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PlanetGeo: The Geology Podcast

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A Geology and Earth Science Podcast. Join Chris, an award-winning geology teacher, and Jesse, a geoscience professor, in discussing the amazing features of our planet and their impact on your everyday life. No prior knowledge required. New episodes coming at you every week. Listen, subscribe, share with someone you know!
More details
A Geology and Earth Science Podcast. Join Chris, an award-winning geology teacher, and Jesse, a geoscience professor, in discussing the amazing features of our planet and their impact on your everyday life. No prior knowledge required. New episodes coming at you every week. Listen, subscribe, share with someone you know!
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Published 2022-04-28

Great Smoky Mountain National Park

38 min
View

The air is clearing!

In this episode, we discuss the geology of Great Smoky Mountain National Park.  We've been neglectful of this region of the U.S. and it's time to do these amazing mountains justice.

We begin by discussing why the Smokies are Smoky.  It's an interesting and natural phenomenon that involves the immense pine forests.  

After we get the biology out of the way, we dive into the geology.  We broke it down to 3 major geologic events: 1- the bedrock geology and the accumulation of a massive amount of sediment from the breakup of Rodinia (a super-continent that preceded Pangaea).  2- Deformation and mountain building from the Pangaea collision. 3- Erosion as Pangaea broke apart.  

We hope you enjoy!



——————————————————
Instagram: @planetgeocast
Twitter: @planetgeocast
Facebook: @planetgeocast
Email: planetgeocast@gmail.com
Website: https://planetgeocast.buzzsprout.com/ 

Download the CampGeo app now at this link.

On the app you can get tons of free content, exclusive images, and access to our Geology of National Parks series.
You can also learn the basics of geology at the college level in our FREE CampGeo content series - get learning now!

Like, Subscribe, and leave us a Rating!

——————————————————
Instagram: @planetgeocast
Twitter: @planetgeocast
Facebook: @planetgeocast
Support us: https://planetgeocast.com/support-us
Email: planetgeocast@gmail.com
Website: https://planetgeocast.com/

More description

The air is clearing!

In this episode, we discuss the geology of Great Smoky Mountain National Park.  We've been neglectful of this region of the U.S. and it's time to do these amazing mountains justice.

We begin by discussing why the Smokies are Smoky.  It's an interesting and natural phenomenon that involves the immense pine forests.  

After we get the biology out of the way, we dive into the geology.  We broke it down to 3 major geologic events: 1- the bedrock geology and the accumulation of a massive amount of sediment from the breakup of Rodinia (a super-continent that preceded Pangaea).  2- Deformation and mountain building from the Pangaea collision. 3- Erosion as Pangaea broke apart.  

We hope you enjoy!



——————————————————
Instagram: @planetgeocast
Twitter: @planetgeocast
Facebook: @planetgeocast
Email: planetgeocast@gmail.com
Website: https://planetgeocast.buzzsprout.com/ 

Download the CampGeo app now at this link.

On the app you can get tons of free content, exclusive images, and access to our Geology of National Parks series.
You can also learn the basics of geology at the college level in our FREE CampGeo content series - get learning now!

Like, Subscribe, and leave us a Rating!

——————————————————
Instagram: @planetgeocast
Twitter: @planetgeocast
Facebook: @planetgeocast
Support us: https://planetgeocast.com/support-us
Email: planetgeocast@gmail.com
Website: https://planetgeocast.com/

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Today we have the great pleasure of talking about a very important topic, while interviewing one of the best and most interesting people we've had the pleasure of speaking with!

Dr. Nedal Nassar is the Chief of the US Geological Survey’s Materials Flow Analysis Section, he has a PhD in Industrial Ecology from Yale and is a Leading member of the US National Science and Technology Council.  In addition, he was awarded the 2019 Presidential Early Career Award for Scientists and Engineers, which is a very VERY big deal!  

Please enjoy this amazing conversation with Dr. Nassar, and send us any questions you have!!


——————————————————
Instagram: @planetgeocast
Twitter: @planetgeocast
Facebook: @planetgeocast
Email: planetgeocast@gmail.com
Website: https://planetgeocast.buzzsprout.com/ 

Download the CampGeo app now at this link.

On the app you can get tons of free content, exclusive images, and access to our Geology of National Parks series.
You can also learn the basics of geology at the college level in our FREE CampGeo content series - get learning now!

Like, Subscribe, and leave us a Rating!

——————————————————
Instagram: @planetgeocast
Twitter: @planetgeocast
Facebook: @planetgeocast
Support us: https://planetgeocast.com/support-us
Email: planetgeocast@gmail.com
Website: https://planetgeocast.com/

More description

Today we have the great pleasure of talking about a very important topic, while interviewing one of the best and most interesting people we've had the pleasure of speaking with!

Dr. Nedal Nassar is the Chief of the US Geological Survey’s Materials Flow Analysis Section, he has a PhD in Industrial Ecology from Yale and is a Leading member of the US National Science and Technology Council.  In addition, he was awarded the 2019 Presidential Early Career Award for Scientists and Engineers, which is a very VERY big deal!  

Please enjoy this amazing conversation with Dr. Nassar, and send us any questions you have!!


——————————————————
Instagram: @planetgeocast
Twitter: @planetgeocast
Facebook: @planetgeocast
Email: planetgeocast@gmail.com
Website: https://planetgeocast.buzzsprout.com/ 

Download the CampGeo app now at this link.

On the app you can get tons of free content, exclusive images, and access to our Geology of National Parks series.
You can also learn the basics of geology at the college level in our FREE CampGeo content series - get learning now!

Like, Subscribe, and leave us a Rating!

——————————————————
Instagram: @planetgeocast
Twitter: @planetgeocast
Facebook: @planetgeocast
Support us: https://planetgeocast.com/support-us
Email: planetgeocast@gmail.com
Website: https://planetgeocast.com/

Extract Knowledge
Listen elsewhere

Today we have the great pleasure of talking about a very important topic, while interviewing one of the best!

Dr. Nedal Nassar is the Chief of the US Geological Survey’s Materials Flow Analysis Section, he has a PhD in Industrial Ecology from Yale and is a Leading member of the US National Science and Technology Council.  In addition, he was awarded the 2019 Presidential Early Career Award for Scientists and Engineers, which is a very VERY big deal!  

Join us next week to hear more from Dr. Nassar!

** Just a quick note - Dr. Nassar slightly misspoke in this episode when talking about Tantalum and corrected himself later.  Tantalum is actually combined with niobium, vanadium, and zirconium. Tellurium is combined with elemental boron.


——————————————————
Instagram: @planetgeocast
Twitter: @planetgeocast
Facebook: @planetgeocast
Email: planetgeocast@gmail.com
Website: https://planetgeocast.buzzsprout.com/ 

Download the CampGeo app now at this link.

On the app you can get tons of free content, exclusive images, and access to our Geology of National Parks series.
You can also learn the basics of geology at the college level in our FREE CampGeo content series - get learning now!

Like, Subscribe, and leave us a Rating!

——————————————————
Instagram: @planetgeocast
Twitter: @planetgeocast
Facebook: @planetgeocast
Support us: https://planetgeocast.com/support-us
Email: planetgeocast@gmail.com
Website: https://planetgeocast.com/

More description

Today we have the great pleasure of talking about a very important topic, while interviewing one of the best!

Dr. Nedal Nassar is the Chief of the US Geological Survey’s Materials Flow Analysis Section, he has a PhD in Industrial Ecology from Yale and is a Leading member of the US National Science and Technology Council.  In addition, he was awarded the 2019 Presidential Early Career Award for Scientists and Engineers, which is a very VERY big deal!  

Join us next week to hear more from Dr. Nassar!

** Just a quick note - Dr. Nassar slightly misspoke in this episode when talking about Tantalum and corrected himself later.  Tantalum is actually combined with niobium, vanadium, and zirconium. Tellurium is combined with elemental boron.


——————————————————
Instagram: @planetgeocast
Twitter: @planetgeocast
Facebook: @planetgeocast
Email: planetgeocast@gmail.com
Website: https://planetgeocast.buzzsprout.com/ 

Download the CampGeo app now at this link.

On the app you can get tons of free content, exclusive images, and access to our Geology of National Parks series.
You can also learn the basics of geology at the college level in our FREE CampGeo content series - get learning now!

Like, Subscribe, and leave us a Rating!

——————————————————
Instagram: @planetgeocast
Twitter: @planetgeocast
Facebook: @planetgeocast
Support us: https://planetgeocast.com/support-us
Email: planetgeocast@gmail.com
Website: https://planetgeocast.com/

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Published 2022-04-07

Radon: The Unwelcome Houseguest

47 min
View

Are you worried about Radon in your home? 

Here are a few valuable links to learn more about it and some resources to get a test -
United States Environmental Protection Agency page
United States Geological Survey FAQ
United States Map of Radon Risk (get your home checked!)

Today we talk about Radon!  

Radon is something you have probably heard of, but may not know much about.  It is a really important aspect of geoscience that touches our lives everyday. 

Radon is an element that is radioactive. It is formed from the decay of Uranium as Uranium breaks down into Lead.  Radon is special because it is a Noble Gas, which means it is an element that doesn't bond with other elements, so it can move around easily. When Uranium decays, it goes through several steps of decay and eventually gets to Radon. 

Once Radon is formed, it can move. Radon is a gas and can flow through soils, in water, or even seep through concrete. So, it can make it into your house!  Once there, Radon can hang around for a few days until it decays again and eventually produces Pb. 

Radon can move easier if 

  1. The soil is permeable - stuff can flow through it 
  2. The soil is porous - there is a lot of space in the soil
  3. Soil is dry - water slows down Radon movement

There are several ways for Radon to get into your house if it can move quickly through the soil. First it can seep through concrete foundations slowly. Second, it can flow from the high pressure soil to the low pressure air in your house through cracks in the foundation. And third, it can be dissolved in groundwater and get released when that water is agitated (showers, faucet running, etc). 

It's easy to test for Radon in your home, and relatively inexpensive to get it fixed - so if you are unsure, get your home tested!!


Also, we have a new website!! Check it out or send us an email at our email address planetgeocast@gmail.com



——————————————————
Instagram: @planetgeocast
Twitter: @planetgeocast
Facebook: @planetgeocast
Email: planetgeocast@gmail.com
Website: https://www.planetgeocast.com 

Download the CampGeo app now at this link.

On the app you can get tons of free content, exclusive images, and access to our Geology of National Parks series.
You can also learn the basics of geology at the college level in our FREE CampGeo content series - get learning now!

Like, Subscribe, and leave us a Rating!

——————————————————
Instagram: @planetgeocast
Twitter: @planetgeocast
Facebook: @planetgeocast
Support us: https://planetgeocast.com/support-us
Email: planetgeocast@gmail.com
Website: https://planetgeocast.com/

More description

Are you worried about Radon in your home? 

Here are a few valuable links to learn more about it and some resources to get a test -
United States Environmental Protection Agency page
United States Geological Survey FAQ
United States Map of Radon Risk (get your home checked!)

Today we talk about Radon!  

Radon is something you have probably heard of, but may not know much about.  It is a really important aspect of geoscience that touches our lives everyday. 

Radon is an element that is radioactive. It is formed from the decay of Uranium as Uranium breaks down into Lead.  Radon is special because it is a Noble Gas, which means it is an element that doesn't bond with other elements, so it can move around easily. When Uranium decays, it goes through several steps of decay and eventually gets to Radon. 

Once Radon is formed, it can move. Radon is a gas and can flow through soils, in water, or even seep through concrete. So, it can make it into your house!  Once there, Radon can hang around for a few days until it decays again and eventually produces Pb. 

Radon can move easier if 

  1. The soil is permeable - stuff can flow through it 
  2. The soil is porous - there is a lot of space in the soil
  3. Soil is dry - water slows down Radon movement

There are several ways for Radon to get into your house if it can move quickly through the soil. First it can seep through concrete foundations slowly. Second, it can flow from the high pressure soil to the low pressure air in your house through cracks in the foundation. And third, it can be dissolved in groundwater and get released when that water is agitated (showers, faucet running, etc). 

It's easy to test for Radon in your home, and relatively inexpensive to get it fixed - so if you are unsure, get your home tested!!


Also, we have a new website!! Check it out or send us an email at our email address planetgeocast@gmail.com



——————————————————
Instagram: @planetgeocast
Twitter: @planetgeocast
Facebook: @planetgeocast
Email: planetgeocast@gmail.com
Website: https://www.planetgeocast.com 

Download the CampGeo app now at this link.

On the app you can get tons of free content, exclusive images, and access to our Geology of National Parks series.
You can also learn the basics of geology at the college level in our FREE CampGeo content series - get learning now!

Like, Subscribe, and leave us a Rating!

——————————————————
Instagram: @planetgeocast
Twitter: @planetgeocast
Facebook: @planetgeocast
Support us: https://planetgeocast.com/support-us
Email: planetgeocast@gmail.com
Website: https://planetgeocast.com/

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Thanks to our UK listener Valeria for this excellent question! 

Valeria wondered what was going on with road collapses in the UK recently!  Luckily, some experts have looked into this and wrote this recent blog post that proposes some ideas, and suggests further research is necessary.  

In this Geoshort, we discuss these options, as well as explain what Solifluction is, and how it moves soil in a very powerful and slow process. 
 
Thanks Valeria for an excellent question!  We look forward to many more from you and other listeners of PlanetGeo.

As usual, please follow us on all the social media accounts or shoot us an email! 





——————————————————
Instagram: @planetgeocast
Twitter: @planetgeocast
Facebook: @planetgeocast
Email: planetgeocast@gmail.com
Website: www.planetgeocast.com 

Download the CampGeo app now at this link.

On the app you can get tons of free content, exclusive images, and access to our Geology of National Parks series.
You can also learn the basics of geology at the college level in our FREE CampGeo content series - get learning now!

Like, Subscribe, and leave us a Rating!

——————————————————
Instagram: @planetgeocast
Twitter: @planetgeocast
Facebook: @planetgeocast
Support us: https://planetgeocast.com/support-us
Email: planetgeocast@gmail.com
Website: https://planetgeocast.com/

More description

Thanks to our UK listener Valeria for this excellent question! 

Valeria wondered what was going on with road collapses in the UK recently!  Luckily, some experts have looked into this and wrote this recent blog post that proposes some ideas, and suggests further research is necessary.  

In this Geoshort, we discuss these options, as well as explain what Solifluction is, and how it moves soil in a very powerful and slow process. 
 
Thanks Valeria for an excellent question!  We look forward to many more from you and other listeners of PlanetGeo.

As usual, please follow us on all the social media accounts or shoot us an email! 





——————————————————
Instagram: @planetgeocast
Twitter: @planetgeocast
Facebook: @planetgeocast
Email: planetgeocast@gmail.com
Website: www.planetgeocast.com 

Download the CampGeo app now at this link.

On the app you can get tons of free content, exclusive images, and access to our Geology of National Parks series.
You can also learn the basics of geology at the college level in our FREE CampGeo content series - get learning now!

Like, Subscribe, and leave us a Rating!

——————————————————
Instagram: @planetgeocast
Twitter: @planetgeocast
Facebook: @planetgeocast
Support us: https://planetgeocast.com/support-us
Email: planetgeocast@gmail.com
Website: https://planetgeocast.com/

Extract Knowledge
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Join us as we interview Dr. Maya Wei-Haas who works as a science journalist for National Geographic.  Dr. Wei-Haas has a PhD in geoscience, has done top-tier research.  In our discussion, she explains why she decided to pivot and use her extensive background to write interesting articles about our amazing planet.  This was not an easy decision for Dr. Wei-Haas to make as writing did not come naturally - just another obstacle for her to overcome.  Sit back and listen to this intriguing discussion about Earth science, writing, and life.

Dr. Maya Wei-Haas has an impressive CV:  She has a PhD in Geoscience, but now works as a science journalist for National Geographic.  Here are some of the awards Dr. Wei-Haas has won!

  • Science Journalist for National Geographic - particular affection for Rocks and Reactions, 
  • Assistant Editor - Smithsonian Magazine
  • American Academy for the Advancement of Science Fellow in 2015
  • PhD in Earth Science from Ohio State University
  • ASCE Excellence in Journalism Award 2021
  • AGU’s Perlman Award for Excellence in Science Journalism (2020)
  • National Science Foundation Graduate Research Fellow (2010-2015)




——————————————————
Instagram: @planetgeocast
Twitter: @planetgeocast
Facebook: @planetgeocast
Email: planetgeocast@gmail.com
Website: www.planetgeocast.com 

Download the CampGeo app now at this link.

On the app you can get tons of free content, exclusive images, and access to our Geology of National Parks series.
You can also learn the basics of geology at the college level in our FREE CampGeo content series - get learning now!

Like, Subscribe, and leave us a Rating!

——————————————————
Instagram: @planetgeocast
Twitter: @planetgeocast
Facebook: @planetgeocast
Support us: https://planetgeocast.com/support-us
Email: planetgeocast@gmail.com
Website: https://planetgeocast.com/

More description

Join us as we interview Dr. Maya Wei-Haas who works as a science journalist for National Geographic.  Dr. Wei-Haas has a PhD in geoscience, has done top-tier research.  In our discussion, she explains why she decided to pivot and use her extensive background to write interesting articles about our amazing planet.  This was not an easy decision for Dr. Wei-Haas to make as writing did not come naturally - just another obstacle for her to overcome.  Sit back and listen to this intriguing discussion about Earth science, writing, and life.

Dr. Maya Wei-Haas has an impressive CV:  She has a PhD in Geoscience, but now works as a science journalist for National Geographic.  Here are some of the awards Dr. Wei-Haas has won!

  • Science Journalist for National Geographic - particular affection for Rocks and Reactions, 
  • Assistant Editor - Smithsonian Magazine
  • American Academy for the Advancement of Science Fellow in 2015
  • PhD in Earth Science from Ohio State University
  • ASCE Excellence in Journalism Award 2021
  • AGU’s Perlman Award for Excellence in Science Journalism (2020)
  • National Science Foundation Graduate Research Fellow (2010-2015)




——————————————————
Instagram: @planetgeocast
Twitter: @planetgeocast
Facebook: @planetgeocast
Email: planetgeocast@gmail.com
Website: www.planetgeocast.com 

Download the CampGeo app now at this link.

On the app you can get tons of free content, exclusive images, and access to our Geology of National Parks series.
You can also learn the basics of geology at the college level in our FREE CampGeo content series - get learning now!

