 min Transcript
View

#230

Winter has us longing for warmer weather. BUT when it's a hot day how do fans keep us cool? Do fans actually lower the air temperature? What role does evaporative cooling play? Find out how the movement of air molecules around your body is the key to feeling cooler. Plus, discover some fascinating insights into energy distribution, the impact of fans on air conditioning, and even some fun personal anecdotes about staying cool in the Texas heat.

00:00 Introduction and Setting the Scene
00:44 The Science Behind Cooling with Fans
01:27 Egg Analogy: Understanding Heat Transfer
03:39 How Fans Actually Work
10:47 The Role of Air Conditioners
12:31 Understanding Air Cooling Mechanisms
13:11 Insights from a Power Company
13:45 The Science Behind Fans and Energy Efficiency
16:28 Evaporative Cooling and Its Benefits
17:21 Explaining the Concept Back
21:37 Personal Experiences with Cooling
24:12 Supporting the Show and Community
27:08 A Funny Camp Counselor Story

Support this podcast on Patreon
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References from the Episode:

Thanks to our monthly supporters

  • Amanda Raymond
  • Emily Morrison
  • Kyle McCray
  • Justine
  • Emily Hardy
  • Ash
  • Vince W
  • Julie S.
  • Heather Ragusa
  • Autoclave
  • Dorien VD
  • Scott Beyer
  • Jessie Reder
  • J0HNTR0Y
  • Jeannette Napoleon
  • Cullyn R
  • Erica Bee
  • Elizabeth P
  • Rachel Reina
  • Letila
  • Katrina Barnum-Huckins
  • Suzanne Phillips
  • Venus Rebholz
  • Jacob Taber
  • Brian Kimball
  • Kristina Gotfredsen
  • Timothy Parker
  • Steven Boyles
  • Chris Skupien
  • Chelsea B
  • Avishai Barnoy
  • Hunter Reardon
Support this podcast on Patreon Buy Podcast Merch and Apparel

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Find us on Instagram, Twitter, and Facebook @ChemForYourLife


Hosted by Simplecast, an AdsWizz company. See pcm.adswizz.com for information about our collection and use of personal data for advertising.

More description

#230

Winter has us longing for warmer weather. BUT when it's a hot day how do fans keep us cool? Do fans actually lower the air temperature? What role does evaporative cooling play? Find out how the movement of air molecules around your body is the key to feeling cooler. Plus, discover some fascinating insights into energy distribution, the impact of fans on air conditioning, and even some fun personal anecdotes about staying cool in the Texas heat.

00:00 Introduction and Setting the Scene
00:44 The Science Behind Cooling with Fans
01:27 Egg Analogy: Understanding Heat Transfer
03:39 How Fans Actually Work
10:47 The Role of Air Conditioners
12:31 Understanding Air Cooling Mechanisms
13:11 Insights from a Power Company
13:45 The Science Behind Fans and Energy Efficiency
16:28 Evaporative Cooling and Its Benefits
17:21 Explaining the Concept Back
21:37 Personal Experiences with Cooling
24:12 Supporting the Show and Community
27:08 A Funny Camp Counselor Story

Support this podcast on Patreon
Buy Podcast Merch and Apparel

Check out our website at chemforyourlife.com

Watch our episodes on YouTube

Find us on Instagram, Twitter, and Facebook @ChemForYourLife

References from the Episode:

Thanks to our monthly supporters

  • Amanda Raymond
  • Emily Morrison
  • Kyle McCray
  • Justine
  • Emily Hardy
  • Ash
  • Vince W
  • Julie S.
  • Heather Ragusa
  • Autoclave
  • Dorien VD
  • Scott Beyer
  • Jessie Reder
  • J0HNTR0Y
  • Jeannette Napoleon
  • Cullyn R
  • Erica Bee
  • Elizabeth P
  • Rachel Reina
  • Letila
  • Katrina Barnum-Huckins
  • Suzanne Phillips
  • Venus Rebholz
  • Jacob Taber
  • Brian Kimball
  • Kristina Gotfredsen
  • Timothy Parker
  • Steven Boyles
  • Chris Skupien
  • Chelsea B
  • Avishai Barnoy
  • Hunter Reardon
Support this podcast on Patreon Buy Podcast Merch and Apparel

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#037 Rebroadcast

It's the lesson we've all had to learn the hard way. The pain our mouths feel when we take a treacherous swig of the post-brush poison. This week, Melissa and Jam delve into all of our childhoods to figure out the chemistry of this infamous mixture. Why does it taste so bad? Who's fault is it, the toothpaste or the orange juice? Also while we're at it, why is it called toothpaste? Nevermind, I'm not sure we'll be able to get to the bottom of that part.

References from this episode

  1. Why Does Toothpaste Make Orange Juice Taste Bad? - American Chemical Society
  2. Why Does Orange Juice Taste So Bad After Brushing? - South Springs Dental Group
 

Support this podcast on Patreon
Buy Podcast Merch and Apparel

Check out our website at chemforyourlife.com

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Thanks to our monthly supporters

  • Amanda Raymond
  • Emily Morrison
  • Kyle McCray
  • Justine
  • Emily Hardy
  • Ash
  • Vince W
  • Julie S.
  • Heather Ragusa
  • Autoclave
  • Dorien VD
  • Scott Beyer
  • Jessie Reder
  • J0HNTR0Y
  • Jeannette Napoleon
  • Cullyn R
  • Erica Bee
  • Elizabeth P
  • Rachel Reina
  • Letila
  • Katrina Barnum-Huckins
  • Suzanne Phillips
  • Venus Rebholz
  • Jacob Taber
  • Brian Kimball
  • Kristina Gotfredsen
  • Timothy Parker
  • Steven Boyles
  • Chris Skupien
  • Chelsea B
  • Avishai Barnoy
  • Hunter Reardon
Support this podcast on Patreon Buy Podcast Merch and Apparel

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Hosted by Simplecast, an AdsWizz company. See pcm.adswizz.com for information about our collection and use of personal data for advertising.

