#diamondscience 검색 결과

Tiny minerals hidden in super deep diamonds can reveal what the bulk composition was, and they trace a very deep and long carbon cycle. #DiamondScience

CarnegieGeoPhys's tweet image. Tiny minerals hidden in super deep diamonds can reveal what the bulk composition was, and they trace a very deep and long carbon cycle. #DiamondScience

Scientists look for inclusions inside super deep diamonds. These tiny hidden inclusions unlock a whole story about the Earth. #DiamondScience

CarnegieGeoPhys's tweet image. Scientists look for inclusions inside super deep diamonds. These tiny hidden inclusions unlock a whole story about the Earth. #DiamondScience

Follow for more diamond science and buying knowledge that most people learn too late. 💎 #DiamondScience #NaturalDiamonds #LivingStars #ItsAllAboutTheCut #DiamondFacts


Another way to learn about the Earth's depths is from chunks of the planet's mantle that are brought to the surface by #volcanic #eruptions says @CarnegieGeoPhys Director Mike Walter. #DiamondScience

carnegiescience's tweet image. Another way to learn about the Earth's depths is from chunks of the planet's mantle that are brought to the surface by #volcanic #eruptions says @CarnegieGeoPhys Director Mike Walter. #DiamondScience

.@CarnegieGeoPhys Director Mike Walter talked us through 50 or 60 years of deep Earth research in roughly 20 minutes. Because he rocks. (🤣😂) Now on to the latest updates in #DiamondScience

carnegiescience's tweet image. .@CarnegieGeoPhys Director Mike Walter talked us through 50 or 60 years of deep Earth research in roughly 20 minutes. Because he rocks. (🤣😂) Now on to the latest updates in #DiamondScience

The diamond anvil cell!! 💎💎 Here’s how scientists can recreate the very high pressures inside our Earth.... and beyond! #DiamondScience

CarnegieGeoPhys's tweet image. The diamond anvil cell!! 💎💎 Here’s how scientists can recreate the very high pressures inside our Earth.... and beyond! #DiamondScience

And the surface of the Earth is dynamic, too! Surface and interior are connected through subduction — they’re like recycling zones!#PlateTectonics #DiamondScience

CarnegieGeoPhys's tweet image. And the surface of the Earth is dynamic, too! Surface and interior are connected through subduction — they’re like recycling zones!#PlateTectonics #DiamondScience

📩 DM us to explore our collection of 100% Earth-mined, natural diamonds at Living Star Diamonds. #NaturalDiamonds #DiamondScience #EarthMined #TimelessLegacy #LivingStarDiamonds


The inside of the Earth is dynamic! Heat is trying to get out, and is mostly residual heat from the formation of the Earth through accretion. There are multiple thermal boundary layers. #DiamondScience

CarnegieGeoPhys's tweet image. The inside of the Earth is dynamic! Heat is trying to get out, and is mostly residual heat from the formation of the Earth through accretion. There are multiple thermal boundary layers. #DiamondScience

Could the Great Oxygenation Event have had something to do with activity in Earth's #mantle? Some @CarnegieGeoPhys scientists on Ho-kwang "Dave" Mao's team are investigating that question says Director Mike Walter during Q&A after his #DiamondScience talk. #GOE

carnegiescience's tweet image. Could the Great Oxygenation Event have had something to do with activity in Earth's #mantle? Some @CarnegieGeoPhys scientists on Ho-kwang "Dave" Mao's team are investigating that question says Director Mike Walter during Q&A after his #DiamondScience talk. #GOE

Discover the Conductive Secrets of Diamonds with #VeryLongAcademy! 🎥 Learn how diamonds can conduct electricity and their potential in tech! youtube.com/shorts/whJIb09… #DiamondScience #ElectricalProperties #EducationalJourney"

verylongacademy's tweet image. Discover the Conductive Secrets of Diamonds with #VeryLongAcademy! 🎥 Learn how diamonds can conduct electricity and their potential in tech! 
youtube.com/shorts/whJIb09…
#DiamondScience #ElectricalProperties #EducationalJourney"

Mantle material upwells at places where plates are spreading. In other places, plates become cold and dense and sink, @CarnegieGeoPhys Director Mike Walter explains. The surface and interior of Earth are connected! #DiamondScience

carnegiescience's tweet image. Mantle material upwells at places where plates are spreading. In other places, plates become cold and dense and sink, @CarnegieGeoPhys Director Mike Walter explains. The surface and interior of Earth are connected! #DiamondScience

The diamond anvil cell can allow @CarnegieGeoPhys scientists to bring samples to pressures as great as the Earth's interior explains Director Mike Walter. Some diamond anvil cell tools can even simulate the interiors of giant #planets! #DiamondScience #DiamondAnvilCell

carnegiescience's tweet image. The diamond anvil cell can allow @CarnegieGeoPhys scientists to bring samples to pressures as great as the Earth's interior explains Director Mike Walter. Some diamond anvil cell tools can even simulate the interiors of giant #planets! #DiamondScience #DiamondAnvilCell

If you are wearing diamond jewelry tonight it probably came from the base of the cold lithosphere and is about 3 billion years old says @CarnegieGeoPhys Director Mike Walter. #DiamondScience

carnegiescience's tweet image. If you are wearing diamond jewelry tonight it probably came from the base of the cold lithosphere and is about 3 billion years old says @CarnegieGeoPhys Director Mike Walter. #DiamondScience

But #geoscientists love what are called super-deep diamonds, which come from the lower mantle or core-mantle boundary adds @CarnegieGeoPhys Director Mike Walter. They are our window into Earth at those depths. #diamondscience 💎💎💎

carnegiescience's tweet image. But #geoscientists love what are called super-deep diamonds, which come from the lower mantle or core-mantle boundary adds @CarnegieGeoPhys Director Mike Walter. They are our window into Earth at those depths. #diamondscience 💎💎💎

.@CarnegieGeoPhys is one of the first places in the world to use lab mimicry to try to see what's going on in the deep Earth says Director Mike Walter, and it continues to be a world leader in this field of high-pressure research. #DiamondScience

carnegiescience's tweet image. .@CarnegieGeoPhys is one of the first places in the world to use lab mimicry to try to see what's going on in the deep Earth says Director Mike Walter, and it continues to be a world leader in this field of high-pressure research. #DiamondScience
carnegiescience's tweet image. .@CarnegieGeoPhys is one of the first places in the world to use lab mimicry to try to see what's going on in the deep Earth says Director Mike Walter, and it continues to be a world leader in this field of high-pressure research. #DiamondScience

#Isotope research tells us that the carbon that's being preserved as #diamond is subducted and passed through one of Earth's "recycling centers," explains @CarnegieGeoPhys Director Mike Walter. It started its life on the surface! #DiamondScience

carnegiescience's tweet image. #Isotope research tells us that the carbon that's being preserved as #diamond is subducted and passed through one of Earth's "recycling centers," explains @CarnegieGeoPhys Director Mike Walter. It started its life on the surface! #DiamondScience

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