Like, Subscribe, and leave us a Rating!

——————————————————
Instagram: @planetgeocast
Twitter: @planetgeocast
Facebook: @planetgeocast
Support us: https://planetgeocast.com/support-us
Email: planetgeocast@gmail.com
Website: https://planetgeocast.com/

Extract Knowledge
Listen elsewhere

Dr. Maya Wei-Haas has an impressive CV:  See below.  She has a PhD in Geoscience, but now works as a science journalist for National Geographic.  Dr. Wei-Haas has had to overcome some major obstacles to become a professional journalist.  Join us in this interesting discussion about a recent article on Daylight Saving Time.

Science Journalist for National Geographic - particular affection for Rocks and Reactions, 

Assistant Editor - Smithsonian Magazine

American Academy for the Advancement of Science Fellow in 2015

PhD in Earth Science from Ohio State University

ASCE Excellence in Journalism Award 2021

AGU’s Perlman Award for Excellence in Science Journalism (2020)

National Science Foundation Graduate Research Fellow (2010-2015)

——————————————————
Instagram: @planetgeocast
Twitter: @planetgeocast
Facebook: @planetgeocast
Email: planetgeocast@gmail.com
Website: https://planetgeocast.buzzsprout.com/ 

Download the CampGeo app now at this link.

On the app you can get tons of free content, exclusive images, and access to our Geology of National Parks series.
You can also learn the basics of geology at the college level in our FREE CampGeo content series - get learning now!

Like, Subscribe, and leave us a Rating!

——————————————————
Instagram: @planetgeocast
Twitter: @planetgeocast
Facebook: @planetgeocast
Support us: https://planetgeocast.com/support-us
Email: planetgeocast@gmail.com
Website: https://planetgeocast.com/

More description

Dr. Maya Wei-Haas has an impressive CV:  See below.  She has a PhD in Geoscience, but now works as a science journalist for National Geographic.  Dr. Wei-Haas has had to overcome some major obstacles to become a professional journalist.  Join us in this interesting discussion about a recent article on Daylight Saving Time.

Science Journalist for National Geographic - particular affection for Rocks and Reactions, 

Assistant Editor - Smithsonian Magazine

American Academy for the Advancement of Science Fellow in 2015

PhD in Earth Science from Ohio State University

ASCE Excellence in Journalism Award 2021

AGU’s Perlman Award for Excellence in Science Journalism (2020)

National Science Foundation Graduate Research Fellow (2010-2015)

——————————————————
Instagram: @planetgeocast
Twitter: @planetgeocast
Facebook: @planetgeocast
Email: planetgeocast@gmail.com
Website: https://planetgeocast.buzzsprout.com/ 

Download the CampGeo app now at this link.

On the app you can get tons of free content, exclusive images, and access to our Geology of National Parks series.
You can also learn the basics of geology at the college level in our FREE CampGeo content series - get learning now!

Like, Subscribe, and leave us a Rating!

——————————————————
Instagram: @planetgeocast
Twitter: @planetgeocast
Facebook: @planetgeocast
Support us: https://planetgeocast.com/support-us
Email: planetgeocast@gmail.com
Website: https://planetgeocast.com/

Extract Knowledge
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The Black Hills happens to be one of our favorite places.  We thought it was the right time to talk about them as people are getting the itch for summer to arrive so we can play in the mountains.  The Black Hills is the perfect area to orient a young family to a life of adventure and respect for the outdoors.  You can't get into too much trouble here and these mountains and the surrounding area offers so much to do.  The Black Hills of South Dakota are a destination - not a speed bump on your way out West.  Sit back and enjoy!

Geology of the Hills

  • The geology is complex but there are 3 basic suites of rock formations.  The igneous and metamorphic core in the southern part of the Hills (Black Elk Peak, Mount Rushmore), some intrusive and extrusive igneous activity in the northern part of the hills (Bear butte and Devils Tower), and the sedimentary rocks that rim and surround the entire area (Racetrack and Wind Cave).  From a 30,000 foot perspective, everythings looks like a huge oval shaped bullseye.
  • The granite core, that has tons of awesome pegmatite was formed between 2 by and 1.8 by ago in the Trans-Hudson Orogeny. This is ancient mountain building event that formed the Canadian shield and the North American Craton (Jesse, you probably know a lot about this).  The pegmatite makes for a climbing meca.  
  • Surrounding the Granite, is a diverse group of metamorphic rocks.  These are the oldest in the area, because they were formerly sedimentary rocks that were metamorphosed into schists and gneisses by the THO.  These rocks were intensely heated and squeezed enormously.  In some areas of the hills, the metamorphic rocks are tilted 90 degrees (upended) and have been heavily eroded since. (Jesse, we love this stuff because we LOVE schist - garnet, staurolite, etc)
  • The PreC core was eventually brought to the surface.  How did this happen and How do we know?
    • It was relatively flat, and then covered by a shallow sea and eventually the Western Interior Seaway.
    • The sedimentary rocks that circle the BH are oldest near the core and get progressively younger further out.  You can always tell where you are in the BH by the types of rocks around you - core vs. unaltered sed. rx.
  • Over 7500 feet of vertically accumulated rocks here

Then the Laramide Orogeny began to influence this area.  This is the famous event that formed the Rocky Mountains far to the West.  But a stray blob of magma rose way to the East under the Black Hills - pushing up the PreC core and the sedimentary strata covering them.  

  • The highest parts of the BH are 7200 feet above sea level.  The sed rx were 7500 feet thick so the total uplift is near 15,000 feet, but they were not likely ever that tall.  As uplift was going on, so was erosion.
  • The blob of magma was like a piston, shoving up the rocks from below.  As the PreC core poked through, the sedimentary rocks were folded and upended.  This also exposed them all as concentric rings around the core.  Called a structural Dome.
  • A series of igneous intrusions on the Northern end of the Hills (lacoliths, sills, and dikes) extend from Bear Butte 70 miles to the West and include the famous Devils tower and the Missouri buttes.
  • Shale is a wimpy rock and therefore gets eroded into valleys.  This is why the Racetrack goes all the way around the BH.  So do all of the ridges.  Looks like an oval bullseye.
  • One other note about the the PreC igneous core is that they are exposed - the overburden is gone, which has caused unique jointing - formation of the Needles.




——————————————————
Instagram: @planetgeocast
Twitter:

Download the CampGeo app now at this link.

On the app you can get tons of free content, exclusive images, and access to our Geology of National Parks series.
You can also learn the basics of geology at the college level in our FREE CampGeo content series - get learning now!

Like, Subscribe, and leave us a Rating!

——————————————————
Instagram: @planetgeocast
Twitter: @planetgeocast
Facebook: @planetgeocast
Support us: https://planetgeocast.com/support-us
Email: planetgeocast@gmail.com
Website: https://planetgeocast.com/

More description

The Black Hills happens to be one of our favorite places.  We thought it was the right time to talk about them as people are getting the itch for summer to arrive so we can play in the mountains.  The Black Hills is the perfect area to orient a young family to a life of adventure and respect for the outdoors.  You can't get into too much trouble here and these mountains and the surrounding area offers so much to do.  The Black Hills of South Dakota are a destination - not a speed bump on your way out West.  Sit back and enjoy!

Geology of the Hills

  • The geology is complex but there are 3 basic suites of rock formations.  The igneous and metamorphic core in the southern part of the Hills (Black Elk Peak, Mount Rushmore), some intrusive and extrusive igneous activity in the northern part of the hills (Bear butte and Devils Tower), and the sedimentary rocks that rim and surround the entire area (Racetrack and Wind Cave).  From a 30,000 foot perspective, everythings looks like a huge oval shaped bullseye.
  • The granite core, that has tons of awesome pegmatite was formed between 2 by and 1.8 by ago in the Trans-Hudson Orogeny. This is ancient mountain building event that formed the Canadian shield and the North American Craton (Jesse, you probably know a lot about this).  The pegmatite makes for a climbing meca.  
  • Surrounding the Granite, is a diverse group of metamorphic rocks.  These are the oldest in the area, because they were formerly sedimentary rocks that were metamorphosed into schists and gneisses by the THO.  These rocks were intensely heated and squeezed enormously.  In some areas of the hills, the metamorphic rocks are tilted 90 degrees (upended) and have been heavily eroded since. (Jesse, we love this stuff because we LOVE schist - garnet, staurolite, etc)
  • The PreC core was eventually brought to the surface.  How did this happen and How do we know?
    • It was relatively flat, and then covered by a shallow sea and eventually the Western Interior Seaway.
    • The sedimentary rocks that circle the BH are oldest near the core and get progressively younger further out.  You can always tell where you are in the BH by the types of rocks around you - core vs. unaltered sed. rx.
  • Over 7500 feet of vertically accumulated rocks here

Then the Laramide Orogeny began to influence this area.  This is the famous event that formed the Rocky Mountains far to the West.  But a stray blob of magma rose way to the East under the Black Hills - pushing up the PreC core and the sedimentary strata covering them.  

  • The highest parts of the BH are 7200 feet above sea level.  The sed rx were 7500 feet thick so the total uplift is near 15,000 feet, but they were not likely ever that tall.  As uplift was going on, so was erosion.
  • The blob of magma was like a piston, shoving up the rocks from below.  As the PreC core poked through, the sedimentary rocks were folded and upended.  This also exposed them all as concentric rings around the core.  Called a structural Dome.
  • A series of igneous intrusions on the Northern end of the Hills (lacoliths, sills, and dikes) extend from Bear Butte 70 miles to the West and include the famous Devils tower and the Missouri buttes.
  • Shale is a wimpy rock and therefore gets eroded into valleys.  This is why the Racetrack goes all the way around the BH.  So do all of the ridges.  Looks like an oval bullseye.
  • One other note about the the PreC igneous core is that they are exposed - the overburden is gone, which has caused unique jointing - formation of the Needles.




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Join us as we interview science writer Steve Olson about his book Eruption: The Untold Story of Mount St. Helens.  For his outstanding work on this book, he won the Washington State Book Award and was named one of the best nonfiction books of 2016 by Amazon.  Steve is also the author of the book The Apocalypse Factory: Plutonium and the Making of the Atomic Age, a new history of the nuclear era told from the perspective of the Hanford nuclear reservation. He also is the author of Mapping Human History: Genes, Race, and Our Common Origins, which was nominated for the National Book Award, and other books, and he has written for the Atlantic Monthly, Science, the Smithsonian, and many other magazines. Since 1979, he has been a consultant writer for the National Academy of Sciences, the President’s Council of Advisors on Science and Technology, and other national scientific organizations.

In the book, Steve writes about the forestry industry, the history of the National Forest, and he tells the human side of the story before, during, and after the eruption.  In this interview, we ask Steve a series of questions that came to mind as we read his book.  So sit back, relax, and enjoy this outstanding conversation with author Steve Olson.  The stories are fantastic. 




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Join us as we interview science writer Steve Olson about his book Eruption: The Untold Story of Mount St. Helens.  For his outstanding work on this book, he won the Washington State Book Award and was named one of the best nonfiction books of 2016 by Amazon.  Steve is also the author of the book The Apocalypse Factory: Plutonium and the Making of the Atomic Age, a new history of the nuclear era told from the perspective of the Hanford nuclear reservation. He also is the author of Mapping Human History: Genes, Race, and Our Common Origins, which was nominated for the National Book Award, and other books, and he has written for the Atlantic Monthly, Science, the Smithsonian, and many other magazines. Since 1979, he has been a consultant writer for the National Academy of Sciences, the President’s Council of Advisors on Science and Technology, and other national scientific organizations.

In the book, Steve writes about the forestry industry, the history of the National Forest, and he tells the human side of the story before, during, and after the eruption.  In this interview, we ask Steve a series of questions that came to mind as we read his book.  So sit back, relax, and enjoy this outstanding conversation with author Steve Olson.  The stories are fantastic. 




——————————————————
Instagram: @planetgeocast
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Facebook: @planetgeocast
Email: planetgeocast@gmail.com
Website: www.planetgeocast.com 

Download the CampGeo app now at this link.

On the app you can get tons of free content, exclusive images, and access to our Geology of National Parks series.
You can also learn the basics of geology at the college level in our FREE CampGeo content series - get learning now!

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Join us in a preview to our full interview with science writer Steve Olson!

In this GeoShort, we cover the modern science of Mount St. Helens, a bit about Steve's writing career, and discuss the importance of geoscience!  

Tune in next week for the full interview.

In the book, Steve writes about the forestry industry, the history of the National Forest, and he tells the human side of the story before, during, and after the eruption.  In this interview, we ask Steve a series of questions that came to mind as we read his book.  So sit back, relax, and enjoy this outstanding conversation with author Steve Olson.  The stories are fantastic. 




——————————————————
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Twitter: @planetgeocast
Facebook: @planetgeocast
Email: planetgeocast@gmail.com
Website: www.planetgeocast.com 

Download the CampGeo app now at this link.

On the app you can get tons of free content, exclusive images, and access to our Geology of National Parks series.
You can also learn the basics of geology at the college level in our FREE CampGeo content series - get learning now!

Like, Subscribe, and leave us a Rating!

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More description

Join us in a preview to our full interview with science writer Steve Olson!

In this GeoShort, we cover the modern science of Mount St. Helens, a bit about Steve's writing career, and discuss the importance of geoscience!  

Tune in next week for the full interview.

In the book, Steve writes about the forestry industry, the history of the National Forest, and he tells the human side of the story before, during, and after the eruption.  In this interview, we ask Steve a series of questions that came to mind as we read his book.  So sit back, relax, and enjoy this outstanding conversation with author Steve Olson.  The stories are fantastic. 




——————————————————
Instagram: @planetgeocast
Twitter: @planetgeocast
Facebook: @planetgeocast
Email: planetgeocast@gmail.com
Website: www.planetgeocast.com 

Download the CampGeo app now at this link.

On the app you can get tons of free content, exclusive images, and access to our Geology of National Parks series.
You can also learn the basics of geology at the college level in our FREE CampGeo content series - get learning now!

Like, Subscribe, and leave us a Rating!

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Join Jesse and Chris as we interview Christina (Tina) Neal.  Tina has 38 years of experience as a volcanologist for the USGS.  She is the Volcano Science Center Director and is in charge of all 5 of the U.S. volcano observatories.  

Yes, that's right - there are 5 volcano observatories in the U.S.: California Volcano Observatory, Cascade Volcano Observatory, Alaska Volcano Observatory, Yellowstone Volcano Observatory, and Hawaii Volcano Observatory.  Neal oversees 170 employees and is responsible for science and operational planning; workforce development; improving diversity, equity, inclusion, and accessibility; and preparing the USGS for U.S. volcanic eruptions.

In 2018, Neal was the Scientist in Charge at the Hawaii Observatory.  She paints a vivid picture of what it was like to be there for this historic eruption and also the incredible responsibility to forecast and communicate during this time.  She was a finalist for the Samuel Haymen Service to America Medal for her and her teams outstanding work during the eruption.  

This interview was a lot of fun for us, because Tina Neal has seen and done a lot in her career.  She talks about magma chambers, seismic activity, forecasting eruptions, careers in volcanology, and some scary moments.    Enjoy.


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Website: https://planetgeocast.buzzsprout.com/ 

Download the CampGeo app now at this link.

On the app you can get tons of free content, exclusive images, and access to our Geology of National Parks series.
You can also learn the basics of geology at the college level in our FREE CampGeo content series - get learning now!

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Join Jesse and Chris as we interview Christina (Tina) Neal.  Tina has 38 years of experience as a volcanologist for the USGS.  She is the Volcano Science Center Director and is in charge of all 5 of the U.S. volcano observatories.  

Yes, that's right - there are 5 volcano observatories in the U.S.: California Volcano Observatory, Cascade Volcano Observatory, Alaska Volcano Observatory, Yellowstone Volcano Observatory, and Hawaii Volcano Observatory.  Neal oversees 170 employees and is responsible for science and operational planning; workforce development; improving diversity, equity, inclusion, and accessibility; and preparing the USGS for U.S. volcanic eruptions.

In 2018, Neal was the Scientist in Charge at the Hawaii Observatory.  She paints a vivid picture of what it was like to be there for this historic eruption and also the incredible responsibility to forecast and communicate during this time.  She was a finalist for the Samuel Haymen Service to America Medal for her and her teams outstanding work during the eruption.  

This interview was a lot of fun for us, because Tina Neal has seen and done a lot in her career.  She talks about magma chambers, seismic activity, forecasting eruptions, careers in volcanology, and some scary moments.    Enjoy.


——————————————————
Instagram: @planetgeocast
Twitter: @planetgeocast
Facebook: @planetgeocast
Email: planetgeocast@gmail.com
Website: https://planetgeocast.buzzsprout.com/ 

Download the CampGeo app now at this link.

On the app you can get tons of free content, exclusive images, and access to our Geology of National Parks series.
You can also learn the basics of geology at the college level in our FREE CampGeo content series - get learning now!

Like, Subscribe, and leave us a Rating!

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In this episode, Jesse and Chris follow up on the K-T Extinction episode from last week.  Why is Iridium so important in this story?  Our show notes summary is below.

Why is Iridium identified in these layers? 

  • Well, it’s higher in meteorites - but not really high. 
  • Why is it higher in meteorites though? 
    • It’s not actually high in meteorites, it’s low in the Earth’s crust!  Very very very low. 
  • Yet, Earth is made of meteorites, so where did the Ir go?
    • Most of it is in the core and we talk about why.
  • Very rare on the surface of the Earth - only three metric tons mined and used yearly
    • The most corrosion resistant substance known - even at high temperatures
    • If it's so corrosion resistant, what is it used for?


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Website: https://planetgeocast.buzzsprout.com/ 

Download the CampGeo app now at this link.

On the app you can get tons of free content, exclusive images, and access to our Geology of National Parks series.
You can also learn the basics of geology at the college level in our FREE CampGeo content series - get learning now!

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More description

In this episode, Jesse and Chris follow up on the K-T Extinction episode from last week.  Why is Iridium so important in this story?  Our show notes summary is below.

Why is Iridium identified in these layers? 

  • Well, it’s higher in meteorites - but not really high. 
  • Why is it higher in meteorites though? 
    • It’s not actually high in meteorites, it’s low in the Earth’s crust!  Very very very low. 
  • Yet, Earth is made of meteorites, so where did the Ir go?
    • Most of it is in the core and we talk about why.
  • Very rare on the surface of the Earth - only three metric tons mined and used yearly
    • The most corrosion resistant substance known - even at high temperatures
    • If it's so corrosion resistant, what is it used for?