More description

#037 Rebroadcast

It's the lesson we've all had to learn the hard way. The pain our mouths feel when we take a treacherous swig of the post-brush poison. This week, Melissa and Jam delve into all of our childhoods to figure out the chemistry of this infamous mixture. Why does it taste so bad? Who's fault is it, the toothpaste or the orange juice? Also while we're at it, why is it called toothpaste? Nevermind, I'm not sure we'll be able to get to the bottom of that part.

References from this episode

  1. Why Does Toothpaste Make Orange Juice Taste Bad? - American Chemical Society
  2. Why Does Orange Juice Taste So Bad After Brushing? - South Springs Dental Group
 

Support this podcast on Patreon
Buy Podcast Merch and Apparel

Check out our website at chemforyourlife.com

Watch our episodes on YouTube

Find us on Instagram, Twitter, and Facebook @ChemForYourLife

 

Thanks to our monthly supporters

  • Amanda Raymond
  • Emily Morrison
  • Kyle McCray
  • Justine
  • Emily Hardy
  • Ash
  • Vince W
  • Julie S.
  • Heather Ragusa
  • Autoclave
  • Dorien VD
  • Scott Beyer
  • Jessie Reder
  • J0HNTR0Y
  • Jeannette Napoleon
  • Cullyn R
  • Erica Bee
  • Elizabeth P
  • Rachel Reina
  • Letila
  • Katrina Barnum-Huckins
  • Suzanne Phillips
  • Venus Rebholz
  • Jacob Taber
  • Brian Kimball
  • Kristina Gotfredsen
  • Timothy Parker
  • Steven Boyles
  • Chris Skupien
  • Chelsea B
  • Avishai Barnoy
  • Hunter Reardon
Support this podcast on Patreon Buy Podcast Merch and Apparel

Check out our website at chemforyourlife.com

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Extract Knowledge
Listen elsewhere
Published 2026-01-15

Does wool actually resist odor and bacteria?

41 min Transcript
View

#229

What makes wool an essential fabric for many people? Is lanolin truly antimicrobial, or is wool itself responsible for its famed properties? Join us as we unravel the complexities of wool and lanolin, diving into its chemical structure, historical anecdotes, and surprising anti-odor capabilities. Does wool really keep the bacteria at bay, or is there more to the story? Tune in and explore the chemistry behind this wonder fabric!

00:00 Listener's Request: The Mystery of Lanolin
01:08 Introduction to Chemistry for Your Life
04:08 The Complex Chemistry of Wool
11:33 Exploring Lanolin: Properties and Uses
19:51 Exploring Lanolin in Wool
19:59 Investigating Wool's Antimicrobial Properties
20:54 Odor Reduction in Wool
21:57 Scientific Explanations and Hypotheses
24:46 Hydrophobic Properties of Wool
26:46 Wool's Interaction with Bacteria
31:04 Complexities of Wool Processing
35:56 Conclusion and Final Thoughts

Support this podcast on Patreon
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Check out our website at chemforyourlife.com

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References from the Episode:

Thanks to our monthly supporters

  • Amanda Raymond
  • Emily Morrison
  • Kyle McCray
  • Justine
  • Emily Hardy
  • Ash
  • Vince W
  • Julie S.
  • Heather Ragusa
  • Autoclave
  • Dorien VD
  • Scott Beyer
  • Jessie Reder
  • J0HNTR0Y
  • Jeannette Napoleon
  • Cullyn R
  • Erica Bee
  • Elizabeth P
  • Rachel Reina
  • Letila
  • Katrina Barnum-Huckins
  • Suzanne Phillips
  • Venus Rebholz
  • Jacob Taber
  • Brian Kimball
  • Kristina Gotfredsen
  • Timothy Parker
  • Steven Boyles
  • Chris Skupien
  • Chelsea B
  • Avishai Barnoy
  • Hunter Reardon
Support this podcast on Patreon Buy Podcast Merch and Apparel

Check out our website at chemforyourlife.com

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Find us on Instagram, Twitter, and Facebook @ChemForYourLife


Hosted by Simplecast, an AdsWizz company. See pcm.adswizz.com for information about our collection and use of personal data for advertising.

More description

#229

What makes wool an essential fabric for many people? Is lanolin truly antimicrobial, or is wool itself responsible for its famed properties? Join us as we unravel the complexities of wool and lanolin, diving into its chemical structure, historical anecdotes, and surprising anti-odor capabilities. Does wool really keep the bacteria at bay, or is there more to the story? Tune in and explore the chemistry behind this wonder fabric!

00:00 Listener's Request: The Mystery of Lanolin
01:08 Introduction to Chemistry for Your Life
04:08 The Complex Chemistry of Wool
11:33 Exploring Lanolin: Properties and Uses
19:51 Exploring Lanolin in Wool
19:59 Investigating Wool's Antimicrobial Properties
20:54 Odor Reduction in Wool
21:57 Scientific Explanations and Hypotheses
24:46 Hydrophobic Properties of Wool
26:46 Wool's Interaction with Bacteria
31:04 Complexities of Wool Processing
35:56 Conclusion and Final Thoughts

Support this podcast on Patreon
Buy Podcast Merch and Apparel

Check out our website at chemforyourlife.com

Watch our episodes on YouTube

Find us on Instagram, Twitter, and Facebook @ChemForYourLife

References from the Episode:

Thanks to our monthly supporters

  • Amanda Raymond
  • Emily Morrison
  • Kyle McCray
  • Justine
  • Emily Hardy
  • Ash
  • Vince W
  • Julie S.
  • Heather Ragusa
  • Autoclave
  • Dorien VD
  • Scott Beyer
  • Jessie Reder
  • J0HNTR0Y
  • Jeannette Napoleon
  • Cullyn R
  • Erica Bee
  • Elizabeth P
  • Rachel Reina
  • Letila
  • Katrina Barnum-Huckins
  • Suzanne Phillips
  • Venus Rebholz
  • Jacob Taber
  • Brian Kimball
  • Kristina Gotfredsen
  • Timothy Parker
  • Steven Boyles
  • Chris Skupien
  • Chelsea B
  • Avishai Barnoy
  • Hunter Reardon
Support this podcast on Patreon Buy Podcast Merch and Apparel

Check out our website at chemforyourlife.com

Watch our episodes on YouTube

Find us on Instagram, Twitter, and Facebook @ChemForYourLife


Hosted by Simplecast, an AdsWizz company. See pcm.adswizz.com for information about our collection and use of personal data for advertising.

Question and Response #74

Melissa and Jam dive into a series of fascinating chemistry questions submitted by listeners. They explore how food affects the absorption rate of alcohol in the blood, the science behind shelf-stable milk turning solid after opening, and why dogs' feet might smell like Fritos. The duo also answers an intriguing question about the risks of dental X-rays versus ultraviolet radiation from the sun. Additionally, they discuss a fun science experiment involving dissolving candy canes in different liquids, providing a perfect activity for kids to learn about the world of chemistry. Special thanks to the community members and listeners whose questions keep the show engaging and informative.

00:00 Introduction and Episode Overview
02:23 How Food Affects Alcohol Absorption
06:42 Shelf-Stable Protein Shakes
10:26 Why Do Dogs' Feet Smell Like Fritos?
14:49 The Risks of X-Rays
17:56 Understanding Dental X-Ray Radiation
18:39 Annual Radiation Dose and Safety
19:32 Comparing Risks: Dental Issues vs. X-Rays
20:12 Why X-Ray Technicians Use Shields
20:59 Explaining Radiation Risks to the Public
22:55 Fun Science Experiments for Kids
25:31 Explaining Polarity and Dissolution to Kids
30:47 Encouraging Scientific Curiosity in Children
34:41 Supporting the Show and Community Shoutouts

Support this podcast on Patreon
Buy Podcast Merch and Apparel

Check out our website at chemforyourlife.com

Watch our episodes on YouTube

Find us on Instagram, Twitter, and Facebook @ChemForYourLife

References from the Episode:

  1. https://youtu.be/30_QRAC6XOU
  2. https://www.abc.ca.gov/education/licensee-education/alcohol-facts/#:~:text=Alcohol%20does%20not%20require%20digestion,Therefore%2C%20food%20slows%20intoxication.
  3. https://www.epa.gov/radiation/radiation-sources-and-doses
  4. https://www.epa.gov/radiation/calculate-your-radiation-dose
  5. https://www.nrc.gov/about-nrc/radiation/around-us/doses-daily-lives
  6. https://ehs.stanford.edu/manual/radiation-protection-guidance-hospital-staff/natural-sources-radiation#:~:text=Cosmic%20radiation%20comes%20from%20the,approximately%2028%20mrem%20per%20year.

Thanks to our monthly supporters

  • Amanda Raymond
  • Emily Morrison
  • Kyle McCray
  • Justine
  • Emily Hardy
  • Ash
  • Vince W
  • Julie S.
  • Heather Ragusa
  • Autoclave
  • Dorien VD
  • Scott Beyer
  • Jessie Reder
  • J0HNTR0Y
  • Jeannette Napoleon
  • Cullyn R
  • Erica Bee
  • Elizabeth P
  • Rachel Reina
  • Letila
  • Katrina Barnum-Huckins
  • Suzanne Phillips
  • Venus Rebholz
  • Jacob Taber
  • Brian Kimball
  • Kristina Gotfredsen
  • Timothy Parker
  • Steven Boyles
  • Chris Skupien
  • Chelsea B
  • Avishai Barnoy
  • Hunter Reardon
Support this podcast on Patreon Buy Podcast Merch and Apparel

Check out our website at chemforyourlife.com

Watch our episodes on YouTube

Find us on Instagram, Twitter, and Facebook @ChemForYourLife


Hosted by Simplecast, an AdsWizz company. See pcm.adswizz.com for information about our collection and use of personal data for advertising.

More description

Question and Response #74

Melissa and Jam dive into a series of fascinating chemistry questions submitted by listeners. They explore how food affects the absorption rate of alcohol in the blood, the science behind shelf-stable milk turning solid after opening, and why dogs' feet might smell like Fritos. The duo also answers an intriguing question about the risks of dental X-rays versus ultraviolet radiation from the sun. Additionally, they discuss a fun science experiment involving dissolving candy canes in different liquids, providing a perfect activity for kids to learn about the world of chemistry. Special thanks to the community members and listeners whose questions keep the show engaging and informative.

00:00 Introduction and Episode Overview
02:23 How Food Affects Alcohol Absorption
06:42 Shelf-Stable Protein Shakes
10:26 Why Do Dogs' Feet Smell Like Fritos?
14:49 The Risks of X-Rays
17:56 Understanding Dental X-Ray Radiation
18:39 Annual Radiation Dose and Safety
19:32 Comparing Risks: Dental Issues vs. X-Rays
20:12 Why X-Ray Technicians Use Shields
20:59 Explaining Radiation Risks to the Public
22:55 Fun Science Experiments for Kids
25:31 Explaining Polarity and Dissolution to Kids
30:47 Encouraging Scientific Curiosity in Children
34:41 Supporting the Show and Community Shoutouts

Support this podcast on Patreon
Buy Podcast Merch and Apparel

Check out our website at chemforyourlife.com

Watch our episodes on YouTube

Find us on Instagram, Twitter, and Facebook @ChemForYourLife

References from the Episode:

  1. https://youtu.be/30_QRAC6XOU
  2. https://www.abc.ca.gov/education/licensee-education/alcohol-facts/#:~:text=Alcohol%20does%20not%20require%20digestion,Therefore%2C%20food%20slows%20intoxication.
  3. https://www.epa.gov/radiation/radiation-sources-and-doses
  4. https://www.epa.gov/radiation/calculate-your-radiation-dose
  5. https://www.nrc.gov/about-nrc/radiation/around-us/doses-daily-lives
  6. https://ehs.stanford.edu/manual/radiation-protection-guidance-hospital-staff/natural-sources-radiation#:~:text=Cosmic%20radiation%20comes%20from%20the,approximately%2028%20mrem%20per%20year.