——————————————————
Instagram: @planetgeocast
Twitter: @planetgeocast
Facebook: @planetgeocast
Email: planetgeocast@gmail.com
Website: https://planetgeocast.buzzsprout.com/ 

Download the CampGeo app now at this link.

On the app you can get tons of free content, exclusive images, and access to our Geology of National Parks series.
You can also learn the basics of geology at the college level in our FREE CampGeo content series - get learning now!

Like, Subscribe, and leave us a Rating!

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Published 2022-02-03

Meteors+Dinosaurs+Geology = Extinction!

47 min
View

Join Jesse and Chris as we explore the hypothesis that an asteroid ended the Cretaceous AND the age of the reptiles.  It's a very compelling scientific story of discovery.

This has been hotly debated back and forth for a long long time, with consensus being reached only recently (since I was in graduate school)

  • Other options include a massive volcanic outpouring - Deccan Traps in India erupted >1 million cubic km of lava in a million year period, with 50% of that coming before the mass extinction event. 
  • The question is really about what killed so much stuff?  How does the Earth respond to massive impacts? There have been other large meteorite impacts (and big volcanic eruptions) with no mass extinction - why this one? 
    • Was the Earth already in a sorry state (lots of CO2 and mercury in the atmosphere) before the extinction?
  • Flood basalt volcanism is tied to other major mass extinction events (end-Permian and end-Triassic)

As we look at the evidence, we bounce around the globe.  We begin in Italy.  
1- Gubbio, Italy.  Layers of ancient limestone that are now folded and uplifted.  Working from bottom to top- site became a magnet.  Why?  It has a thin layer of dark clay.  Walter Alverez became v. Interested in this.  He studied the foraminifera below and above.  He found that at the top of the white limestone, the vast diversity of the forams abruptly went missing.  

2- Spain - 1500km away.  On the Atlantic coast outside of Zumaia.  2 beaches here which are of interest to geologists because they are situated among the longest set of continuous rock strata in the world.  Jan Smit was studying the forams here.  In these layers, Smit found a strange clay layer - just like Alvarez.  In these rocks, they were steady, consistent, for over a million years, then all of the sudden, the clay layer.  There is no evidence of anything happening and then all of the sudden, the clay layer and bang, they’re gone.  

How long did this take to change?

3- Walter brought in his dad, Louie Alverez.  He brought in his knowledge of Astrophysics.  He found the layer to be rich in IR (also iron, nickel and cobalt).  It contained over 30 X the amount in surrounding rock (measured from the clay at Gubbio).   Could it come from an Asteroid.  He hypothesized that the IR would be spread all over the world as a blanket.  So he could calc. The amount that was laid down all over Earth.  Knowing the amount that is in Asteroids and Comets, they can calc. The size of the Asteroid.  

5- Texas on the Brazos River.  65 my this was the bottom of a sea.  We found, Allen Hildebrand, strange sed deposits across the basin.  7 million years of boring mud there.  This was under water.  Then suddenly, we see the mud got eroded.  Suddenly, there were huge boulders in the mud.  Only a giant Tsunami could do this. 

6- Haiti: Report of volcanic rocks.  They were actually ejecta full of shocked qtr and spherules.  They were also full of melted rocks called tektites.   

7- From Jan Smit: The boundary clay has two parts: lower layer - just 2-3 mm.  It’s the most enriched in IR, nickel, FE, and cobalt.  Also has spherules (crystalline and .5 mm).  Remains of micro Tektites.  Also has the shocked quartz.  Highly diagnostic from shock pressures.  

9- Shocked minerals are diagnostic of impacts 

10- In 2019 in North Dakota, a new discovery - The Tanis (fossil) site.  Evidence of a tsunami deposit.  Has rocks with 3 distinct fish fossils - paddlefish, sturgeon, and ammonites. They pulled gills out of the fish and found a lot of tektites inside the gills - they were swallowing them while still alive.  

Download the CampGeo app now at this link.

On the app you can get tons of free content, exclusive images, and access to our Geology of National Parks series.
You can also learn the basics of geology at the college level in our FREE CampGeo content series - get learning now!

Like, Subscribe, and leave us a Rating!

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More description

Join Jesse and Chris as we explore the hypothesis that an asteroid ended the Cretaceous AND the age of the reptiles.  It's a very compelling scientific story of discovery.

This has been hotly debated back and forth for a long long time, with consensus being reached only recently (since I was in graduate school)

  • Other options include a massive volcanic outpouring - Deccan Traps in India erupted >1 million cubic km of lava in a million year period, with 50% of that coming before the mass extinction event. 
  • The question is really about what killed so much stuff?  How does the Earth respond to massive impacts? There have been other large meteorite impacts (and big volcanic eruptions) with no mass extinction - why this one? 
    • Was the Earth already in a sorry state (lots of CO2 and mercury in the atmosphere) before the extinction?
  • Flood basalt volcanism is tied to other major mass extinction events (end-Permian and end-Triassic)

As we look at the evidence, we bounce around the globe.  We begin in Italy.  
1- Gubbio, Italy.  Layers of ancient limestone that are now folded and uplifted.  Working from bottom to top- site became a magnet.  Why?  It has a thin layer of dark clay.  Walter Alverez became v. Interested in this.  He studied the foraminifera below and above.  He found that at the top of the white limestone, the vast diversity of the forams abruptly went missing.  

2- Spain - 1500km away.  On the Atlantic coast outside of Zumaia.  2 beaches here which are of interest to geologists because they are situated among the longest set of continuous rock strata in the world.  Jan Smit was studying the forams here.  In these layers, Smit found a strange clay layer - just like Alvarez.  In these rocks, they were steady, consistent, for over a million years, then all of the sudden, the clay layer.  There is no evidence of anything happening and then all of the sudden, the clay layer and bang, they’re gone.  

How long did this take to change?

3- Walter brought in his dad, Louie Alverez.  He brought in his knowledge of Astrophysics.  He found the layer to be rich in IR (also iron, nickel and cobalt).  It contained over 30 X the amount in surrounding rock (measured from the clay at Gubbio).   Could it come from an Asteroid.  He hypothesized that the IR would be spread all over the world as a blanket.  So he could calc. The amount that was laid down all over Earth.  Knowing the amount that is in Asteroids and Comets, they can calc. The size of the Asteroid.  

5- Texas on the Brazos River.  65 my this was the bottom of a sea.  We found, Allen Hildebrand, strange sed deposits across the basin.  7 million years of boring mud there.  This was under water.  Then suddenly, we see the mud got eroded.  Suddenly, there were huge boulders in the mud.  Only a giant Tsunami could do this. 

6- Haiti: Report of volcanic rocks.  They were actually ejecta full of shocked qtr and spherules.  They were also full of melted rocks called tektites.   

7- From Jan Smit: The boundary clay has two parts: lower layer - just 2-3 mm.  It’s the most enriched in IR, nickel, FE, and cobalt.  Also has spherules (crystalline and .5 mm).  Remains of micro Tektites.  Also has the shocked quartz.  Highly diagnostic from shock pressures.  

9- Shocked minerals are diagnostic of impacts 

10- In 2019 in North Dakota, a new discovery - The Tanis (fossil) site.  Evidence of a tsunami deposit.  Has rocks with 3 distinct fish fossils - paddlefish, sturgeon, and ammonites. They pulled gills out of the fish and found a lot of tektites inside the gills - they were swallowing them while still alive.  

Download the CampGeo app now at this link.

On the app you can get tons of free content, exclusive images, and access to our Geology of National Parks series.
You can also learn the basics of geology at the college level in our FREE CampGeo content series - get learning now!

Like, Subscribe, and leave us a Rating!

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Chris and Jesse are recording this intro face to face in Michigan!  We had a lot of fun actually recording together rather than from 600 miles apart.  Join us in our final Re-release series on water.

Show notes are below:
This week we tackle a big question: why is the ocean so salty?  Spoiler alert: it's because of the hard water you may have running through your house!

In this episode we cover three major questions: 1) Why is the ocean salty? 2) Why do rivers keep flowing all the time? and 3) What is hard water?  Guess what...they are all related! 

Hard water is water that is "hard" to make a lather with.  This is caused by dissolved ions in the groundwater.  Those ions get there because groundwater interacts with rocks under... wait for it... the ground! This groundwater feeds rivers, which then flow into lakes and ultimately the oceans.  The ocean water then evaporates, leaves behind the salty stuff from dissolved rocks, forms clouds and rain, and starts the whole process over again.  Except, the salty ions are left behind in the ocean and accumulate over time.  

Hard water is extremely important to pay attention to because it can severely damage industrial equipment as well as cost you thousands of dollars in home repairs if you don't get it taken care of it.  Here is a link to a United States Geological Survey article that outlines hard water, where it is found, and what it can cause.  Check out that picture of the clogged pipe!  

https://www.usgs.gov/special-topic/water-science-school/science/hardness-water?qt-science_center_objects=0#qt-science_center_objects


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Twitter: @planetgeocast
Facebook: @planetgeocast
Email: planetgeocast@gmail.com
Website: https://planetgeocast.buzzsprout.com/ 

Download the CampGeo app now at this link.

On the app you can get tons of free content, exclusive images, and access to our Geology of National Parks series.
You can also learn the basics of geology at the college level in our FREE CampGeo content series - get learning now!

Like, Subscribe, and leave us a Rating!

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More description

Chris and Jesse are recording this intro face to face in Michigan!  We had a lot of fun actually recording together rather than from 600 miles apart.  Join us in our final Re-release series on water.

Show notes are below:
This week we tackle a big question: why is the ocean so salty?  Spoiler alert: it's because of the hard water you may have running through your house!

In this episode we cover three major questions: 1) Why is the ocean salty? 2) Why do rivers keep flowing all the time? and 3) What is hard water?  Guess what...they are all related! 

Hard water is water that is "hard" to make a lather with.  This is caused by dissolved ions in the groundwater.  Those ions get there because groundwater interacts with rocks under... wait for it... the ground! This groundwater feeds rivers, which then flow into lakes and ultimately the oceans.  The ocean water then evaporates, leaves behind the salty stuff from dissolved rocks, forms clouds and rain, and starts the whole process over again.  Except, the salty ions are left behind in the ocean and accumulate over time.  

Hard water is extremely important to pay attention to because it can severely damage industrial equipment as well as cost you thousands of dollars in home repairs if you don't get it taken care of it.  Here is a link to a United States Geological Survey article that outlines hard water, where it is found, and what it can cause.  Check out that picture of the clogged pipe!  

https://www.usgs.gov/special-topic/water-science-school/science/hardness-water?qt-science_center_objects=0#qt-science_center_objects


——————————————————
Instagram: @planetgeocast
Twitter: @planetgeocast
Facebook: @planetgeocast
Email: planetgeocast@gmail.com
Website: https://planetgeocast.buzzsprout.com/ 

Download the CampGeo app now at this link.

On the app you can get tons of free content, exclusive images, and access to our Geology of National Parks series.
You can also learn the basics of geology at the college level in our FREE CampGeo content series - get learning now!

Like, Subscribe, and leave us a Rating!

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Join us as we interrupt our water series re-release to talk about a major current event - the eruption of Hunga Tonga-Hunga Ha'apai volcano in Tonga.

It was a huge eruption in the South Pacific from a very active volcano.  Its had some smaller eruptions in the last few months, but Saturday morning took the lid off.

In fact, some instrumented Cascade volcanoes - Mt Hood, Mt Saint Helens, and Mt Ranier, detected infrasound records (essentially specialized microphones).  The second longer but lower-magnitude signal that shows up later in the plot - is the airwave passing by the station again -- having come from the other direction!  That’s right, the airwave has wrapped around the planet!  The first wave traveled a distance of ~8500 km (~5300 miles).  The second traveled ~32,500 km (20,200 miles)!  In fact, barometers at O'hare airport in Chicago picked up the compression sound waves.

You may be wondering: why was there a volcano here in the first place? The answer is: plate tectonics! Tonga is one of the volcanic islands located on top of the Tonga Kermadec subduction zone! This is the convergent plate boundary where the Pacific Plate sinks below the Australian Plate. The Pacific Plate is made of old, cold, and dense rock material that sinks beneath the Australian Plate, where the subducted rocks heat up and melt as crust is recycled. The water and other volatiles rise up as the rocks are melting -- contributing to the "Big Boom" of the eruption.

Why are the eruptions so violent?  Potentially?  It’s not always violent, but about every thousand years, it let’s loose with huge eruptions.  Why doesn’t the cool ocean water cool the magma?  If magma rises slowly, there will be a thin layer of steam between the water and the magma.  This will allow the outer edge of the magma to cool.  If the magma rises fast, the magma is in direct contact with the water.  The result is much like a weapons grade chemical explosion that starts a chain reaction where fresh magma is exposed to new water.  So this is a combination of magma/water interaction as well as gas charged sticky magma that has been building for the last 1000 yrs.  By studying deposits from past eruptions, we know that we might be in for several weeks (or years) of intense volcanic activity.  

 The violence of the blast triggered tsunamis.  About 1.2 meters (4 feet) on the country of Tonga.  Hard to get a clear picture of devastation yet because of ongoing eruptions.  I don’t think this story is done yet.

Ash reached 20km into the sky and it produced a ton of lightning ~ 100 bolts/sec!


——————————————————
Instagram: @planetgeocast
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Website: https://planetgeocast.buzzsprout.com/ 

Download the CampGeo app now at this link.

On the app you can get tons of free content, exclusive images, and access to our Geology of National Parks series.
You can also learn the basics of geology at the college level in our FREE CampGeo content series - get learning now!

Like, Subscribe, and leave us a Rating!

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Join us as we interrupt our water series re-release to talk about a major current event - the eruption of Hunga Tonga-Hunga Ha'apai volcano in Tonga.

It was a huge eruption in the South Pacific from a very active volcano.  Its had some smaller eruptions in the last few months, but Saturday morning took the lid off.

In fact, some instrumented Cascade volcanoes - Mt Hood, Mt Saint Helens, and Mt Ranier, detected infrasound records (essentially specialized microphones).  The second longer but lower-magnitude signal that shows up later in the plot - is the airwave passing by the station again -- having come from the other direction!  That’s right, the airwave has wrapped around the planet!  The first wave traveled a distance of ~8500 km (~5300 miles).  The second traveled ~32,500 km (20,200 miles)!  In fact, barometers at O'hare airport in Chicago picked up the compression sound waves.

You may be wondering: why was there a volcano here in the first place? The answer is: plate tectonics! Tonga is one of the volcanic islands located on top of the Tonga Kermadec subduction zone! This is the convergent plate boundary where the Pacific Plate sinks below the Australian Plate. The Pacific Plate is made of old, cold, and dense rock material that sinks beneath the Australian Plate, where the subducted rocks heat up and melt as crust is recycled. The water and other volatiles rise up as the rocks are melting -- contributing to the "Big Boom" of the eruption.

Why are the eruptions so violent?  Potentially?  It’s not always violent, but about every thousand years, it let’s loose with huge eruptions.  Why doesn’t the cool ocean water cool the magma?  If magma rises slowly, there will be a thin layer of steam between the water and the magma.  This will allow the outer edge of the magma to cool.  If the magma rises fast, the magma is in direct contact with the water.  The result is much like a weapons grade chemical explosion that starts a chain reaction where fresh magma is exposed to new water.  So this is a combination of magma/water interaction as well as gas charged sticky magma that has been building for the last 1000 yrs.  By studying deposits from past eruptions, we know that we might be in for several weeks (or years) of intense volcanic activity.  

 The violence of the blast triggered tsunamis.  About 1.2 meters (4 feet) on the country of Tonga.  Hard to get a clear picture of devastation yet because of ongoing eruptions.  I don’t think this story is done yet.

Ash reached 20km into the sky and it produced a ton of lightning ~ 100 bolts/sec!


——————————————————
Instagram: @planetgeocast
Twitter: @planetgeocast
Facebook: @planetgeocast
Email: planetgeocast@gmail.com
Website: https://planetgeocast.buzzsprout.com/ 

Download the CampGeo app now at this link.

On the app you can get tons of free content, exclusive images, and access to our Geology of National Parks series.
You can also learn the basics of geology at the college level in our FREE CampGeo content series - get learning now!

Like, Subscribe, and leave us a Rating!

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Jesse and Chris are recording face to face in Michigan.  Join us as we follow the water issues theme in our re-release series.

Show notes below:
We liked talking about dams so much we did it again!  Join our discussion on streams, how the normally operate, and how dams disrupt the way that streams function.

We highlight a few things in this episode, including a recent Eos article on sediment accumulation behind dams - expertly written by Tullos et al., the Paonia Reservoir where sediment accumulation has filled in the reservoir in record time, and another article on contaminated sediment releases from the Milltown Dam and the Hudson River that have caused big problems in the past, written by James Evans.

Chris also gets his long but warranted rant on the famous Aswan High Dam, and key example of the debates around the pros and cons of dams.

Also check out our previous episode on Dams at this link or anywhere you get your podcasts.





 
——————————————————
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Twitter: @planetgeocast
Facebook: @planetgeocast 
Youtube: https://www.youtube.com/channel/UCJ_A82nOMu0nIvZto6zMPqg
Email: planetgeocast@gmail.com
Website: https://planetgeocast.buzzsprout.com/

Download the CampGeo app now at this link.

On the app you can get tons of free content, exclusive images, and access to our Geology of National Parks series.
You can also learn the basics of geology at the college level in our FREE CampGeo content series - get learning now!

Like, Subscribe, and leave us a Rating!

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Email: planetgeocast@gmail.com
Website: https://planetgeocast.com/

More description

Jesse and Chris are recording face to face in Michigan.  Join us as we follow the water issues theme in our re-release series.

Show notes below:
We liked talking about dams so much we did it again!  Join our discussion on streams, how the normally operate, and how dams disrupt the way that streams function.

We highlight a few things in this episode, including a recent Eos article on sediment accumulation behind dams - expertly written by Tullos et al., the Paonia Reservoir where sediment accumulation has filled in the reservoir in record time, and another article on contaminated sediment releases from the Milltown Dam and the Hudson River that have caused big problems in the past, written by James Evans.

Chris also gets his long but warranted rant on the famous Aswan High Dam, and key example of the debates around the pros and cons of dams.

Also check out our previous episode on Dams at this link or anywhere you get your podcasts.