Thanks to our monthly supporters

  • Amanda Raymond
  • Emily Morrison
  • Kyle McCray
  • Justine
  • Emily Hardy
  • Ash
  • Vince W
  • Julie S.
  • Heather Ragusa
  • Autoclave
  • Dorien VD
  • Scott Beyer
  • Jessie Reder
  • J0HNTR0Y
  • Jeannette Napoleon
  • Cullyn R
  • Erica Bee
  • Elizabeth P
  • Rachel Reina
  • Letila
  • Katrina Barnum-Huckins
  • Suzanne Phillips
  • Venus Rebholz
  • Jacob Taber
  • Brian Kimball
  • Kristina Gotfredsen
  • Timothy Parker
  • Steven Boyles
  • Chris Skupien
  • Chelsea B
  • Avishai Barnoy
  • Hunter Reardon
Support this podcast on Patreon Buy Podcast Merch and Apparel

Check out our website at chemforyourlife.com

Watch our episodes on YouTube

Find us on Instagram, Twitter, and Facebook @ChemForYourLife


Hosted by Simplecast, an AdsWizz company. See pcm.adswizz.com for information about our collection and use of personal data for advertising.

Published 2026-01-02

What is iodized salt? And why?

37 min
View

#077

Who's doing what to our salt? What's iodine, do we need it, why, and how do they get it in there? This week Melissa and Jam dive head first into figurative iodized salt dunes. Let's take a closer look at the chemistry of something so everyday, we hardly even think about it.

References from this episode

  1. https://pubs.acs.org/doi/10.1021/es0719071
  2. https://pubs-acs-org.libproxy.library.unt.edu/doi/10.1021/ed077p984#:~:text=The%20presence%20of%20iodine%20in,in%20preventing%20simple%20endemic%20goiter
  3. https://pubs.acs.org/doi/pdf/10.1021/ed062p1016
  4. https://www.acs.org/content/acs/en/education/resources/highschool/chemmatters/past-issues/2015-2016/february-2016/salt-facts.html
  5. https://www.scientificamerican.com/article/strange-but-true-drinking-too-much-water-can-kill/
Support this podcast on Patreon Buy Podcast Merch and Apparel

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Thanks to our monthly supporters

  • Amanda Raymond
  • Emily Morrison
  • Kyle McCray
  • Justine
  • Emily Hardy
  • Ash
  • Vince W
  • Julie S.
  • Heather Ragusa
  • Autoclave
  • Dorien VD
  • Scott Beyer
  • Jessie Reder
  • J0HNTR0Y
  • Jeannette Napoleon
  • Cullyn R
  • Erica Bee
  • Elizabeth P
  • Rachel Reina
  • Letila
  • Katrina Barnum-Huckins
  • Suzanne Phillips
  • Venus Rebholz
  • Jacob Taber
  • Brian Kimball
  • Kristina Gotfredsen
  • Timothy Parker
  • Steven Boyles
  • Chris Skupien
  • Chelsea B
  • Avishai Barnoy
  • Hunter Reardon
Support this podcast on Patreon Buy Podcast Merch and Apparel

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Hosted by Simplecast, an AdsWizz company. See pcm.adswizz.com for information about our collection and use of personal data for advertising.

More description

#077

Who's doing what to our salt? What's iodine, do we need it, why, and how do they get it in there? This week Melissa and Jam dive head first into figurative iodized salt dunes. Let's take a closer look at the chemistry of something so everyday, we hardly even think about it.

References from this episode

  1. https://pubs.acs.org/doi/10.1021/es0719071
  2. https://pubs-acs-org.libproxy.library.unt.edu/doi/10.1021/ed077p984#:~:text=The%20presence%20of%20iodine%20in,in%20preventing%20simple%20endemic%20goiter
  3. https://pubs.acs.org/doi/pdf/10.1021/ed062p1016
  4. https://www.acs.org/content/acs/en/education/resources/highschool/chemmatters/past-issues/2015-2016/february-2016/salt-facts.html
  5. https://www.scientificamerican.com/article/strange-but-true-drinking-too-much-water-can-kill/
Support this podcast on Patreon Buy Podcast Merch and Apparel

Check out our website at chemforyourlife.com

Watch our episodes on YouTube

Find us on Instagram, Twitter, and Facebook @ChemForYourLife

 

Thanks to our monthly supporters

  • Amanda Raymond
  • Emily Morrison
  • Kyle McCray
  • Justine
  • Emily Hardy
  • Ash
  • Vince W
  • Julie S.
  • Heather Ragusa
  • Autoclave
  • Dorien VD
  • Scott Beyer
  • Jessie Reder
  • J0HNTR0Y
  • Jeannette Napoleon
  • Cullyn R
  • Erica Bee
  • Elizabeth P
  • Rachel Reina
  • Letila
  • Katrina Barnum-Huckins
  • Suzanne Phillips
  • Venus Rebholz
  • Jacob Taber
  • Brian Kimball
  • Kristina Gotfredsen
  • Timothy Parker
  • Steven Boyles
  • Chris Skupien
  • Chelsea B
  • Avishai Barnoy
  • Hunter Reardon
Support this podcast on Patreon Buy Podcast Merch and Apparel

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Extract Knowledge
Listen elsewhere
Published 2025-12-25

How do scissors curl ribbon?

44 min Transcript
View

#228

In this festive episode, Melissa and Jam delve into the fascinating science behind why ribbons curl when pressed against a blade. The discussion covers polymers, their molecular structures, and the forces at play during this process. With a blend of personal holiday memories and a detailed analogy involving crocheted yarn, the duo makes complex chemistry accessible and fun for all listeners. They also share their favorite holiday traditions and movies, making this episode a blend of heartwarming stories and educational content.

00:00 Guess the Sound Game
01:37 Introducing the Topic: Curly Ribbon Science
03:51 Chemistry Behind Curly Ribbon
04:20 Polymers and Their Properties
05:59 Crochet Analogy for Polymers
12:23 Molecular Mechanics of Ribbon Curling
15:34 Practical Tips for Perfect Ribbon Curls
19:36 Holiday Reflections and Chemistry Recap
22:37 Understanding Polymer Behavior
24:28 Molecular Forces and Rearrangement
28:02 Holiday Traditions and Memories
36:33 Favorite Christmas Movies
40:37 Wrapping Up and Listener Shoutouts

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References from the Episode:

  1. https://books.byui.edu/plastics_materials_a/plastic_high_strain_#:~:text=The%20molecular%20interpretation%20(in%20polymers,rupture%20and%20the%20sample%20breaks.
  2. https://pubs.acs.org/doi/10.1021/acs.macromol.0c02076https://www.bbc.com/news/science-environment-35809116.amp
  3. https://www.pnas.org/doi/10.1073/pnas.1514626113
  4. https://pubs.acs.org/doi/10.1021/ba-1993-0233.ch005
  5. https://courses.ems.psu.edu/matse81/node/2109

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More description

#228

In this festive episode, Melissa and Jam delve into the fascinating science behind why ribbons curl when pressed against a blade. The discussion covers polymers, their molecular structures, and the forces at play during this process. With a blend of personal holiday memories and a detailed analogy involving crocheted yarn, the duo makes complex chemistry accessible and fun for all listeners. They also share their favorite holiday traditions and movies, making this episode a blend of heartwarming stories and educational content.

00:00 Guess the Sound Game
01:37 Introducing the Topic: Curly Ribbon Science
03:51 Chemistry Behind Curly Ribbon
04:20 Polymers and Their Properties
05:59 Crochet Analogy for Polymers
12:23 Molecular Mechanics of Ribbon Curling
15:34 Practical Tips for Perfect Ribbon Curls
19:36 Holiday Reflections and Chemistry Recap
22:37 Understanding Polymer Behavior
24:28 Molecular Forces and Rearrangement
28:02 Holiday Traditions and Memories
36:33 Favorite Christmas Movies
40:37 Wrapping Up and Listener Shoutouts

Support this podcast on Patreon
Buy Podcast Merch and Apparel

Check out our website at chemforyourlife.com

Watch our episodes on YouTube

Find us on Instagram, Twitter, and Facebook @ChemForYourLife

References from the Episode:

  1. https://books.byui.edu/plastics_materials_a/plastic_high_strain_#:~:text=The%20molecular%20interpretation%20(in%20polymers,rupture%20and%20the%20sample%20breaks.
  2. https://pubs.acs.org/doi/10.1021/acs.macromol.0c02076https://www.bbc.com/news/science-environment-35809116.amp
  3. https://www.pnas.org/doi/10.1073/pnas.1514626113
  4. https://pubs.acs.org/doi/10.1021/ba-1993-0233.ch005
  5. https://courses.ems.psu.edu/matse81/node/2109

Thanks to our monthly supporters

  • Amanda Raymond
  • Emily Morrison
  • Kyle McCray
  • Justine
  • Emily Hardy
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  • Heather Ragusa
  • Autoclave
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  • Scott Beyer
  • Jessie Reder
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  • Cullyn R
  • Erica Bee
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  • Letila
  • Katrina Barnum-Huckins
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  • Jacob Taber
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Published 2025-12-18

What makes firecrackers go pop?

46 min Transcript
View

#227

Melissa and Jam delve into the chemistry behind firecrackers and Christmas crackers. They discuss the key component, silver fulminate, explaining its unstable nature and how it reacts to create the explosive effects. The discussion also touches on the octet rule, formal charges, and isomers. Along with sharing personal experiences and pranks involving firecrackers, they also recount historical debates between chemists over the discovery of isomers and their eventual agreement. The episode highlights the importance of chemistry in understanding everyday phenomena and ensuring safety.

00:00 Introduction and Firecracker Anecdotes
00:58 Chemistry of Firecrackers
04:53 Explosive Chemistry Explained
19:55 Historical Discoveries and Isomers
24:20 The Origins of a Scientific Discovery
24:48 Friendship and Scientific Collaboration
25:24 Understanding Isotopes and Isomers
27:20 Chemistry Behind Christmas Crackers
30:26 Fireworks and Safety Concerns
35:52 Fire Alarms and Home Safety
42:33 Supporting the Show and Community Shoutouts

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References from the Episode:

  1. https://www.chemistryworld.com/opinion/festive-fuels/8016.article
  2. https://www.chemistryworld.com/podcasts/silver-fulminate-and-cyanate/3005952.article
  3. https://pubs.acs.org/doi/full/10.1021/acs.inorgchem.0c03027
  4. https://royalsocietypublishing.org/rspa/article/139/839/576/3351/Thermal-decomposition-and-detonation-of-mercury
  5. https://www.sciencedirect.com/science/article/pii/0040603181801852
  6. https://cen.acs.org/articles/85/web/2007/08/Mercury-Fulminate-Revealed.html
  7. https://pubs.acs.org/doi/10.1021/acs.inorgchem.0c03027

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More description

#227

Melissa and Jam delve into the chemistry behind firecrackers and Christmas crackers. They discuss the key component, silver fulminate, explaining its unstable nature and how it reacts to create the explosive effects. The discussion also touches on the octet rule, formal charges, and isomers. Along with sharing personal experiences and pranks involving firecrackers, they also recount historical debates between chemists over the discovery of isomers and their eventual agreement. The episode highlights the importance of chemistry in understanding everyday phenomena and ensuring safety.