 
——————————————————
Instagram: @planetgeocast
Twitter: @planetgeocast
Facebook: @planetgeocast 
Youtube: https://www.youtube.com/channel/UCJ_A82nOMu0nIvZto6zMPqg
Email: planetgeocast@gmail.com
Website: https://planetgeocast.buzzsprout.com/

Download the CampGeo app now at this link.

On the app you can get tons of free content, exclusive images, and access to our Geology of National Parks series.
You can also learn the basics of geology at the college level in our FREE CampGeo content series - get learning now!

Like, Subscribe, and leave us a Rating!

——————————————————
Instagram: @planetgeocast
Twitter: @planetgeocast
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This is a re-release of a much earlier episode on Dams.  In our newly recorded intro, Jesse and I are in person and sitting across from each other as we give a little prelude to the episode.  We also decide to re-release our dams revisited episode from earlier this past summer.  Enjoy!

In this episode we cover....you guessed it, dams!  Dams are incredible manmade features that can not only dominate the landscape but also dominate the river system and fundamentally change how the rivers operate. 

We discuss everything from the amount of dams in the United States to major dam failures in the recent past, and highlight some of the basics of how dams fundamentally affect streams when they are installed. 

Here are some highlights of the statistics we cover! 

  • There are roughly 91,000 Dams in the US
  • They Impound over 600,000 miles of river or 17% of rivers
  • The average age is 59 years
  • The number of high-hazard potential dams is over 15,000 and increasing
  • It is estimated that over 70 billion dollars is needed to properly upgrade these dams.  For perspective, 425 billion dollars are spent each year on Road Infrastructure.  About 75% of that comes from state and local governments.  25% comes from Federal.
  • Dam regulation is largely up to each state and each person is responsible for about 200 dams.
  • All too many are suffering from a neglected investment in infrastructure.
  • Dams are this interesting intersection between geology, engineering, government oversight, and humanity.
  • So why do we build them?  So many reasons: hydroelectric, irrigation, flood mitigation, recreation, municipal water





 
——————————————————
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Twitter: @planetgeocast
Facebook: @planetgeocast 
Youtube: https://www.youtube.com/channel/UCJ_A82nOMu0nIvZto6zMPqg
Email: planetgeocast@gmail.com
Website: https://planetgeocast.buzzsprout.com/


Download the CampGeo app now at this link.

On the app you can get tons of free content, exclusive images, and access to our Geology of National Parks series.
You can also learn the basics of geology at the college level in our FREE CampGeo content series - get learning now!

Like, Subscribe, and leave us a Rating!

——————————————————
Instagram: @planetgeocast
Twitter: @planetgeocast
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Support us: https://planetgeocast.com/support-us
Email: planetgeocast@gmail.com
Website: https://planetgeocast.com/

More description

This is a re-release of a much earlier episode on Dams.  In our newly recorded intro, Jesse and I are in person and sitting across from each other as we give a little prelude to the episode.  We also decide to re-release our dams revisited episode from earlier this past summer.  Enjoy!

In this episode we cover....you guessed it, dams!  Dams are incredible manmade features that can not only dominate the landscape but also dominate the river system and fundamentally change how the rivers operate. 

We discuss everything from the amount of dams in the United States to major dam failures in the recent past, and highlight some of the basics of how dams fundamentally affect streams when they are installed. 

Here are some highlights of the statistics we cover! 

  • There are roughly 91,000 Dams in the US
  • They Impound over 600,000 miles of river or 17% of rivers
  • The average age is 59 years
  • The number of high-hazard potential dams is over 15,000 and increasing
  • It is estimated that over 70 billion dollars is needed to properly upgrade these dams.  For perspective, 425 billion dollars are spent each year on Road Infrastructure.  About 75% of that comes from state and local governments.  25% comes from Federal.
  • Dam regulation is largely up to each state and each person is responsible for about 200 dams.
  • All too many are suffering from a neglected investment in infrastructure.
  • Dams are this interesting intersection between geology, engineering, government oversight, and humanity.
  • So why do we build them?  So many reasons: hydroelectric, irrigation, flood mitigation, recreation, municipal water





 
——————————————————
Instagram: @planetgeocast
Twitter: @planetgeocast
Facebook: @planetgeocast 
Youtube: https://www.youtube.com/channel/UCJ_A82nOMu0nIvZto6zMPqg
Email: planetgeocast@gmail.com
Website: https://planetgeocast.buzzsprout.com/


Download the CampGeo app now at this link.

On the app you can get tons of free content, exclusive images, and access to our Geology of National Parks series.
You can also learn the basics of geology at the college level in our FREE CampGeo content series - get learning now!

Like, Subscribe, and leave us a Rating!

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A geology re-release of our talk about the worlds water and the issues we face.  Jesse and Chris are face to face recording this time which presented some challenges as you'll soon hear.  We had fun re-capping our water episode and we hope you have fun too as you hopefully learn a bit.

In this episode, Jesse and Chris talk about water.  That's right - water.  Where is the worlds water?  We begin by lumping all of the worlds water into 6 geological basins: oceans, glaciers, groundwater, lakes, atmosphere, and rivers.  We then assign relative percentages to each reservoir and then demonstrate how much water each would hold if all of the worlds water were scaled down to 5 gallons (19 Liters).

What comes to light is that less than 1% of all the worlds water is useable for human consumption - less than a half of a cup on a 5 gallon scale!  That "1/2 cup of water" is enough to keep 9 billion people alive, but it is not evenly distributed over the planet.

We use the Great Lakes in the Mid-West United States to illustrate the "haves and have nots".  The Great Lakes contain 21% of all the standing fresh surface water on Earth.  Despite having this incredible amount of water, the Great Lakes Basin is already dealing with water issues.  Our groundwater is being depleted and our standing water is being diverted.

We use the Chicago River diversion to illustrate some of the issues and concerns about moving Great Lakes water out of the Basin.  We also use Waukesha, Wisconsin as an example of an area that has a poor groundwater source but has been granted access to Great Lakes water to avert their needs.

Although we talk a lot about the Great Lakes region in this episode, the issues here are an analogy for the entire planet.  World population might reach 9 billion in 20 years.  Fresh water is finite and we need to be aware of the issues we will face - and are already facing while we still have time!




 
——————————————————
Instagram: @planetgeocast
Twitter: @planetgeocast
Facebook: @planetgeocast 
Youtube: https://www.youtube.com/channel/UCJ_A82nOMu0nIvZto6zMPqg
Email: planetgeocast@gmail.com
Website: https://planetgeocast.buzzsprout.com/

                               

Download the CampGeo app now at this link.

On the app you can get tons of free content, exclusive images, and access to our Geology of National Parks series.
You can also learn the basics of geology at the college level in our FREE CampGeo content series - get learning now!

Like, Subscribe, and leave us a Rating!

——————————————————
Instagram: @planetgeocast
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Email: planetgeocast@gmail.com
Website: https://planetgeocast.com/

More description

A geology re-release of our talk about the worlds water and the issues we face.  Jesse and Chris are face to face recording this time which presented some challenges as you'll soon hear.  We had fun re-capping our water episode and we hope you have fun too as you hopefully learn a bit.

In this episode, Jesse and Chris talk about water.  That's right - water.  Where is the worlds water?  We begin by lumping all of the worlds water into 6 geological basins: oceans, glaciers, groundwater, lakes, atmosphere, and rivers.  We then assign relative percentages to each reservoir and then demonstrate how much water each would hold if all of the worlds water were scaled down to 5 gallons (19 Liters).

What comes to light is that less than 1% of all the worlds water is useable for human consumption - less than a half of a cup on a 5 gallon scale!  That "1/2 cup of water" is enough to keep 9 billion people alive, but it is not evenly distributed over the planet.

We use the Great Lakes in the Mid-West United States to illustrate the "haves and have nots".  The Great Lakes contain 21% of all the standing fresh surface water on Earth.  Despite having this incredible amount of water, the Great Lakes Basin is already dealing with water issues.  Our groundwater is being depleted and our standing water is being diverted.

We use the Chicago River diversion to illustrate some of the issues and concerns about moving Great Lakes water out of the Basin.  We also use Waukesha, Wisconsin as an example of an area that has a poor groundwater source but has been granted access to Great Lakes water to avert their needs.

Although we talk a lot about the Great Lakes region in this episode, the issues here are an analogy for the entire planet.  World population might reach 9 billion in 20 years.  Fresh water is finite and we need to be aware of the issues we will face - and are already facing while we still have time!




 
——————————————————
Instagram: @planetgeocast
Twitter: @planetgeocast
Facebook: @planetgeocast 
Youtube: https://www.youtube.com/channel/UCJ_A82nOMu0nIvZto6zMPqg
Email: planetgeocast@gmail.com
Website: https://planetgeocast.buzzsprout.com/

                               

Download the CampGeo app now at this link.

On the app you can get tons of free content, exclusive images, and access to our Geology of National Parks series.
You can also learn the basics of geology at the college level in our FREE CampGeo content series - get learning now!

Like, Subscribe, and leave us a Rating!

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Instagram: @planetgeocast
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This is Part 4 of our re-released Climate and Energy series!  We are on a break right now, but there is always great geoscience information to learn about!

Today we get to talk about something really relevant to our everyday lives, and the future - Geothermal Energy!

Geothermal Energy is a term that means a few different things, but it all relies on the Earth being somewhat hot.  So, before we dive into the question of what Geothermal Energy is, we need to figure out why the Earth is hot!

The Earth produces a ton of heat, which is really important to understand how our planet operates over long times (remember plate tectonics??).  The heat comes from several sources, and some of it is left over from when the Earth formed - so some of the geothermal energy is tapping into 4.5 billion-year-old heat!

Geothermal energy takes two major forms: 1) passive geothermal heat pumps, often used in residential houses like Jesse's and 2) more active geothermal power plants that use lots of heat from the Earth!

As usual, follow us on social media and let us know what you think by sending us an email!



 
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Instagram: @planetgeocast
Twitter: @planetgeocast
Facebook: @planetgeocast 
Youtube: https://www.youtube.com/channel/UCJ_A82nOMu0nIvZto6zMPqg
Email: planetgeocast@gmail.com
Website: https://planetgeocast.buzzsprout.com/

Download the CampGeo app now at this link.

On the app you can get tons of free content, exclusive images, and access to our Geology of National Parks series.
You can also learn the basics of geology at the college level in our FREE CampGeo content series - get learning now!

Like, Subscribe, and leave us a Rating!

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Instagram: @planetgeocast
Twitter: @planetgeocast
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Email: planetgeocast@gmail.com
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More description

This is Part 4 of our re-released Climate and Energy series!  We are on a break right now, but there is always great geoscience information to learn about!

Today we get to talk about something really relevant to our everyday lives, and the future - Geothermal Energy!

Geothermal Energy is a term that means a few different things, but it all relies on the Earth being somewhat hot.  So, before we dive into the question of what Geothermal Energy is, we need to figure out why the Earth is hot!

The Earth produces a ton of heat, which is really important to understand how our planet operates over long times (remember plate tectonics??).  The heat comes from several sources, and some of it is left over from when the Earth formed - so some of the geothermal energy is tapping into 4.5 billion-year-old heat!

Geothermal energy takes two major forms: 1) passive geothermal heat pumps, often used in residential houses like Jesse's and 2) more active geothermal power plants that use lots of heat from the Earth!

As usual, follow us on social media and let us know what you think by sending us an email!



 
——————————————————
Instagram: @planetgeocast
Twitter: @planetgeocast
Facebook: @planetgeocast 
Youtube: https://www.youtube.com/channel/UCJ_A82nOMu0nIvZto6zMPqg
Email: planetgeocast@gmail.com
Website: https://planetgeocast.buzzsprout.com/

Download the CampGeo app now at this link.

On the app you can get tons of free content, exclusive images, and access to our Geology of National Parks series.
You can also learn the basics of geology at the college level in our FREE CampGeo content series - get learning now!

Like, Subscribe, and leave us a Rating!

——————————————————
Instagram: @planetgeocast
Twitter: @planetgeocast
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Email: planetgeocast@gmail.com
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This is Part III of our re-released Climate and Energy series!  We are on a break right now, but there is always great geoscience information to learn about! 

Did you know that nuclear fission reactions are natural?  Uranium fission drives many types of nuclear power plants as well as nuclear weapons.  However, these types of reactions occurred on Earth naturally, just billions of years ago.  Today, we discuss the Oklo natural fission reactors in Gabon, Africa.  

These natural reactors are not only amazingly cool, but they have a really interesting discovery story and they can teach us a lot about the overlap between nuclear physics and geoscience, how uranium deposits form, and what Earth's ancient atmosphere looked like! 

These are important for several reasons:

  1. Geology and nuclear physics have a very intimate relationship. 
    1. Basically all radiometric dating we use on Earth was developed on the back of research on Uranium nuclear physics and research into nuclear weapons/reactors. 
  2. Geoscience and national security are intimately related: 
    1. Nuclear forensics, or using isotope analyses to look for people enriching uranium, use the same techniques and instruments as geochronology
    2. Many PhD geoscientists go to work in national security labs/jobs
  3. These natural nuclear reactors help us explain Earth’s history and where Uranium deposits occur.  


Another cool feature of these ancient nuclear reactors is that they may have looked much like geysers in Yellowstone National Park!  They were moderated by natural groundwater, and they cycled on and off in ~30 minute cycles. 

All told, these natural nuclear reactors are one of the single coolest geoscience factoid we know of! 



 
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Youtube: https://www.youtube.com/channel/UCJ_A82nOMu0nIvZto6zMPqg
Email: planetgeocast@gmail.com
Website: https://planetgeocast.buzzsprout.com/

Download the CampGeo app now at this link.

On the app you can get tons of free content, exclusive images, and access to our Geology of National Parks series.
You can also learn the basics of geology at the college level in our FREE CampGeo content series - get learning now!

Like, Subscribe, and leave us a Rating!

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More description

This is Part III of our re-released Climate and Energy series!  We are on a break right now, but there is always great geoscience information to learn about! 

Did you know that nuclear fission reactions are natural?  Uranium fission drives many types of nuclear power plants as well as nuclear weapons.  However, these types of reactions occurred on Earth naturally, just billions of years ago.  Today, we discuss the Oklo natural fission reactors in Gabon, Africa.  

These natural reactors are not only amazingly cool, but they have a really interesting discovery story and they can teach us a lot about the overlap between nuclear physics and geoscience, how uranium deposits form, and what Earth's ancient atmosphere looked like! 

These are important for several reasons:

  1. Geology and nuclear physics have a very intimate relationship. 
    1. Basically all radiometric dating we use on Earth was developed on the back of research on Uranium nuclear physics and research into nuclear weapons/reactors. 
  2. Geoscience and national security are intimately related: 
    1. Nuclear forensics, or using isotope analyses to look for people enriching uranium, use the same techniques and instruments as geochronology
    2. Many PhD geoscientists go to work in national security labs/jobs
  3. These natural nuclear reactors help us explain Earth’s history and where Uranium deposits occur.  


Another cool feature of these ancient nuclear reactors is that they may have looked much like geysers in Yellowstone National Park!  They were moderated by natural groundwater, and they cycled on and off in ~30 minute cycles. 

All told, these natural nuclear reactors are one of the single coolest geoscience factoid we know of! 



 
——————————————————
Instagram: @planetgeocast
Twitter: @planetgeocast
Facebook: @planetgeocast 
Youtube: https://www.youtube.com/channel/UCJ_A82nOMu0nIvZto6zMPqg
Email: planetgeocast@gmail.com
Website: https://planetgeocast.buzzsprout.com/

Download the CampGeo app now at this link.

On the app you can get tons of free content, exclusive images, and access to our Geology of National Parks series.
You can also learn the basics of geology at the college level in our FREE CampGeo content series - get learning now!

Like, Subscribe, and leave us a Rating!

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Instagram: @planetgeocast
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Join us as we re-release of our favorite interviews that we have done, with one of the truly great climate scientists and communicators, Professor Michael Mann!

Michael Mann, Distinguished Professor at The Pennsylvania State University, has a long history of studying and discussion climate change.  His new book, titled The New Climate War, is out now!

In this episode we interview Mike about his journey in academia, what the new climate war is all about, and what he sees as the best path towards solutions.  We discuss how last climate war has ended, what we all can do to fix the problem, and how Dr. Mann sees the future working out.

Remember to leave us a rating and a review, and share PlanetGeo with your friends! Follow us on all the social medias @planetgeocast.

Dr. Michael E. Mann received his undergraduate degrees in Physics and Applied Math from the University of California at Berkeley, an M.S. degree in Physics from Yale University, and a Ph.D. in Geology & Geophysics from Yale University.

Dr. Mann was a Lead Author on the Observed Climate Variability and Change chapter of the Intergovernmental Panel on Climate Change (IPCC) Third Scientific Assessment Report in 2001 and was organizing committee chair for the National Academy of Sciences Frontiers of Science in 2003. He has received a number of honors and awards including NOAA's outstanding publication award in 2002 and selection by Scientific American as one of the fifty leading visionaries in science and technology in 2002. He contributed, with other IPCC authors, to the award of the 2007 Nobel Peace Prize. He was awarded the Hans Oeschger Medal of the European Geosciences Union in 2012 and was awarded the National Conservation Achievement Award for science by the National Wildlife Federation in 2013. He made Bloomberg News' list of fifty most influential people in 2013.  In 2014, he was named Highly Cited Researcher by the Institute for Scientific Information (ISI) and received the Friend of the Planet Award from the National Center for Science Education. He received the Stephen H. Schneider Award for Outstanding Climate Science Communication from Climate One in 2017, the Award for Public Engagement with Science from the American Association for the Advancement of Science in 2018 and the Climate Communication Prize from the American Geophysical Union in 2018. In 2019 he received the Tyler Prize for Environmental Achievement and in 2020 he received the World Sustainability Award of the MDPI Sustainability Foundation. He was elected to the U.S. National Academy of Sciences in 2020. He is a Fellow of the American Geophysical Union, the American Meteorological Society, the Geological Society of America, the American Association for the Advancement of Science, and the Committee for Skeptical Inquiry. He is also a co-founder of the award-winning science website RealClimate.org.


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On the app you can get tons of free content, exclusive images, and access to our Geology of National Parks series.
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Join us as we re-release of our favorite interviews that we have done, with one of the truly great climate scientists and communicators, Professor Michael Mann!

Michael Mann, Distinguished Professor at The Pennsylvania State University, has a long history of studying and discussion climate change.  His new book, titled The New Climate War, is out now!

In this episode we interview Mike about his journey in academia, what the new climate war is all about, and what he sees as the best path towards solutions.  We discuss how last climate war has ended, what we all can do to fix the problem, and how Dr. Mann sees the future working out.

Remember to leave us a rating and a review, and share PlanetGeo with your friends! Follow us on all the social medias @planetgeocast.

Dr. Michael E. Mann received his undergraduate degrees in Physics and Applied Math from the University of California at Berkeley, an M.S. degree in Physics from Yale University, and a Ph.D. in Geology & Geophysics from Yale University.

Dr. Mann was a Lead Author on the Observed Climate Variability and Change chapter of the Intergovernmental Panel on Climate Change (IPCC) Third Scientific Assessment Report in 2001 and was organizing committee chair for the National Academy of Sciences Frontiers of Science in 2003. He has received a number of honors and awards including NOAA's outstanding publication award in 2002 and selection by Scientific American as one of the fifty leading visionaries in science and technology in 2002. He contributed, with other IPCC authors, to the award of the 2007 Nobel Peace Prize. He was awarded the Hans Oeschger Medal of the European Geosciences Union in 2012 and was awarded the National Conservation Achievement Award for science by the National Wildlife Federation in 2013. He made Bloomberg News' list of fifty most influential people in 2013.  In 2014, he was named Highly Cited Researcher by the Institute for Scientific Information (ISI) and received the Friend of the Planet Award from the National Center for Science Education. He received the Stephen H. Schneider Award for Outstanding Climate Science Communication from Climate One in 2017, the Award for Public Engagement with Science from the American Association for the Advancement of Science in 2018 and the Climate Communication Prize from the American Geophysical Union in 2018. In 2019 he received the Tyler Prize for Environmental Achievement and in 2020 he received the World Sustainability Award of the MDPI Sustainability Foundation. He was elected to the U.S. National Academy of Sciences in 2020. He is a Fellow of the American Geophysical Union, the American Meteorological Society, the Geological Society of America, the American Association for the Advancement of Science, and the Committee for Skeptical Inquiry. He is also a co-founder of the award-winning science website RealClimate.org.


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Download the CampGeo app now at this link.

On the app you can get tons of free content, exclusive images, and access to our Geology of National Parks series.
You can also learn the basics of geology at the college level in our FREE CampGeo content series - get learning now!

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Join us as we discuss the science behind the greenhouse effect and how it all works.

This is a re-release of a much earlier episode.  As we take a SHORT break, we decided to release a theme of episodes surrounding Energy and Climate.  They are in the news often right now, especially with the COP26 conference.  This past fall, we have rising energy costs, wild fires, devastating hurricanes, etc.  Energy and climate is on our minds.

In this episode, we talk about the forgotten history of the greenhouse gases.  The science behind greenhouse gases like carbon dioxide and water is 200 years old.   What we began to understand two centuries ago came long before humans had any impact on the composition of our atmosphere and it certainly never occurred to Joseph Fourier and John Tyndall that humans could ever influence the greenhouse effect.  The discussion then turns to what scientists know about the greenhouse effect and, more precisely, how it works.  This natural phenomenon is a good thing as it makes our planet habitable by keeping it warm and preventing the oceans from freezing.  

We then turn our attention to the chemistry of burning fossil fuels using coal, natural gas, and gasoline as examples.  The main gases produced by burning fossil fuels are carbon dioxide and water.  We use this knowledge to talk about the carbon cycle.  By following Carbon atoms as they make their way through the atmosphere, geosphere, hydrosphere, and biosphere, we can clearly identify a Carbon cycle.  Specifically, we discuss a long carbon cycle (can take 100,000's of years for this cycle) and a fast Carbon cycle (years or even seasons).  Through this part of our discussion, we have only discussed what science has established as fact.  The greenhouse effect, the gases involved, and the ways Earth regulates Carbon in cycles is a good thing for our planet.  We can't help but point out that through continued Carbon emissions, humans will upset this balance.  In fact, we have a nearby example in Venus as a case study of a runaway greenhouse effect.  

We hope you enjoy this episode.  We sure had fun making it.  Cheers!

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Download the CampGeo app now at this link.

On the app you can get tons of free content, exclusive images, and access to our Geology of National Parks series.
You can also learn the basics of geology at the college level in our FREE CampGeo content series - get learning now!

Like, Subscribe, and leave us a Rating!

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Join us as we discuss the science behind the greenhouse effect and how it all works.

This is a re-release of a much earlier episode.  As we take a SHORT break, we decided to release a theme of episodes surrounding Energy and Climate.  They are in the news often right now, especially with the COP26 conference.  This past fall, we have rising energy costs, wild fires, devastating hurricanes, etc.  Energy and climate is on our minds.

In this episode, we talk about the forgotten history of the greenhouse gases.  The science behind greenhouse gases like carbon dioxide and water is 200 years old.   What we began to understand two centuries ago came long before humans had any impact on the composition of our atmosphere and it certainly never occurred to Joseph Fourier and John Tyndall that humans could ever influence the greenhouse effect.  The discussion then turns to what scientists know about the greenhouse effect and, more precisely, how it works.  This natural phenomenon is a good thing as it makes our planet habitable by keeping it warm and preventing the oceans from freezing.  

We then turn our attention to the chemistry of burning fossil fuels using coal, natural gas, and gasoline as examples.  The main gases produced by burning fossil fuels are carbon dioxide and water.  We use this knowledge to talk about the carbon cycle.  By following Carbon atoms as they make their way through the atmosphere, geosphere, hydrosphere, and biosphere, we can clearly identify a Carbon cycle.  Specifically, we discuss a long carbon cycle (can take 100,000's of years for this cycle) and a fast Carbon cycle (years or even seasons).  Through this part of our discussion, we have only discussed what science has established as fact.  The greenhouse effect, the gases involved, and the ways Earth regulates Carbon in cycles is a good thing for our planet.  We can't help but point out that through continued Carbon emissions, humans will upset this balance.  In fact, we have a nearby example in Venus as a case study of a runaway greenhouse effect.  

We hope you enjoy this episode.  We sure had fun making it.  Cheers!

——————————————————
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Facebook: @planetgeocast
Email: planetgeocast@gmail.com
Website: https://planetgeocast.buzzsprout.com/ 


Download the CampGeo app now at this link.

On the app you can get tons of free content, exclusive images, and access to our Geology of National Parks series.
You can also learn the basics of geology at the college level in our FREE CampGeo content series - get learning now!

Like, Subscribe, and leave us a Rating!

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Please leave us a review and rating!  Follow us on all the social medias we are @planetgeocast


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Download the CampGeo app now at this link.

On the app you can get tons of free content, exclusive images, and access to our Geology of National Parks series.
You can also learn the basics of geology at the college level in our FREE CampGeo content series - get learning now!

Like, Subscribe, and leave us a Rating!

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Please leave us a review and rating!  Follow us on all the social medias we are @planetgeocast


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Email: planetgeocast@gmail.com

Download the CampGeo app now at this link.

On the app you can get tons of free content, exclusive images, and access to our Geology of National Parks series.
You can also learn the basics of geology at the college level in our FREE CampGeo content series - get learning now!

Like, Subscribe, and leave us a Rating!

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Published 2021-11-17

Yosemite National Park

44 min
View

Learn all the basics of geology in our new conversational textbook - campGEO!
Available here:
geo.campcourses.com

Today, we talk about the geology of Yosemite National Park.  Specifically, we dive into 4 different aspects:
1- What's the story behind all this granite?
2- Why do these mountains look the way they do?  Glaciers
3- What are all the cracks in the granite about?
4- Rockfall!

The formation of granite is taught in a very traditional way.  Magma intrudes deep inside the Earth and then cools slowly as the minerals grow larger.  Jesse says that's a very debatable and a hotly researched area now.  Jesse schools us on how magma is believed to cool and how we know.

Then we get into the glacial part of Yosemite.  There are so many glacial features that are perhaps more obvious here than anywhere.  We talk about U-shaped valleys, hanging valleys, horns, and aretes. 

Exfoliation is so prevalent here that it is impossible to miss.  We get into how exfoliation happens including an example that was caught on Camera - Twain Harte Rock.

Lastly, we end with a brief discussion on the prevalence of Rockfall in YNP.  There are many rockfalls - some very large that occur with a stunning frequency.

Please leave us a review and rating!  Follow us on all the social medias we are @planetgeocast


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Email: planetgeocast@gmail.com

Download the CampGeo app now at this link.

On the app you can get tons of free content, exclusive images, and access to our Geology of National Parks series.
You can also learn the basics of geology at the college level in our FREE CampGeo content series - get learning now!

Like, Subscribe, and leave us a Rating!

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More description

Learn all the basics of geology in our new conversational textbook - campGEO!
Available here:
geo.campcourses.com

Today, we talk about the geology of Yosemite National Park.  Specifically, we dive into 4 different aspects:
1- What's the story behind all this granite?
2- Why do these mountains look the way they do?  Glaciers
3- What are all the cracks in the granite about?
4- Rockfall!

The formation of granite is taught in a very traditional way.  Magma intrudes deep inside the Earth and then cools slowly as the minerals grow larger.  Jesse says that's a very debatable and a hotly researched area now.  Jesse schools us on how magma is believed to cool and how we know.

Then we get into the glacial part of Yosemite.  There are so many glacial features that are perhaps more obvious here than anywhere.  We talk about U-shaped valleys, hanging valleys, horns, and aretes. 

Exfoliation is so prevalent here that it is impossible to miss.  We get into how exfoliation happens including an example that was caught on Camera - Twain Harte Rock.

Lastly, we end with a brief discussion on the prevalence of Rockfall in YNP.  There are many rockfalls - some very large that occur with a stunning frequency.

Please leave us a review and rating!  Follow us on all the social medias we are @planetgeocast


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Website: https://planetgeocast.com
Instagram: @planetgeocast
Twitter: @planetgeocast
Facebook: @planetgeocast
Email: planetgeocast@gmail.com

Download the CampGeo app now at this link.

On the app you can get tons of free content, exclusive images, and access to our Geology of National Parks series.
You can also learn the basics of geology at the college level in our FREE CampGeo content series - get learning now!

Like, Subscribe, and leave us a Rating!

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Published 2021-11-11

Can Aliens See Us? Dr. Jackie Faherty

34 min
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Astronomers can detect other planets orbiting around stars in the sky.  But, can those planets see us?  That's the question, and Dr. Jackie Faherty has answers!  This conversation is based on a paper that Dr. Faherty coauthored recently, found here.   

We interviewed Dr. Jackie Faherty about it!  You can follow Dr. Faherty on Twitter and visit her website to learn more!

Please leave us a review and rating!  Follow us on all the social medias we are @planetgeocast


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Twitter: @planetgeocast
Facebook: @planetgeocast
Email: planetgeocast@gmail.com

Download the CampGeo app now at this link.

On the app you can get tons of free content, exclusive images, and access to our Geology of National Parks series.
You can also learn the basics of geology at the college level in our FREE CampGeo content series - get learning now!

Like, Subscribe, and leave us a Rating!

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Astronomers can detect other planets orbiting around stars in the sky.  But, can those planets see us?  That's the question, and Dr. Jackie Faherty has answers!  This conversation is based on a paper that Dr. Faherty coauthored recently, found here.   

We interviewed Dr. Jackie Faherty about it!  You can follow Dr. Faherty on Twitter and visit her website to learn more!

Please leave us a review and rating!  Follow us on all the social medias we are @planetgeocast


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Website: https://planetgeocast.com
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Email: planetgeocast@gmail.com

Download the CampGeo app now at this link.

On the app you can get tons of free content, exclusive images, and access to our Geology of National Parks series.
You can also learn the basics of geology at the college level in our FREE CampGeo content series - get learning now!

Like, Subscribe, and leave us a Rating!

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Have you heard of Manhattan-Henge?  It's a totally cool phenomenon that occurs in The Big Apple every spring and summer.

We interviewed Dr. Jackie Faherty about it!  You can follow Dr. Faherty on Twitter and visit her website to learn more!

Please leave us a review and rating!  Follow us on all the social medias we are @planetgeocast


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Website: https://planetgeocast.com
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Email: planetgeocast@gmail.com

Download the CampGeo app now at this link.

On the app you can get tons of free content, exclusive images, and access to our Geology of National Parks series.
You can also learn the basics of geology at the college level in our FREE CampGeo content series - get learning now!

Like, Subscribe, and leave us a Rating!

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More description

Have you heard of Manhattan-Henge?  It's a totally cool phenomenon that occurs in The Big Apple every spring and summer.

We interviewed Dr. Jackie Faherty about it!  You can follow Dr. Faherty on Twitter and visit her website to learn more!

Please leave us a review and rating!  Follow us on all the social medias we are @planetgeocast


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Website: https://planetgeocast.com
Instagram: @planetgeocast
Twitter: @planetgeocast
Facebook: @planetgeocast
Email: planetgeocast@gmail.com

Download the CampGeo app now at this link.

On the app you can get tons of free content, exclusive images, and access to our Geology of National Parks series.
You can also learn the basics of geology at the college level in our FREE CampGeo content series - get learning now!

Like, Subscribe, and leave us a Rating!

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Published 2021-10-28

What's in a Name? Volcano Edition

50 min
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In this episode, we discuss the categories - or different types of volcanoes in the world.  We begin by discussing how the traditional categories, as found in most textbooks, are not adequate.  There are too many exceptions to the rules.  So we begin by discussing the typical 3 - Shield, stratovolcanoes, and cinder cones.  Then, we expand the categories to include rhyolite caldera complexes (often called supervolcanoes), monogenetic fields, flood basalts, and mid-ocean ridge systems.  Even with this expanded category list, not all volcanoes fit nicely.  Each volcano is its' own snowflake.

With volcanoes, there are exceptions to our categories and some will fall into more than one category.  Many students get confused by this because the 3 category system doesn’t allow for exceptions.  I think this is Ok, but only if they’re taught that exceptions definitely exist - OR - let’s be more extensive with our categories.  To be honest, I’m bothered by the exclusivity of the “3” type system.  AND, even with a more extensive category list, there are exceptions and students need to know this is OK.

With each type, we discuss it's geomorphology, the eruptive personality, the tectonic setting, and an example or tow of where they occur. 

We also spend some time discussing the plumbing system of volcanoes and how complicated this can be.  If we can begin to understand the plumbing system, then we can begin to study how magma traverses the crust.  This traverse can lead to a diversity of magma composition - even within the same volcano.  This discussion is crucial to student understanding.



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Email: planetgeocast@gmail.com

Download the CampGeo app now at this link.

On the app you can get tons of free content, exclusive images, and access to our Geology of National Parks series.
You can also learn the basics of geology at the college level in our FREE CampGeo content series - get learning now!

Like, Subscribe, and leave us a Rating!

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In this episode, we discuss the categories - or different types of volcanoes in the world.  We begin by discussing how the traditional categories, as found in most textbooks, are not adequate.  There are too many exceptions to the rules.  So we begin by discussing the typical 3 - Shield, stratovolcanoes, and cinder cones.  Then, we expand the categories to include rhyolite caldera complexes (often called supervolcanoes), monogenetic fields, flood basalts, and mid-ocean ridge systems.  Even with this expanded category list, not all volcanoes fit nicely.  Each volcano is its' own snowflake.

With volcanoes, there are exceptions to our categories and some will fall into more than one category.  Many students get confused by this because the 3 category system doesn’t allow for exceptions.  I think this is Ok, but only if they’re taught that exceptions definitely exist - OR - let’s be more extensive with our categories.  To be honest, I’m bothered by the exclusivity of the “3” type system.  AND, even with a more extensive category list, there are exceptions and students need to know this is OK.

With each type, we discuss it's geomorphology, the eruptive personality, the tectonic setting, and an example or tow of where they occur. 

We also spend some time discussing the plumbing system of volcanoes and how complicated this can be.  If we can begin to understand the plumbing system, then we can begin to study how magma traverses the crust.  This traverse can lead to a diversity of magma composition - even within the same volcano.  This discussion is crucial to student understanding.



——————————————————
Website: https://planetgeocast.com
Instagram: @planetgeocast
Twitter: @planetgeocast
Facebook: @planetgeocast
Email: planetgeocast@gmail.com

Download the CampGeo app now at this link.

On the app you can get tons of free content, exclusive images, and access to our Geology of National Parks series.
You can also learn the basics of geology at the college level in our FREE CampGeo content series - get learning now!

Like, Subscribe, and leave us a Rating!

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In this GeoShort, we discuss Mount St. Helens, one of Chris' favorite volcanoes and probably the reason he got into geoscience!  

This is the Scientific American article, written by Steve Olson, about Mount St. Helens that serves as the backbone for much of our discussion.

Mount St. Helens is a famous volcano in Washington State that erupted in 1980.  Scientists have been studying Mount St. Helens for a long time, and it is one location where magma plumbing systems are studied to try to understand how magma reaches the surface in a volcano.

Magma plumbing systems are really complicated but they control the composition of the lava as well as how explosive the volcanic eruptions are! So, this is important to understand.

As usual, follow us on social media and let us know what you think by sending us an email!


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Website: https://planetgeocast.com
Instagram: @planetgeocast
Twitter: @planetgeocast
Facebook: @planetgeocast
Email: planetgeocast@gmail.com

Download the CampGeo app now at this link.

On the app you can get tons of free content, exclusive images, and access to our Geology of National Parks series.
You can also learn the basics of geology at the college level in our FREE CampGeo content series - get learning now!

Like, Subscribe, and leave us a Rating!

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In this GeoShort, we discuss Mount St. Helens, one of Chris' favorite volcanoes and probably the reason he got into geoscience!  

This is the Scientific American article, written by Steve Olson, about Mount St. Helens that serves as the backbone for much of our discussion.

Mount St. Helens is a famous volcano in Washington State that erupted in 1980.  Scientists have been studying Mount St. Helens for a long time, and it is one location where magma plumbing systems are studied to try to understand how magma reaches the surface in a volcano.

Magma plumbing systems are really complicated but they control the composition of the lava as well as how explosive the volcanic eruptions are! So, this is important to understand.

As usual, follow us on social media and let us know what you think by sending us an email!


——————————————————
Website: https://planetgeocast.com
Instagram: @planetgeocast
Twitter: @planetgeocast
Facebook: @planetgeocast
Email: planetgeocast@gmail.com

Download the CampGeo app now at this link.