00:00 Introduction and Firecracker Anecdotes
00:58 Chemistry of Firecrackers
04:53 Explosive Chemistry Explained
19:55 Historical Discoveries and Isomers
24:20 The Origins of a Scientific Discovery
24:48 Friendship and Scientific Collaboration
25:24 Understanding Isotopes and Isomers
27:20 Chemistry Behind Christmas Crackers
30:26 Fireworks and Safety Concerns
35:52 Fire Alarms and Home Safety
42:33 Supporting the Show and Community Shoutouts

Support this podcast on Patreon
Buy Podcast Merch and Apparel

Check out our website at chemforyourlife.com

Watch our episodes on YouTube

Find us on Instagram, Twitter, and Facebook @ChemForYourLife

References from the Episode:

  1. https://www.chemistryworld.com/opinion/festive-fuels/8016.article
  2. https://www.chemistryworld.com/podcasts/silver-fulminate-and-cyanate/3005952.article
  3. https://pubs.acs.org/doi/full/10.1021/acs.inorgchem.0c03027
  4. https://royalsocietypublishing.org/rspa/article/139/839/576/3351/Thermal-decomposition-and-detonation-of-mercury
  5. https://www.sciencedirect.com/science/article/pii/0040603181801852
  6. https://cen.acs.org/articles/85/web/2007/08/Mercury-Fulminate-Revealed.html
  7. https://pubs.acs.org/doi/10.1021/acs.inorgchem.0c03027

Thanks to our monthly supporters

  • Amanda Raymond
  • Emily Morrison
  • Kyle McCray
  • Justine
  • Emily Hardy
  • Ash
  • Vince W
  • Julie S.
  • Heather Ragusa
  • Autoclave
  • Dorien VD
  • Scott Beyer
  • Jessie Reder
  • J0HNTR0Y
  • Jeannette Napoleon
  • Cullyn R
  • Erica Bee
  • Elizabeth P
  • Rachel Reina
  • Letila
  • Katrina Barnum-Huckins
  • Suzanne Phillips
  • Venus Rebholz
  • Jacob Taber
  • Brian Kimball
  • Kristina Gotfredsen
  • Timothy Parker
  • Steven Boyles
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Support this podcast on Patreon Buy Podcast Merch and Apparel

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Ask a Chemist #73

Melissa and Jam tackle a range of listener questions covering a wide array of chemistry-related topics. They discuss the properties of polymers found in diapers, the science behind bubbles, the controversy surrounding cast iron vs. Teflon cookware, and the fascinating world of superconducting magnets. The episode also underscores the importance of ventilating your kitchen, the peculiarities of cling film, and the quirks of silicone products. Along the way, Melissa shares personal anecdotes, and they even address some humorous and intriguing comments from listeners. Tune in for a mix of chemistry insights and light-hearted banter.

00:00 Introduction and Funny Classroom Anecdote
01:44 Chemistry for Your Life Podcast Introduction
04:17 Listener Questions: Diapers and Polymers
07:30 Listener Questions: The Science of Bubbles
10:05 Listener Questions: Balloons and Static Electricity
12:11 Listener Questions: Cast Iron and Teflon
14:45 Listener Questions: Chapstick and Moisturizers
15:48 Nostalgic Memories and Copyright Concerns
16:23 Sweater Talk and Community References
16:57 Superconducting Magnets Explained
18:46 Cling Film Mysteries and Silicone Solutions
22:13 Silicone and Broth Storage Solutions
26:11 Listener Comments and Feedback
31:40 Wrapping Up and Community Shoutouts

Support this podcast on Patreon
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References from the Episode:

  1. https://www.acs.org/content/dam/acsorg/education/whatischemistry/adventuresinchemistry/secretscience/bubbles/sss-bubbles.pdf

Thanks to our monthly supporters

  • Amanda Raymond
  • Emily Morrison
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  • Justine
  • Emily Hardy
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  • Julie S.
  • Heather Ragusa
  • Autoclave
  • Dorien VD
  • Scott Beyer
  • Jessie Reder
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  • Jeannette Napoleon
  • Cullyn R
  • Erica Bee
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  • Rachel Reina
  • Letila
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  • Jacob Taber
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More description

Ask a Chemist #73

Melissa and Jam tackle a range of listener questions covering a wide array of chemistry-related topics. They discuss the properties of polymers found in diapers, the science behind bubbles, the controversy surrounding cast iron vs. Teflon cookware, and the fascinating world of superconducting magnets. The episode also underscores the importance of ventilating your kitchen, the peculiarities of cling film, and the quirks of silicone products. Along the way, Melissa shares personal anecdotes, and they even address some humorous and intriguing comments from listeners. Tune in for a mix of chemistry insights and light-hearted banter.

00:00 Introduction and Funny Classroom Anecdote
01:44 Chemistry for Your Life Podcast Introduction
04:17 Listener Questions: Diapers and Polymers
07:30 Listener Questions: The Science of Bubbles
10:05 Listener Questions: Balloons and Static Electricity
12:11 Listener Questions: Cast Iron and Teflon
14:45 Listener Questions: Chapstick and Moisturizers
15:48 Nostalgic Memories and Copyright Concerns
16:23 Sweater Talk and Community References
16:57 Superconducting Magnets Explained
18:46 Cling Film Mysteries and Silicone Solutions
22:13 Silicone and Broth Storage Solutions
26:11 Listener Comments and Feedback
31:40 Wrapping Up and Community Shoutouts

Support this podcast on Patreon
Buy Podcast Merch and Apparel

Check out our website at chemforyourlife.com

Watch our episodes on YouTube

Find us on Instagram, Twitter, and Facebook @ChemForYourLife

References from the Episode:

  1. https://www.acs.org/content/dam/acsorg/education/whatischemistry/adventuresinchemistry/secretscience/bubbles/sss-bubbles.pdf

Thanks to our monthly supporters

  • Amanda Raymond
  • Emily Morrison
  • Kyle McCray
  • Justine
  • Emily Hardy
  • Ash
  • Vince W
  • Julie S.
  • Heather Ragusa
  • Autoclave
  • Dorien VD
  • Scott Beyer
  • Jessie Reder
  • J0HNTR0Y
  • Jeannette Napoleon
  • Cullyn R
  • Erica Bee
  • Elizabeth P
  • Rachel Reina
  • Letila
  • Katrina Barnum-Huckins
  • Suzanne Phillips
  • Venus Rebholz
  • Jacob Taber
  • Brian Kimball
  • Kristina Gotfredsen
  • Timothy Parker
  • Steven Boyles
  • Chris Skupien
  • Chelsea B
  • Avishai Barnoy
  • Hunter Reardon
Support this podcast on Patreon Buy Podcast Merch and Apparel

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Published 2025-12-04

How do X-Rays reveal what's hidden inside us?

43 min Transcript
View

#226

Melissa and Jam delve into the intriguing world of X-rays. They start with relatable stories from the dentist's office and transition into a deep dive into how X-rays work. Key topics include the electromagnetic spectrum, how X-rays are generated, why some materials allow X-rays to pass through while others don't, and the potential risks associated with repeated exposure. They also share personal anecdotes about broken bones and medical X-ray experiences, as well as shout out to community members who support the show. Join Melissa and Jam as they unravel the chemistry behind X-rays and their impact on our daily lives.

00:00 A Trip to the Dentist
01:00 Shoutouts and Inspirations
01:32 Introduction to X-Rays
04:04 Understanding the Electromagnetic Spectrum
05:38 How X-Rays Work
09:40 The Science Behind X-Ray Imaging
14:52 Generating X-Rays
17:23 Energy Waves and Electrons
19:57 Understanding X-rays and Their Risks
20:55 Comparing X-ray Exposure to Sunlight
21:35 Family Concerns About X-rays
22:33 Technological Advances in X-ray Safety
22:49 Summarizing X-ray Risks and Benefits
26:31 Personal Stories of X-rays and Broken Bones
39:26 Supporting the Show and Community

Support this podcast on Patreon
Buy Podcast Merch and Apparel

Check out our website at chemforyourlife.com

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References from the Episode:

 

Thanks to our monthly supporters

  • Amanda Raymond
  • Emily Morrison
  • Kyle McCray
  • Justine
  • Emily Hardy
  • Ash
  • Vince W
  • Julie S.
  • Heather Ragusa
  • Autoclave
  • Dorien VD
  • Scott Beyer
  • Jessie Reder
  • J0HNTR0Y
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  • Cullyn R
  • Erica Bee
  • Elizabeth P
  • Rachel Reina
  • Letila
  • Katrina Barnum-Huckins
  • Suzanne Phillips
  • Venus Rebholz
  • Jacob Taber
  • Brian Kimball
  • Kristina Gotfredsen
  • Timothy Parker
  • Steven Boyles
  • Chris Skupien
  • Chelsea B
  • Avishai Barnoy
  • Hunter Reardon
Support this podcast on Patreon Buy Podcast Merch and Apparel

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More description

#226

Melissa and Jam delve into the intriguing world of X-rays. They start with relatable stories from the dentist's office and transition into a deep dive into how X-rays work. Key topics include the electromagnetic spectrum, how X-rays are generated, why some materials allow X-rays to pass through while others don't, and the potential risks associated with repeated exposure. They also share personal anecdotes about broken bones and medical X-ray experiences, as well as shout out to community members who support the show. Join Melissa and Jam as they unravel the chemistry behind X-rays and their impact on our daily lives.

00:00 A Trip to the Dentist
01:00 Shoutouts and Inspirations
01:32 Introduction to X-Rays
04:04 Understanding the Electromagnetic Spectrum
05:38 How X-Rays Work
09:40 The Science Behind X-Ray Imaging
14:52 Generating X-Rays
17:23 Energy Waves and Electrons
19:57 Understanding X-rays and Their Risks
20:55 Comparing X-ray Exposure to Sunlight
21:35 Family Concerns About X-rays
22:33 Technological Advances in X-ray Safety
22:49 Summarizing X-ray Risks and Benefits
26:31 Personal Stories of X-rays and Broken Bones
39:26 Supporting the Show and Community

Support this podcast on Patreon
Buy Podcast Merch and Apparel

Check out our website at chemforyourlife.com

Watch our episodes on YouTube

Find us on Instagram, Twitter, and Facebook @ChemForYourLife

References from the Episode:

 

Thanks to our monthly supporters

  • Amanda Raymond
  • Emily Morrison
  • Kyle McCray
  • Justine
  • Emily Hardy
  • Ash
  • Vince W
  • Julie S.
  • Heather Ragusa
  • Autoclave
  • Dorien VD
  • Scott Beyer
  • Jessie Reder
  • J0HNTR0Y
  • Jeannette Napoleon
  • Cullyn R
  • Erica Bee
  • Elizabeth P
  • Rachel Reina
  • Letila
  • Katrina Barnum-Huckins
  • Suzanne Phillips
  • Venus Rebholz
  • Jacob Taber
  • Brian Kimball
  • Kristina Gotfredsen
  • Timothy Parker
  • Steven Boyles
  • Chris Skupien
  • Chelsea B
  • Avishai Barnoy
  • Hunter Reardon
Support this podcast on Patreon Buy Podcast Merch and Apparel

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Published 2025-11-27

What's up with aluminum foil?