On the app you can get tons of free content, exclusive images, and access to our Geology of National Parks series.
You can also learn the basics of geology at the college level in our FREE CampGeo content series - get learning now!

Like, Subscribe, and leave us a Rating!

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Today we are talking about all things Venus!  Our host - Professor Martha Gilmore of Wesleyan University -  is a world expert on Earth's Toxic Twin planet, Venus. 

Venus is the second planet from the sun and the target for newly announced NASA Missions in the coming decade!  Venus has a super thick atmosphere that is dominated by CO2, it may or may not have continents, and studying Venus may help us understand Earth much better!  As we have covered in previous episodes of PlanetGeo, Venus is the super greenhouse planet, so it may hold lessons for climate change on our own planet.

We hope you enjoy this discussion with Professor Martha Gilmore!

As usual, follow us on social media and let us know what you think by sending us an email


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Email: planetgeocast@gmail.com


Download the CampGeo app now at this link.

On the app you can get tons of free content, exclusive images, and access to our Geology of National Parks series.
You can also learn the basics of geology at the college level in our FREE CampGeo content series - get learning now!

Like, Subscribe, and leave us a Rating!

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Today we are talking about all things Venus!  Our host - Professor Martha Gilmore of Wesleyan University -  is a world expert on Earth's Toxic Twin planet, Venus. 

Venus is the second planet from the sun and the target for newly announced NASA Missions in the coming decade!  Venus has a super thick atmosphere that is dominated by CO2, it may or may not have continents, and studying Venus may help us understand Earth much better!  As we have covered in previous episodes of PlanetGeo, Venus is the super greenhouse planet, so it may hold lessons for climate change on our own planet.

We hope you enjoy this discussion with Professor Martha Gilmore!

As usual, follow us on social media and let us know what you think by sending us an email


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Email: planetgeocast@gmail.com


Download the CampGeo app now at this link.

On the app you can get tons of free content, exclusive images, and access to our Geology of National Parks series.
You can also learn the basics of geology at the college level in our FREE CampGeo content series - get learning now!

Like, Subscribe, and leave us a Rating!

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Well, we got to interview yet another amazing geoscientist - Professor Martha Gilmore of Wesleyan University

Professor Gilmore is a world expert on Venus, the second planet from the sun and the target for newly announced NASA Missions in the coming decade!   In this preview to the full interview with Dr. Gilmore, we discuss how she collects data on the composition of Venus - despite the atmosphere being way waaaaayyy harder to look through than Earth's! 

As usual, follow us on social media and let us know what you think by sending us an email!


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Website: https://planetgeocast.com
Instagram: @planetgeocast
Twitter: @planetgeocast
Facebook: @planetgeocast
Email: planetgeocast@gmail.com

Download the CampGeo app now at this link.

On the app you can get tons of free content, exclusive images, and access to our Geology of National Parks series.
You can also learn the basics of geology at the college level in our FREE CampGeo content series - get learning now!

Like, Subscribe, and leave us a Rating!

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More description

Well, we got to interview yet another amazing geoscientist - Professor Martha Gilmore of Wesleyan University

Professor Gilmore is a world expert on Venus, the second planet from the sun and the target for newly announced NASA Missions in the coming decade!   In this preview to the full interview with Dr. Gilmore, we discuss how she collects data on the composition of Venus - despite the atmosphere being way waaaaayyy harder to look through than Earth's! 

As usual, follow us on social media and let us know what you think by sending us an email!


——————————————————
Website: https://planetgeocast.com
Instagram: @planetgeocast
Twitter: @planetgeocast
Facebook: @planetgeocast
Email: planetgeocast@gmail.com

Download the CampGeo app now at this link.

On the app you can get tons of free content, exclusive images, and access to our Geology of National Parks series.
You can also learn the basics of geology at the college level in our FREE CampGeo content series - get learning now!

Like, Subscribe, and leave us a Rating!

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Published 2021-09-30

Geothermal Energy - The Basics

33 min
View

Learn all the basics of geology in our new conversational textbook - campGEO!
Available here:
geo.campcourses.com

Today we get to talk about something really relevant to our everyday lives, and the future - Geothermal Energy!

Geothermal Energy is a term that means a few different things, but it all relies on the Earth being somewhat hot.  So, before we dive into the question of what Geothermal Energy is, we need to figure out why the Earth is hot! 

The Earth produces a ton of heat, which is really important to understand how our planet operates over long times (remember plate tectonics??).  The heat comes from several sources, and some of it is left over from when the Earth formed - so some of the geothermal energy is tapping into 4.5 billion-year-old heat!

Geothermal energy takes two major forms: 1) passive geothermal heat pumps, often used in residential houses like Jesse's and 2) more active geothermal power plants that use lots of heat from the Earth!

As usual, follow us on social media and let us know what you think by sending us an email!


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Facebook: @planetgeocast
Email: planetgeocast@gmail.com

Download the CampGeo app now at this link.

On the app you can get tons of free content, exclusive images, and access to our Geology of National Parks series.
You can also learn the basics of geology at the college level in our FREE CampGeo content series - get learning now!

Like, Subscribe, and leave us a Rating!

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Learn all the basics of geology in our new conversational textbook - campGEO!
Available here:
geo.campcourses.com

Today we get to talk about something really relevant to our everyday lives, and the future - Geothermal Energy!

Geothermal Energy is a term that means a few different things, but it all relies on the Earth being somewhat hot.  So, before we dive into the question of what Geothermal Energy is, we need to figure out why the Earth is hot! 

The Earth produces a ton of heat, which is really important to understand how our planet operates over long times (remember plate tectonics??).  The heat comes from several sources, and some of it is left over from when the Earth formed - so some of the geothermal energy is tapping into 4.5 billion-year-old heat!

Geothermal energy takes two major forms: 1) passive geothermal heat pumps, often used in residential houses like Jesse's and 2) more active geothermal power plants that use lots of heat from the Earth!

As usual, follow us on social media and let us know what you think by sending us an email!


——————————————————
Website: https://planetgeocast.com
Instagram: @planetgeocast
Twitter: @planetgeocast
Facebook: @planetgeocast
Email: planetgeocast@gmail.com

Download the CampGeo app now at this link.

On the app you can get tons of free content, exclusive images, and access to our Geology of National Parks series.
You can also learn the basics of geology at the college level in our FREE CampGeo content series - get learning now!

Like, Subscribe, and leave us a Rating!

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Published 2021-09-23

Common Misconceptions Part I (GeoShort)

25 min
View

There are so many misconceptions out there! 

In this Geoshort episode, Jesse interviews Chris about common Geoscience misconceptions that students have regarding our planet.  Jesse is pulling the questions from a list of over 500 misconceptions (link here).   Chris has not been given any clues to the questions he's being asked and nothing was discussed prior to recording - join us for a fun off-the-cuff conversation! 

Many of the misconceptions deal with the interior of the Earth and plate tectonic related topics.  That said, they really span a lot of the material from a typical introductory level geoscience course.  Join us in this fun episode and see if you have or have come across the same misconceptions.  Also, we welcome suggestions that we missed on this episode as we plan to revisit this at a later time!



——————————————————
Website: https://planetgeocast.com
Instagram: @planetgeocast
Twitter: @planetgeocast
Facebook: @planetgeocast
Email: planetgeocast@gmail.com

Download the CampGeo app now at this link.

On the app you can get tons of free content, exclusive images, and access to our Geology of National Parks series.
You can also learn the basics of geology at the college level in our FREE CampGeo content series - get learning now!

Like, Subscribe, and leave us a Rating!

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More description

There are so many misconceptions out there! 

In this Geoshort episode, Jesse interviews Chris about common Geoscience misconceptions that students have regarding our planet.  Jesse is pulling the questions from a list of over 500 misconceptions (link here).   Chris has not been given any clues to the questions he's being asked and nothing was discussed prior to recording - join us for a fun off-the-cuff conversation! 

Many of the misconceptions deal with the interior of the Earth and plate tectonic related topics.  That said, they really span a lot of the material from a typical introductory level geoscience course.  Join us in this fun episode and see if you have or have come across the same misconceptions.  Also, we welcome suggestions that we missed on this episode as we plan to revisit this at a later time!



——————————————————
Website: https://planetgeocast.com
Instagram: @planetgeocast
Twitter: @planetgeocast
Facebook: @planetgeocast
Email: planetgeocast@gmail.com

Download the CampGeo app now at this link.

On the app you can get tons of free content, exclusive images, and access to our Geology of National Parks series.
You can also learn the basics of geology at the college level in our FREE CampGeo content series - get learning now!

Like, Subscribe, and leave us a Rating!

——————————————————
Instagram: @planetgeocast
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This week is a really special one!  We had the great pleasure of interviewing Dr. Gabriela Farfan, the Coralyn W. Whitney Curator of Gems and Minerals at the Smithsonian Natural History Museum, the United States National Museum.

Dr. Farfan is a world expert on gems and minerals, and we cover a lot! Everything from a personal look at how Dr. Farfan got into geology and minerals, the future of mineralogy as a field and in education, and why studying the mineralogy of modern corals is important!  Her research is looking at how carbonate growing organisms are adapting to our changing oceans - particularly ocean acidification. 

The field of mineralogy as a stand alone study is dwindling.  Dr. Farfan has a great explanation as to why the study of mineralogy is important and why geology programs should keep it included. 

Go back to last week's GeoShort to learn how the Smithsonian Museum gets its minerals and gems!

——————————————————
Website: https://planetgeocast.com
Instagram: @planetgeocast
Twitter: @planetgeocast
Facebook: @planetgeocast
Email: planetgeocast@gmail.com

Download the CampGeo app now at this link.

On the app you can get tons of free content, exclusive images, and access to our Geology of National Parks series.
You can also learn the basics of geology at the college level in our FREE CampGeo content series - get learning now!

Like, Subscribe, and leave us a Rating!

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This week is a really special one!  We had the great pleasure of interviewing Dr. Gabriela Farfan, the Coralyn W. Whitney Curator of Gems and Minerals at the Smithsonian Natural History Museum, the United States National Museum.

Dr. Farfan is a world expert on gems and minerals, and we cover a lot! Everything from a personal look at how Dr. Farfan got into geology and minerals, the future of mineralogy as a field and in education, and why studying the mineralogy of modern corals is important!  Her research is looking at how carbonate growing organisms are adapting to our changing oceans - particularly ocean acidification. 

The field of mineralogy as a stand alone study is dwindling.  Dr. Farfan has a great explanation as to why the study of mineralogy is important and why geology programs should keep it included. 

Go back to last week's GeoShort to learn how the Smithsonian Museum gets its minerals and gems!

——————————————————
Website: https://planetgeocast.com
Instagram: @planetgeocast
Twitter: @planetgeocast
Facebook: @planetgeocast
Email: planetgeocast@gmail.com

Download the CampGeo app now at this link.

On the app you can get tons of free content, exclusive images, and access to our Geology of National Parks series.
You can also learn the basics of geology at the college level in our FREE CampGeo content series - get learning now!

Like, Subscribe, and leave us a Rating!

——————————————————
Instagram: @planetgeocast
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This week is a really special one!  We had the great pleasure of interviewing Dr. Gabriela Farfan, the Coralyn W. Whitney Curator of Gems and Minerals at the Smithsonian Natural History Museum, the United States National Museum.

Dr. Farfan is a world expert on gems and minerals, and the full interview (out next week) covers everything minerals! 

In this GeoShort, Dr. Farfan tells us some amazing facts about how the Smithsonian Museum actually goes about obtaining the beautiful minerals and gemstones that you can see in the galleries.

Tune in next week for the full episode!

——————————————————
Website: https://planetgeocast.com
Instagram: @planetgeocast
Twitter: @planetgeocast
Facebook: @planetgeocast
Email: planetgeocast@gmail.com

Download the CampGeo app now at this link.

On the app you can get tons of free content, exclusive images, and access to our Geology of National Parks series.
You can also learn the basics of geology at the college level in our FREE CampGeo content series - get learning now!

Like, Subscribe, and leave us a Rating!

——————————————————
Instagram: @planetgeocast
Twitter: @planetgeocast
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Support us: https://planetgeocast.com/support-us
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This week is a really special one!  We had the great pleasure of interviewing Dr. Gabriela Farfan, the Coralyn W. Whitney Curator of Gems and Minerals at the Smithsonian Natural History Museum, the United States National Museum.

Dr. Farfan is a world expert on gems and minerals, and the full interview (out next week) covers everything minerals! 

In this GeoShort, Dr. Farfan tells us some amazing facts about how the Smithsonian Museum actually goes about obtaining the beautiful minerals and gemstones that you can see in the galleries.

Tune in next week for the full episode!

——————————————————
Website: https://planetgeocast.com
Instagram: @planetgeocast
Twitter: @planetgeocast
Facebook: @planetgeocast
Email: planetgeocast@gmail.com

Download the CampGeo app now at this link.

On the app you can get tons of free content, exclusive images, and access to our Geology of National Parks series.
You can also learn the basics of geology at the college level in our FREE CampGeo content series - get learning now!

Like, Subscribe, and leave us a Rating!

——————————————————
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Curious about how Geoscience goes into the future?  Have you ever wondered what causes tsunamis? Ever thought about what it's like to be a minority in the Geosciences? 

Professor Chris Jackson has something for everyone! Join us for one of the most interesting discussions we have had on PlanetGEO!

Professor Jackson is an incredible communicator, scientist, and steward of Geoscience.  Follow him on Twitter or on his many other public talks!  Also, stay tuned for Prof. Jackson's upcoming podcast series called An Adult's Guide to the Earth! 


——————————————————
Website: https://planetgeocast.com
Instagram: @planetgeocast
Twitter: @planetgeocast
Facebook: @planetgeocast
Email: planetgeocast@gmail.com

Download the CampGeo app now at this link.

On the app you can get tons of free content, exclusive images, and access to our Geology of National Parks series.
You can also learn the basics of geology at the college level in our FREE CampGeo content series - get learning now!

Like, Subscribe, and leave us a Rating!

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Curious about how Geoscience goes into the future?  Have you ever wondered what causes tsunamis? Ever thought about what it's like to be a minority in the Geosciences? 

Professor Chris Jackson has something for everyone! Join us for one of the most interesting discussions we have had on PlanetGEO!

Professor Jackson is an incredible communicator, scientist, and steward of Geoscience.  Follow him on Twitter or on his many other public talks!  Also, stay tuned for Prof. Jackson's upcoming podcast series called An Adult's Guide to the Earth! 


——————————————————
Website: https://planetgeocast.com
Instagram: @planetgeocast
Twitter: @planetgeocast
Facebook: @planetgeocast
Email: planetgeocast@gmail.com

Download the CampGeo app now at this link.

On the app you can get tons of free content, exclusive images, and access to our Geology of National Parks series.
You can also learn the basics of geology at the college level in our FREE CampGeo content series - get learning now!

Like, Subscribe, and leave us a Rating!

——————————————————
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This week we have an amazing guest!  Professor Chris Jackson joins us for a short discussion on Sustainable Geoscience, what it means to him, and where he sees the future of Geoscience going.

Professor Jackson is an incredible communicator and has so many insightful thoughts that they wouldn't all fit into one single episode.  So, join us next week for the full interview and until then enjoy this discussion with one of the great scientists and communicators in our field!


——————————————————
Website: https://planetgeocast.com
Instagram: @planetgeocast
Twitter: @planetgeocast
Facebook: @planetgeocast
Email: planetgeocast@gmail.com

Download the CampGeo app now at this link.

On the app you can get tons of free content, exclusive images, and access to our Geology of National Parks series.
You can also learn the basics of geology at the college level in our FREE CampGeo content series - get learning now!

Like, Subscribe, and leave us a Rating!

——————————————————
Instagram: @planetgeocast
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Support us: https://planetgeocast.com/support-us
Email: planetgeocast@gmail.com
Website: https://planetgeocast.com/

More description

This week we have an amazing guest!  Professor Chris Jackson joins us for a short discussion on Sustainable Geoscience, what it means to him, and where he sees the future of Geoscience going.

Professor Jackson is an incredible communicator and has so many insightful thoughts that they wouldn't all fit into one single episode.  So, join us next week for the full interview and until then enjoy this discussion with one of the great scientists and communicators in our field!


——————————————————
Website: https://planetgeocast.com
Instagram: @planetgeocast
Twitter: @planetgeocast
Facebook: @planetgeocast
Email: planetgeocast@gmail.com

Download the CampGeo app now at this link.

On the app you can get tons of free content, exclusive images, and access to our Geology of National Parks series.
You can also learn the basics of geology at the college level in our FREE CampGeo content series - get learning now!

Like, Subscribe, and leave us a Rating!

——————————————————
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Email: planetgeocast@gmail.com
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Join us for a free-ranging conversation on how Geoscience Research happens (in one lab group at least)! 

Today we talk about a mass spectrometer design project that Jesse is working on, how scientists typically need to fix and modify their own instruments to get them working perfectly, and touch on how scientific inquiry can be better taught to students!

We also describe the basics of a mass spectrometer, the device that has allowed geoscientists to determine the age of the Earth, the rates of plate tectonics, and even determine when supercontinents existed back in time!

——————————————————
Website: https://planetgeocast.com
Instagram: @planetgeocast
Twitter: @planetgeocast
Facebook: @planetgeocast
Email: planetgeocast@gmail.com

Download the CampGeo app now at this link.

On the app you can get tons of free content, exclusive images, and access to our Geology of National Parks series.
You can also learn the basics of geology at the college level in our FREE CampGeo content series - get learning now!

Like, Subscribe, and leave us a Rating!

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Email: planetgeocast@gmail.com
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More description

Join us for a free-ranging conversation on how Geoscience Research happens (in one lab group at least)! 

Today we talk about a mass spectrometer design project that Jesse is working on, how scientists typically need to fix and modify their own instruments to get them working perfectly, and touch on how scientific inquiry can be better taught to students!

We also describe the basics of a mass spectrometer, the device that has allowed geoscientists to determine the age of the Earth, the rates of plate tectonics, and even determine when supercontinents existed back in time!

——————————————————
Website: https://planetgeocast.com
Instagram: @planetgeocast
Twitter: @planetgeocast
Facebook: @planetgeocast
Email: planetgeocast@gmail.com

Download the CampGeo app now at this link.

On the app you can get tons of free content, exclusive images, and access to our Geology of National Parks series.
You can also learn the basics of geology at the college level in our FREE CampGeo content series - get learning now!

Like, Subscribe, and leave us a Rating!

——————————————————
Instagram: @planetgeocast
Twitter: @planetgeocast
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Email: planetgeocast@gmail.com
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Published 2021-08-12

Are Continents Growing? (Geoshort)

21 min
View

This is a GeoShort followup discussion based on our previous Episode on the origins of continents and Bowen's reaction series!  While Bowen's reaction series explains many things — like why is Hawaii different from Yellowstone? — it makes some very interesting predictions!

Chris wonders, does the distillation of continents during Bowen's Reaction Series mean that continents are always growing?  In other words, when water gets driven off a subducting slab, it generates magma that is chemically similar to continental crust.  Since subduction is so common, the continents must be growing over geologic time.  And, this opens up a large discussion with very few answers.  Jesse offers up two theories on how continents get destroyed over time.   Listen today and follow us on social media and our new webpage!

——————————————————
Website: https://planetgeocast.com
Instagram: @planetgeocast
Twitter: @planetgeocast
Facebook: @planetgeocast
Email: planetgeocast@gmail.com

Download the CampGeo app now at this link.

On the app you can get tons of free content, exclusive images, and access to our Geology of National Parks series.
You can also learn the basics of geology at the college level in our FREE CampGeo content series - get learning now!

Like, Subscribe, and leave us a Rating!

——————————————————
Instagram: @planetgeocast
Twitter: @planetgeocast
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Support us: https://planetgeocast.com/support-us
Email: planetgeocast@gmail.com
Website: https://planetgeocast.com/

More description

This is a GeoShort followup discussion based on our previous Episode on the origins of continents and Bowen's reaction series!  While Bowen's reaction series explains many things — like why is Hawaii different from Yellowstone? — it makes some very interesting predictions!

Chris wonders, does the distillation of continents during Bowen's Reaction Series mean that continents are always growing?  In other words, when water gets driven off a subducting slab, it generates magma that is chemically similar to continental crust.  Since subduction is so common, the continents must be growing over geologic time.  And, this opens up a large discussion with very few answers.  Jesse offers up two theories on how continents get destroyed over time.   Listen today and follow us on social media and our new webpage!

——————————————————
Website: https://planetgeocast.com
Instagram: @planetgeocast
Twitter: @planetgeocast
Facebook: @planetgeocast
Email: planetgeocast@gmail.com

Download the CampGeo app now at this link.

On the app you can get tons of free content, exclusive images, and access to our Geology of National Parks series.
You can also learn the basics of geology at the college level in our FREE CampGeo content series - get learning now!

Like, Subscribe, and leave us a Rating!

——————————————————
Instagram: @planetgeocast
Twitter: @planetgeocast
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Support us: https://planetgeocast.com/support-us
Email: planetgeocast@gmail.com
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In this episode, we discuss a fundamental principle in geology: Bowen's Reaction Series.  This concept is taught in every introductory geology class as it provides answers to important questions such as why continents exist on Earth.  

Bowens Reaction explains the relationship between certain minerals and the temperatures in which they form.  He found that some minerals are commonly found together in igneous rocks while other minerals are excluded.  In short, Bowens Reaction lays out an order in which minerals form as magma cools and also an order in which they melt as rocks are heated.  

Also, knowing that minerals are most stable in the conditions in which they form, Bowens Reaction Series also explains mineral stability at the surface of Earth.


——————————————————
Website: https://planetgeocast.com
Instagram: @planetgeocast
Twitter: @planetgeocast
Facebook: @planetgeocast
Email: planetgeocast@gmail.com

Download the CampGeo app now at this link.

On the app you can get tons of free content, exclusive images, and access to our Geology of National Parks series.
You can also learn the basics of geology at the college level in our FREE CampGeo content series - get learning now!

Like, Subscribe, and leave us a Rating!

——————————————————
Instagram: @planetgeocast
Twitter: @planetgeocast
Facebook: @planetgeocast
Support us: https://planetgeocast.com/support-us
Email: planetgeocast@gmail.com
Website: https://planetgeocast.com/

More description

In this episode, we discuss a fundamental principle in geology: Bowen's Reaction Series.  This concept is taught in every introductory geology class as it provides answers to important questions such as why continents exist on Earth.  

Bowens Reaction explains the relationship between certain minerals and the temperatures in which they form.  He found that some minerals are commonly found together in igneous rocks while other minerals are excluded.  In short, Bowens Reaction lays out an order in which minerals form as magma cools and also an order in which they melt as rocks are heated.  

Also, knowing that minerals are most stable in the conditions in which they form, Bowens Reaction Series also explains mineral stability at the surface of Earth.


——————————————————
Website: https://planetgeocast.com
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On the app you can get tons of free content, exclusive images, and access to our Geology of National Parks series.
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For some background listen to our previous episode on hard water and why oceans are salty!

Join us on this GeoShort as we discuss the Great Salt Lake, which is going through a period of very, VERY low water levels.   The average depth of the Great Salt Lake in Utah is now only 2.4 inches, or 5 cm!  This low water level is mostly caused by the drought in the SouthWestern US, and impacts communities around the Great Salt Lake.

In this GeoShort we discuss why salty lakes occur, which is due to the fact that water coming into the lake can only leave by evaporation.  And salt doesn't evaporate...it crystallizes.  So, when water leaves, the salt stays behind and it just keeps building up in the lake.  The particular geology of the SW United States means that there are several large rivers that feed into basins that do not feed into the ocean. 

Check out our previous episode on Hard Water to learn how salt gets into water, and why oceans are salty! Remember, although the common table salt (NaCl) is part of the 'salt' we are talking about, there are other salts out there and we geologists use the term broadly! 



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Download the CampGeo app now at this link.

On the app you can get tons of free content, exclusive images, and access to our Geology of National Parks series.
You can also learn the basics of geology at the college level in our FREE CampGeo content series - get learning now!

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More description

For some background listen to our previous episode on hard water and why oceans are salty!

Join us on this GeoShort as we discuss the Great Salt Lake, which is going through a period of very, VERY low water levels.   The average depth of the Great Salt Lake in Utah is now only 2.4 inches, or 5 cm!  This low water level is mostly caused by the drought in the SouthWestern US, and impacts communities around the Great Salt Lake.

In this GeoShort we discuss why salty lakes occur, which is due to the fact that water coming into the lake can only leave by evaporation.  And salt doesn't evaporate...it crystallizes.  So, when water leaves, the salt stays behind and it just keeps building up in the lake.  The particular geology of the SW United States means that there are several large rivers that feed into basins that do not feed into the ocean. 

Check out our previous episode on Hard Water to learn how salt gets into water, and why oceans are salty! Remember, although the common table salt (NaCl) is part of the 'salt' we are talking about, there are other salts out there and we geologists use the term broadly! 



——————————————————
Website: https://planetgeocast.com
Instagram: @planetgeocast
Twitter: @planetgeocast
Facebook: @planetgeocast
Email: planetgeocast@gmail.com

Download the CampGeo app now at this link.

On the app you can get tons of free content, exclusive images, and access to our Geology of National Parks series.
You can also learn the basics of geology at the college level in our FREE CampGeo content series - get learning now!

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Today we talk about Geysers!  And Hot Springs, Mudpots, and Fumaroles! These are extraordinary features that give any landscape a pretty dramatic look.  They are also very prevalent in Yellowstone National Park, and we give some key examples from that area.

Hydrothermal features are really important to understand and monitor.  So important that the United State Congress passed a law requiring all National Parks to monitor and document hydrothermal features!  Hydrothermal features allow us to track heat and water deep within the Earth. This is becoming more important because heat and water give us Geothermal energy systems that might be growing during the coming energy transition.

Join us for a wide ranging discussion on hydrothermal features, how they work, and what they tell us about the Earth! 

Like, Follow, and leave us a review!




 
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Download the CampGeo app now at this link.

On the app you can get tons of free content, exclusive images, and access to our Geology of National Parks series.
You can also learn the basics of geology at the college level in our FREE CampGeo content series - get learning now!

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Today we talk about Geysers!  And Hot Springs, Mudpots, and Fumaroles! These are extraordinary features that give any landscape a pretty dramatic look.  They are also very prevalent in Yellowstone National Park, and we give some key examples from that area.

Hydrothermal features are really important to understand and monitor.  So important that the United State Congress passed a law requiring all National Parks to monitor and document hydrothermal features!  Hydrothermal features allow us to track heat and water deep within the Earth. This is becoming more important because heat and water give us Geothermal energy systems that might be growing during the coming energy transition.

Join us for a wide ranging discussion on hydrothermal features, how they work, and what they tell us about the Earth! 

Like, Follow, and leave us a review!




 
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Twitter: @planetgeocast
Facebook: @planetgeocast 
Youtube: https://www.youtube.com/channel/UCJ_A82nOMu0nIvZto6zMPqg
Email: planetgeocast@gmail.com
Website: https://planetgeocast.buzzsprout.com/

Download the CampGeo app now at this link.

On the app you can get tons of free content, exclusive images, and access to our Geology of National Parks series.
You can also learn the basics of geology at the college level in our FREE CampGeo content series - get learning now!

Like, Subscribe, and leave us a Rating!

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Our GeoShort today focuses on Spherical Weathering, where normal rocks are turned into round shapes by chemical erosion.

Many rocks have cracks in them, called joints, and these joints often break the rocks up into little cubes or rectangular prisms.  Cubes and prisms have a high surface area relative to their volume, and the corners especially.

So fluids that have weak acid in them preferentially eat away at the corners, eventually turning the cube of rock into a perfect sphere!  Spheres have the lowest Surface Area/Volume of any shape, because they have no corners or edges left.  The rock just gets made into a smaller and smaller sphere then.

While spherical weathering is not a common process, it is not rare either.  So, keep an eye out when you are outside next, you may find some Spherical Weathering near you!






 
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Download the CampGeo app now at this link.

On the app you can get tons of free content, exclusive images, and access to our Geology of National Parks series.
You can also learn the basics of geology at the college level in our FREE CampGeo content series - get learning now!

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More description

Our GeoShort today focuses on Spherical Weathering, where normal rocks are turned into round shapes by chemical erosion.

Many rocks have cracks in them, called joints, and these joints often break the rocks up into little cubes or rectangular prisms.  Cubes and prisms have a high surface area relative to their volume, and the corners especially.

So fluids that have weak acid in them preferentially eat away at the corners, eventually turning the cube of rock into a perfect sphere!  Spheres have the lowest Surface Area/Volume of any shape, because they have no corners or edges left.  The rock just gets made into a smaller and smaller sphere then.

While spherical weathering is not a common process, it is not rare either.  So, keep an eye out when you are outside next, you may find some Spherical Weathering near you!






 
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Email: planetgeocast@gmail.com
Website: https://planetgeocast.buzzsprout.com/

Download the CampGeo app now at this link.

On the app you can get tons of free content, exclusive images, and access to our Geology of National Parks series.
You can also learn the basics of geology at the college level in our FREE CampGeo content series - get learning now!

Like, Subscribe, and leave us a Rating!

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Published 2021-07-08

Dammed Up Again: Streams and Dams Part Two

39 min
View

We liked talking about dams so much we did it again!  Join our discussion on streams, how the normally operate, and how dams disrupt the way that streams function.

We highlight a few things in this episode, including a recent Eos article on sediment accumulation behind dams - expertly written by Tullos et al., the Paonia Reservoir where sediment accumulation has filled in the reservoir in record time, and another article on contaminated sediment releases from the Milltown Dam and the Hudson River that have caused big problems in the past, written by James Evans. 

Chris also gets his long but warranted rant on the famous Aswan High Dam, and key example of the debates around the pros and cons of dams. 

Also check out our previous episode on Dams at this link or anywhere you get your podcasts.





 
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Email: planetgeocast@gmail.com
Website: https://planetgeocast.buzzsprout.com/

Download the CampGeo app now at this link.

On the app you can get tons of free content, exclusive images, and access to our Geology of National Parks series.
You can also learn the basics of geology at the college level in our FREE CampGeo content series - get learning now!

Like, Subscribe, and leave us a Rating!

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More description

We liked talking about dams so much we did it again!  Join our discussion on streams, how the normally operate, and how dams disrupt the way that streams function.

We highlight a few things in this episode, including a recent Eos article on sediment accumulation behind dams - expertly written by Tullos et al., the Paonia Reservoir where sediment accumulation has filled in the reservoir in record time, and another article on contaminated sediment releases from the Milltown Dam and the Hudson River that have caused big problems in the past, written by James Evans. 

Chris also gets his long but warranted rant on the famous Aswan High Dam, and key example of the debates around the pros and cons of dams. 

Also check out our previous episode on Dams at this link or anywhere you get your podcasts.





 
——————————————————
Instagram: @planetgeocast
Twitter: @planetgeocast
Facebook: @planetgeocast 
Youtube: https://www.youtube.com/channel/UCJ_A82nOMu0nIvZto6zMPqg
Email: planetgeocast@gmail.com
Website: https://planetgeocast.buzzsprout.com/

Download the CampGeo app now at this link.

On the app you can get tons of free content, exclusive images, and access to our Geology of National Parks series.
You can also learn the basics of geology at the college level in our FREE CampGeo content series - get learning now!

Like, Subscribe, and leave us a Rating!

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What type of rock has really big minerals and lots of uncommon elements?  It's a pegmatite!  Pegmatites contain lots of important elements and minerals, both for our economy and for mineral collectors

Join us for a tour of pegmatites.  We give quick low-down on how pegmatites form.  They contain really large mineral grains, which usually implies that they cooled slowly.  But, pegmatites form from the leftover fluids from magma chambers and contain all the uncommon (or unpopular!) elements that get concentrated.  Once they reach a certain concentration they form rare minerals that are concentrated in things like Lithium, Cesium, or Beryllium!

The minerals in pegmatites grow so fast because the fluid they grow in is much less viscous (more watery) than magma.  This means that atoms and ions can diffuse much more quickly to the sites of mineral nucleation, allowing for massive (really really massive, up to 30 ft) crystals  of minerals like spodumene and beryl to form. 

 




 
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Email: planetgeocast@gmail.com

Download the CampGeo app now at this link.

On the app you can get tons of free content, exclusive images, and access to our Geology of National Parks series.
You can also learn the basics of geology at the college level in our FREE CampGeo content series - get learning now!

Like, Subscribe, and leave us a Rating!

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More description

What type of rock has really big minerals and lots of uncommon elements?  It's a pegmatite!  Pegmatites contain lots of important elements and minerals, both for our economy and for mineral collectors

Join us for a tour of pegmatites.  We give quick low-down on how pegmatites form.  They contain really large mineral grains, which usually implies that they cooled slowly.  But, pegmatites form from the leftover fluids from magma chambers and contain all the uncommon (or unpopular!) elements that get concentrated.  Once they reach a certain concentration they form rare minerals that are concentrated in things like Lithium, Cesium, or Beryllium!

The minerals in pegmatites grow so fast because the fluid they grow in is much less viscous (more watery) than magma.  This means that atoms and ions can diffuse much more quickly to the sites of mineral nucleation, allowing for massive (really really massive, up to 30 ft) crystals  of minerals like spodumene and beryl to form. 

 




 
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 Twitter: @planetgeocast
 Facebook: @planetgeocast
 Youtube: https://www.youtube.com/channel/UCJ_A82nOMu0nIvZto6zMPqg
Email: planetgeocast@gmail.com

Download the CampGeo app now at this link.

On the app you can get tons of free content, exclusive images, and access to our Geology of National Parks series.
You can also learn the basics of geology at the college level in our FREE CampGeo content series - get learning now!

Like, Subscribe, and leave us a Rating!

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Have you ever watched the movie 300 or heard of the Spartans making a stand against the Persian Empire?  It's an amazing story right...but it has some amazing geology behind it too.  

Geology has influenced historical events in momentous ways, and here on PlanetGeo we are going to start highlighting these ways.  This incredible story of the Hot Gates is just the first part of that series. 

In this episode we are going to cover 

  1. Let’s start out with the words: Hot Gates.  First, the Gates part of that.  What formed the gates?  Well it’s a fault like the Grand Teton National Park, and the tectonics of this region are really complex! We will start narrow (at the gates themselves) and zoom out to the broader region and talk about how complex plate tectonics can be on the 3D surface of the planet. 
  2. We will talk about the Hot part of the Hot Gates, and highlight some hydrothermal activity in the region.  This includes hot springs, steam, and volcanoes! 
  3. Lastly, the Hot Gates don’t exist anymore.  The planet is always changing, sometimes rapidly. Sea level has changed over time in this region since 480 BC, 2500 years ago. The sea level change is not due to actual sea level changing though, it is due to a totally different process: the valley is filling up with sediment that pushes the shoreline back from the cliffs that used to form the Hot Gates.  This is totally normal stream behavior in areas with active mountain belts! 


So, here’s the backstory. The Persian Empire was massive and was interested in invading Greece.  There were several major battles here but we are focusing on one in particular where 300 spartan warriors stood their ground against at least 50,000 persians and maybe many more (history is foggy here). 


They were able to fend off so many adversaries by using the local geology to their advantage, they took a stand in the Hot Gates, which were a series of three narrow passes between a cliff face and the Aegean Sea.  This is a really interesting part of geoscience in that much of history is shaped by geoscience. 






 
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 Youtube: https://www.youtube.com/channel/UCJ_A82nOMu0nIvZto6zMPqg
Email: planetgeocast@gmail.com

Download the CampGeo app now at this link.

On the app you can get tons of free content, exclusive images, and access to our Geology of National Parks series.
You can also learn the basics of geology at the college level in our FREE CampGeo content series - get learning now!

Like, Subscribe, and leave us a Rating!

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More description

Have you ever watched the movie 300 or heard of the Spartans making a stand against the Persian Empire?  It's an amazing story right...but it has some amazing geology behind it too.  

Geology has influenced historical events in momentous ways, and here on PlanetGeo we are going to start highlighting these ways.  This incredible story of the Hot Gates is just the first part of that series. 

In this episode we are going to cover 

  1. Let’s start out with the words: Hot Gates.  First, the Gates part of that.  What formed the gates?  Well it’s a fault like the Grand Teton National Park, and the tectonics of this region are really complex! We will start narrow (at the gates themselves) and zoom out to the broader region and talk about how complex plate tectonics can be on the 3D surface of the planet. 
  2. We will talk about the Hot part of the Hot Gates, and highlight some hydrothermal activity in the region.  This includes hot springs, steam, and volcanoes! 
  3. Lastly, the Hot Gates don’t exist anymore.  The planet is always changing, sometimes rapidly. Sea level has changed over time in this region since 480 BC, 2500 years ago. The sea level change is not due to actual sea level changing though, it is due to a totally different process: the valley is filling up with sediment that pushes the shoreline back from the cliffs that used to form the Hot Gates.  This is totally normal stream behavior in areas with active mountain belts! 