30 min
View

#018 Rebroadcast

This week Melissa and Jam explore the chemistry of aluminum foil. Why doesn’t it feel hot when we take it out of the oven? How does it cool down so quickly? We harken back to a previous episode about specific heat a few times in this episode, listen to that one by clicking here.

Support this podcast on Patreon
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References from this episode

  1. http://scienceline.ucsb.edu/getkey.php?key=703
  2. Dr. Weber PhD in Physical Chemistry, University of North Texas
  3. Chemistry, Edition 1 - Julia Burdge
  4. Melissa's Previous Knowledge
 

Thanks to our monthly supporters

  • Amanda Raymond
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  • Julie S.
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  • Autoclave
  • Chelsea Morelos
  • Dorien VD
  • Scott Beyer
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  • Cullyn R
  • Erica Bee
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  • Suzanne Phillips
  • Venus Rebholz
  • Jacob Taber
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  • Hunter Reardon
Support this podcast on Patreon Buy Podcast Merch and Apparel

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More description

#018 Rebroadcast

This week Melissa and Jam explore the chemistry of aluminum foil. Why doesn’t it feel hot when we take it out of the oven? How does it cool down so quickly? We harken back to a previous episode about specific heat a few times in this episode, listen to that one by clicking here.

Support this podcast on Patreon
Buy Podcast Merch and Apparel

Check out our website at chemforyourlife.com

Watch our episodes on YouTube

Find us on Instagram, Twitter, and Facebook @ChemForYourLife

References from this episode

  1. http://scienceline.ucsb.edu/getkey.php?key=703
  2. Dr. Weber PhD in Physical Chemistry, University of North Texas
  3. Chemistry, Edition 1 - Julia Burdge
  4. Melissa's Previous Knowledge
 

Thanks to our monthly supporters

  • Amanda Raymond
  • Emily Morrison
  • Kyle McCray
  • Justine
  • Emily Hardy
  • Ash
  • Vince W
  • Julie S.
  • Heather Ragusa
  • Autoclave
  • Chelsea Morelos
  • Dorien VD
  • Scott Beyer
  • Jessie Reder
  • J0HNTR0Y
  • Jeannette Napoleon
  • Cullyn R
  • Erica Bee
  • Elizabeth P
  • Rachel Reina
  • Letila
  • Katrina Barnum-Huckins
  • Suzanne Phillips
  • Venus Rebholz
  • Jacob Taber
  • Brian Kimball
  • Kristina Gotfredsen
  • Timothy Parker
  • Steven Boyles
  • Chris Skupien
  • Chelsea B
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Support this podcast on Patreon Buy Podcast Merch and Apparel

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Extract Knowledge
Listen elsewhere
Published 2025-11-20

Reddit Chemistry: Mishaps, Mentorship, and More

34 min Transcript
View

#225

Melissa and Jam take a break from traditional chemistry topics to delve into chemistry-related stories from Reddit. They discuss a funny sunscreen mishap, give advice to a student struggling in chemistry, and navigate complex interpersonal situations involving TA duties and friend dynamics. Throughout the episode, they provide insightful commentary and useful advice, all while keeping the conversation light and engaging. They also promote their new 'chemist Tree' holiday sweater and remind listeners of the importance of supporting their show.

00:00 Introduction and Holiday Sweater Promotion
01:57 Reddit Stories: Chemists and Academia
04:23 Reddit Story: Sunscreen Mishap
10:14 Reddit Story: Office Hours Tips
14:29 Reddit Story: Organic Chemistry Lab Etiquette
15:58 The Backpack Incident
16:25 Student's Mental Struggles
17:01 Lab Safety and Regulations
17:52 Handling Student Complaints
19:07 Empathy and Support for Students
23:00 Navigating Negative Feedback
23:48 Sharing Notes and Tutoring Ethics
32:37 Final Thoughts and Community Engagement

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Thanks to our monthly supporters

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  • Ash
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  • Julie S.
  • Heather Ragusa
  • Autoclave
  • Chelsea Morelos
  • Dorien VD
  • Scott Beyer
  • Jessie Reder
  • J0HNTR0Y
  • Jeannette Napoleon
  • Cullyn R
  • Erica Bee
  • Elizabeth P
  • Rachel Reina
  • Letila
  • Katrina Barnum-Huckins
  • Suzanne Phillips
  • Venus Rebholz
  • Jacob Taber
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#225

Melissa and Jam take a break from traditional chemistry topics to delve into chemistry-related stories from Reddit. They discuss a funny sunscreen mishap, give advice to a student struggling in chemistry, and navigate complex interpersonal situations involving TA duties and friend dynamics. Throughout the episode, they provide insightful commentary and useful advice, all while keeping the conversation light and engaging. They also promote their new 'chemist Tree' holiday sweater and remind listeners of the importance of supporting their show.

00:00 Introduction and Holiday Sweater Promotion
01:57 Reddit Stories: Chemists and Academia
04:23 Reddit Story: Sunscreen Mishap
10:14 Reddit Story: Office Hours Tips
14:29 Reddit Story: Organic Chemistry Lab Etiquette
15:58 The Backpack Incident
16:25 Student's Mental Struggles
17:01 Lab Safety and Regulations
17:52 Handling Student Complaints
19:07 Empathy and Support for Students
23:00 Navigating Negative Feedback
23:48 Sharing Notes and Tutoring Ethics
32:37 Final Thoughts and Community Engagement

Support this podcast on Patreon
Buy Podcast Merch and Apparel

Check out our website at chemforyourlife.com

Watch our episodes on YouTube

Find us on Instagram, Twitter, and Facebook @ChemForYourLife

Thanks to our monthly supporters

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Support this podcast on Patreon Buy Podcast Merch and Apparel

Check out our website at chemforyourlife.com

Watch our episodes on YouTube

Find us on Instagram, Twitter, and Facebook @ChemForYourLife


Hosted by Simplecast, an AdsWizz company. See pcm.adswizz.com for information about our collection and use of personal data for advertising.

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