So, here’s the backstory. The Persian Empire was massive and was interested in invading Greece.  There were several major battles here but we are focusing on one in particular where 300 spartan warriors stood their ground against at least 50,000 persians and maybe many more (history is foggy here). 


They were able to fend off so many adversaries by using the local geology to their advantage, they took a stand in the Hot Gates, which were a series of three narrow passes between a cliff face and the Aegean Sea.  This is a really interesting part of geoscience in that much of history is shaped by geoscience. 






 
 ——————————————————
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 Twitter: @planetgeocast
 Facebook: @planetgeocast
 Youtube: https://www.youtube.com/channel/UCJ_A82nOMu0nIvZto6zMPqg
Email: planetgeocast@gmail.com

Download the CampGeo app now at this link.

On the app you can get tons of free content, exclusive images, and access to our Geology of National Parks series.
You can also learn the basics of geology at the college level in our FREE CampGeo content series - get learning now!

Like, Subscribe, and leave us a Rating!

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Published 2021-06-17

Shasta Tourism (Geoshort)

5 min
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We had such a great conversation with Dr. Andrew Calvert, Scientist-in-Charge of the California Volcano Observatory, that we decided to run it back one more time. 

Mount Shasta is clearly a favorite of Dr. Calvert's, and is  famous location for hiking, climbing, and skiing.  However, it is not a National Park despite the best efforts of the famous John Muir, and is not a true tourist destination.  When thinking about visiting Northern California, don't forget to check out Lassen Volcanic National Park to experience more amazing volcano geology!  Also, check out our previous discussion with Dr. Calvert about Shastina, the spunky little sister to Mount Shasta.  Shastina presents something of a geological conundrum as it doesn't quite fit with the rest of the Cascade volcanoes. 

Here is a link to Dr. Calvert's research profile, and a short bio:

Education

Ph.D., University of California – Santa Barbara                     

Dissertation: Metamorphism and exhumation of mid-crustal gneiss domes in the Arctic Alaska Terrane

 

M.S./B.S., Stanford University (both degrees conferred June 1992)

Thesis: Structural Evolution and Thermochronology of the Kigluaik Mountains, Seward Peninsula, Alaska






 
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Email: planetgeocast@gmail.com

Download the CampGeo app now at this link.

On the app you can get tons of free content, exclusive images, and access to our Geology of National Parks series.
You can also learn the basics of geology at the college level in our FREE CampGeo content series - get learning now!

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We had such a great conversation with Dr. Andrew Calvert, Scientist-in-Charge of the California Volcano Observatory, that we decided to run it back one more time. 

Mount Shasta is clearly a favorite of Dr. Calvert's, and is  famous location for hiking, climbing, and skiing.  However, it is not a National Park despite the best efforts of the famous John Muir, and is not a true tourist destination.  When thinking about visiting Northern California, don't forget to check out Lassen Volcanic National Park to experience more amazing volcano geology!  Also, check out our previous discussion with Dr. Calvert about Shastina, the spunky little sister to Mount Shasta.  Shastina presents something of a geological conundrum as it doesn't quite fit with the rest of the Cascade volcanoes. 

Here is a link to Dr. Calvert's research profile, and a short bio:

Education

Ph.D., University of California – Santa Barbara                     

Dissertation: Metamorphism and exhumation of mid-crustal gneiss domes in the Arctic Alaska Terrane

 

M.S./B.S., Stanford University (both degrees conferred June 1992)

Thesis: Structural Evolution and Thermochronology of the Kigluaik Mountains, Seward Peninsula, Alaska






 
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Email: planetgeocast@gmail.com

Download the CampGeo app now at this link.

On the app you can get tons of free content, exclusive images, and access to our Geology of National Parks series.
You can also learn the basics of geology at the college level in our FREE CampGeo content series - get learning now!

Like, Subscribe, and leave us a Rating!

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Today we have the great pleasure of interviewing Dr. Andrew Calvert, the Scientist-in-charge of the California Volcano Observatory.  In this conversation we cover a huge range of topics from Mount Shasta, to how magmas form and become more silica rich, the role of federal institutes like CalVo in volcano hazard prediction and monitoring, and some details about potassium-argon (K-Ar, as argon-argon, Ar-Ar) geochronology using noble gases in minerals! 

Dr. Calvert also gives and excellent description of how magnetometers are used to map lava flows on old volcanoes.  This is an incredible tool that helps drive a deeper understanding of the volumes and rates of past volcanic eruptions, which is very valuable information that is used to help forecast volcano behavior! 

Dr. Calvert is an excellent science communicator and has a wide variety of experiences studying volcanoes as well as directing observation and hazard prediction efforts. Join us for an amazing conversation with Dr. Andrew Calvert!

Here is a link to Dr. Calvert's research profile, and a short bio:

Education

Ph.D., University of California – Santa Barbara                     

Dissertation: Metamorphism and exhumation of mid-crustal gneiss domes in the Arctic Alaska Terrane

 

M.S./B.S., Stanford University (both degrees conferred June 1992)

Thesis: Structural Evolution and Thermochronology of the Kigluaik Mountains, Seward Peninsula, Alaska






 
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Email: planetgeocast@gmail.com

Download the CampGeo app now at this link.

On the app you can get tons of free content, exclusive images, and access to our Geology of National Parks series.
You can also learn the basics of geology at the college level in our FREE CampGeo content series - get learning now!

Like, Subscribe, and leave us a Rating!

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Today we have the great pleasure of interviewing Dr. Andrew Calvert, the Scientist-in-charge of the California Volcano Observatory.  In this conversation we cover a huge range of topics from Mount Shasta, to how magmas form and become more silica rich, the role of federal institutes like CalVo in volcano hazard prediction and monitoring, and some details about potassium-argon (K-Ar, as argon-argon, Ar-Ar) geochronology using noble gases in minerals! 

Dr. Calvert also gives and excellent description of how magnetometers are used to map lava flows on old volcanoes.  This is an incredible tool that helps drive a deeper understanding of the volumes and rates of past volcanic eruptions, which is very valuable information that is used to help forecast volcano behavior! 

Dr. Calvert is an excellent science communicator and has a wide variety of experiences studying volcanoes as well as directing observation and hazard prediction efforts. Join us for an amazing conversation with Dr. Andrew Calvert!

Here is a link to Dr. Calvert's research profile, and a short bio:

Education

Ph.D., University of California – Santa Barbara                     

Dissertation: Metamorphism and exhumation of mid-crustal gneiss domes in the Arctic Alaska Terrane

 

M.S./B.S., Stanford University (both degrees conferred June 1992)

Thesis: Structural Evolution and Thermochronology of the Kigluaik Mountains, Seward Peninsula, Alaska






 
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On the app you can get tons of free content, exclusive images, and access to our Geology of National Parks series.
You can also learn the basics of geology at the college level in our FREE CampGeo content series - get learning now!

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Today we have a preview to our interview with Dr Andrew Calvert, Scientist in Charge of the California Volcano Observatory, also known as CalVO.

Dr. Calvart first fell in love with volcanoes as a young boy growing up in Idaho when Mount Saint Helens erupted.  This was the first ash sample he ever collected, and he and Chris share this connection to volcanoes and their interest in geoscience. 

In this GeoShort, Dr. Andrew Calvart walks us through a million years of geologic history of Mount Shasta in Northern California.  He has collected samples from every lava flow coming from the volcano.  A million years ago, Shasta didn't exist.  About 700,000 years ago, Shasta began forming.  But, similar to Saint Helens, it fell apart about 400,000 years ago.  He also talks about how episodic Shasta is compared to many of the other Cascadia stratovolcanoes.  It doesn't erupt as often as many of the others.  Despite being very eposodic, it's not very explosive (usually).   Dr. Calvart also explains how the magma beneath Shasta is not as viscous as other stratovolcanoes.





 
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 Instagram: @planetgeocast
 Twitter: @planetgeocast
 Facebook: @planetgeocast
 Youtube: https://www.youtube.com/channel/UCJ_A82nOMu0nIvZto6zMPqg
Email: planetgeocast@gmail.com

Download the CampGeo app now at this link.

On the app you can get tons of free content, exclusive images, and access to our Geology of National Parks series.
You can also learn the basics of geology at the college level in our FREE CampGeo content series - get learning now!

Like, Subscribe, and leave us a Rating!

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Instagram: @planetgeocast
Twitter: @planetgeocast
Facebook: @planetgeocast
Support us: https://planetgeocast.com/support-us
Email: planetgeocast@gmail.com
Website: https://planetgeocast.com/

More description

Today we have a preview to our interview with Dr Andrew Calvert, Scientist in Charge of the California Volcano Observatory, also known as CalVO.

Dr. Calvart first fell in love with volcanoes as a young boy growing up in Idaho when Mount Saint Helens erupted.  This was the first ash sample he ever collected, and he and Chris share this connection to volcanoes and their interest in geoscience. 

In this GeoShort, Dr. Andrew Calvart walks us through a million years of geologic history of Mount Shasta in Northern California.  He has collected samples from every lava flow coming from the volcano.  A million years ago, Shasta didn't exist.  About 700,000 years ago, Shasta began forming.  But, similar to Saint Helens, it fell apart about 400,000 years ago.  He also talks about how episodic Shasta is compared to many of the other Cascadia stratovolcanoes.  It doesn't erupt as often as many of the others.  Despite being very eposodic, it's not very explosive (usually).   Dr. Calvart also explains how the magma beneath Shasta is not as viscous as other stratovolcanoes.





 
 ——————————————————
 Instagram: @planetgeocast
 Twitter: @planetgeocast
 Facebook: @planetgeocast
 Youtube: https://www.youtube.com/channel/UCJ_A82nOMu0nIvZto6zMPqg
Email: planetgeocast@gmail.com

Download the CampGeo app now at this link.

On the app you can get tons of free content, exclusive images, and access to our Geology of National Parks series.
You can also learn the basics of geology at the college level in our FREE CampGeo content series - get learning now!

Like, Subscribe, and leave us a Rating!

——————————————————
Instagram: @planetgeocast
Twitter: @planetgeocast
Facebook: @planetgeocast
Support us: https://planetgeocast.com/support-us
Email: planetgeocast@gmail.com
Website: https://planetgeocast.com/

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Dr. Ian Miller is the Director of the Denver Museum of Nature and Science, now working with National Geographic as the Chief Science and Innovation Officer.  Dr. Miller is a paleobotanist who has spent his career making amazing discoveries about the ancient Earth using fossils!  In this interview Dr. Miller describes what the Earth looked and felt like in the minutes and days after a meteorite impact struck the planet, killing the dinosaurs and creating a global catastrophe!  Dr. Miller and his research team have made incredible discoveries that help us understand how life began to recover from this disastrous event, as well as making inferences about the height of the Ancient Rocky Mountains! 

If you are planning a trip in or around the Denver, Colorado area, you must listen to this episode to hear about the amazing geoscience story you are driving past!  Here is an excerpt from Dr. Miller's profile, and we think you will agree that Dr. Miller is one of the best science communicators out there.

Raised on a llama ranch in rural Washington State, Ian Miller first discovered the lure of rocks and fossils while scavenging mine tailings for fool’s gold and pulling Miocene clams out of road cuts with his four younger brothers. As a geology major at The Colorado College, he discovered fossil plants, his research specialty, while working as an intern at the Denver Museum of Nature & Science. After a two-year stint as a field geologist in New Mexico, Ian attended Yale University, where he studied paleobotany and tectonics and received his PhD in 2007. 

Miller spent 15 years at the Denver Museum of Nature & Science, most recently serving as the director of Earth and Space Sciences. During this time he studied fossil plants, paleoclimate, paleoecology, and tectonics, and he also co-led the Snowmastodon Project, which provided a new benchmark for understanding climate change in the American West. 

Throughout his academic career, Miller has natural history experience on all seven continents and has been a lead scientist on major field expeditions in Madagascar and much of the western United States. He has published 30 peer-reviewed scientific articles and books on paleobiology and geology.

Beyond his work as a scientist, Miller has led museum initiatives aimed at deepening people’s connection with the natural world and unearthing major trends in new and existing audiences that will define the future of museums. 

Miller is a previous board member of Snowmass Discovery, a peer-reviewer for multiple academic journals, and member of various scientific societies, including the American Association for the Advancement of Science, Geological Society of America, and International Council of Museums.






 
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 Instagram: @planetgeocast
 Twitter: @planetgeocast
 Facebook: @planetgeocast
 Youtube: https://www.youtube.com/channel/UCJ_A82nOMu0nIvZto6zMPqg
Email: planetgeocast@gmail.com

Download the CampGeo app now at this link.

On the app you can get tons of free content, exclusive images, and access to our Geology of National Parks series.
You can also learn the basics of geology at the college level in our FREE CampGeo content series - get learning now!

Like, Subscribe, and leave us a Rating!

——————————————————
Instagram: @planetgeocast
Twitter: @planetgeocast
Facebook: @planetgeocast
Support us: https://planetgeocast.com/support-us
Email: planetgeocast@gmail.com
Website: https://planetgeocast.com/

More description

Dr. Ian Miller is the Director of the Denver Museum of Nature and Science, now working with National Geographic as the Chief Science and Innovation Officer.  Dr. Miller is a paleobotanist who has spent his career making amazing discoveries about the ancient Earth using fossils!  In this interview Dr. Miller describes what the Earth looked and felt like in the minutes and days after a meteorite impact struck the planet, killing the dinosaurs and creating a global catastrophe!  Dr. Miller and his research team have made incredible discoveries that help us understand how life began to recover from this disastrous event, as well as making inferences about the height of the Ancient Rocky Mountains! 

If you are planning a trip in or around the Denver, Colorado area, you must listen to this episode to hear about the amazing geoscience story you are driving past!  Here is an excerpt from Dr. Miller's profile, and we think you will agree that Dr. Miller is one of the best science communicators out there.

Raised on a llama ranch in rural Washington State, Ian Miller first discovered the lure of rocks and fossils while scavenging mine tailings for fool’s gold and pulling Miocene clams out of road cuts with his four younger brothers. As a geology major at The Colorado College, he discovered fossil plants, his research specialty, while working as an intern at the Denver Museum of Nature & Science. After a two-year stint as a field geologist in New Mexico, Ian attended Yale University, where he studied paleobotany and tectonics and received his PhD in 2007. 

Miller spent 15 years at the Denver Museum of Nature & Science, most recently serving as the director of Earth and Space Sciences. During this time he studied fossil plants, paleoclimate, paleoecology, and tectonics, and he also co-led the Snowmastodon Project, which provided a new benchmark for understanding climate change in the American West. 

Throughout his academic career, Miller has natural history experience on all seven continents and has been a lead scientist on major field expeditions in Madagascar and much of the western United States. He has published 30 peer-reviewed scientific articles and books on paleobiology and geology.

Beyond his work as a scientist, Miller has led museum initiatives aimed at deepening people’s connection with the natural world and unearthing major trends in new and existing audiences that will define the future of museums. 

Miller is a previous board member of Snowmass Discovery, a peer-reviewer for multiple academic journals, and member of various scientific societies, including the American Association for the Advancement of Science, Geological Society of America, and International Council of Museums.






 
 ——————————————————
 Instagram: @planetgeocast
 Twitter: @planetgeocast
 Facebook: @planetgeocast
 Youtube: https://www.youtube.com/channel/UCJ_A82nOMu0nIvZto6zMPqg
Email: planetgeocast@gmail.com

Download the CampGeo app now at this link.

On the app you can get tons of free content, exclusive images, and access to our Geology of National Parks series.
You can also learn the basics of geology at the college level in our FREE CampGeo content series - get learning now!

Like, Subscribe, and leave us a Rating!

——————————————————
Instagram: @planetgeocast
Twitter: @planetgeocast
Facebook: @planetgeocast
Support us: https://planetgeocast.com/support-us
Email: planetgeocast@gmail.com
Website: https://planetgeocast.com/

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In this GeoShort, Dr. Ian Miller (Director of Earth and Space Sciences, Associate Curator of Paleobotany for the Denver Museum of Nature and Science) compares the end Cretaceous event that killed the Dinosaurs to other mass extinction events.

Jesse and Ian also have a brief discussion about massive lava eruptions that can cause mass extinctions such as the Deccan Traps.

Ian also provides an excellent explanation on how fossils form!




 
 ——————————————————
 Instagram: @planetgeocast
 Twitter: @planetgeocast
 Facebook: @planetgeocast
 Youtube: https://www.youtube.com/channel/UCJ_A82nOMu0nIvZto6zMPqg
Email: planetgeocast@gmail.com

Download the CampGeo app now at this link.

On the app you can get tons of free content, exclusive images, and access to our Geology of National Parks series.
You can also learn the basics of geology at the college level in our FREE CampGeo content series - get learning now!

Like, Subscribe, and leave us a Rating!

——————————————————
Instagram: @planetgeocast
Twitter: @planetgeocast
Facebook: @planetgeocast
Support us: https://planetgeocast.com/support-us
Email: planetgeocast@gmail.com
Website: https://planetgeocast.com/

More description

In this GeoShort, Dr. Ian Miller (Director of Earth and Space Sciences, Associate Curator of Paleobotany for the Denver Museum of Nature and Science) compares the end Cretaceous event that killed the Dinosaurs to other mass extinction events.

Jesse and Ian also have a brief discussion about massive lava eruptions that can cause mass extinctions such as the Deccan Traps.

Ian also provides an excellent explanation on how fossils form!




 
 ——————————————————
 Instagram: @planetgeocast
 Twitter: @planetgeocast
 Facebook: @planetgeocast
 Youtube: https://www.youtube.com/channel/UCJ_A82nOMu0nIvZto6zMPqg
Email: planetgeocast@gmail.com

Download the CampGeo app now at this link.

On the app you can get tons of free content, exclusive images, and access to our Geology of National Parks series.
You can also learn the basics of geology at the college level in our FREE CampGeo content series - get learning now!

Like, Subscribe, and leave us a Rating!

——————————————————
Instagram: @planetgeocast
Twitter: @planetgeocast
Facebook: @planetgeocast
Support us: https://planetgeocast.com/support-us
Email: planetgeocast@gmail.com
Website: https://planetgeocast.com/

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