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Københavns Universitets Videoportal에서 제공하는 콘텐츠입니다. 에피소드, 그래픽, 팟캐스트 설명을 포함한 모든 팟캐스트 콘텐츠는 Københavns Universitets Videoportal 또는 해당 팟캐스트 플랫폼 파트너가 직접 업로드하고 제공합니다. 누군가가 귀하의 허락 없이 귀하의 저작물을 사용하고 있다고 생각되는 경우 여기에 설명된 절차를 따르실 수 있습니다 https://ko.player.fm/legal.
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Pascale Ehrenfreund: Prebiotic reservoirs available to the early Earth and Mars

46:14
 
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Manage episode 440229474 series 1540312
Københavns Universitets Videoportal에서 제공하는 콘텐츠입니다. 에피소드, 그래픽, 팟캐스트 설명을 포함한 모든 팟캐스트 콘텐츠는 Københavns Universitets Videoportal 또는 해당 팟캐스트 플랫폼 파트너가 직접 업로드하고 제공합니다. 누군가가 귀하의 허락 없이 귀하의 저작물을 사용하고 있다고 생각되는 경우 여기에 설명된 절차를 따르실 수 있습니다 https://ko.player.fm/legal.

Professor of Space Policy and International Affairs at George Washington University and the President of the Committee on Space research (COSPAR).

Pascale EhrenfreundWith a degree in molecular biology, in astrochemistry, as well as in management & leadership, her interest spans a wide multidisciplinary area, with important contributions to the scientific literature in - among many fields - astrobiology, prebiotic chemistry, and organic molecules in the interstellar medium, comets and meteorites. Principal Investigator, Co-Investigator and Team leader on several space missions as well as experiments in low Earth orbit.

Abstract: One of the most compelling questions in planetary science revolves around the origins of life on Earth and the possibility of extraterrestrial life. Key environments conducive to the formation of organic molecules, crucial in the genesis of life, include deep-sea hydrothermal vents, volcanic regions, and primordial oceans. Additionally, the early Earth's chemical raw material may have been enriched by small Solar System bodies that deposited carbon-rich molecules and volatile compounds onto the young planets.

Recent space missions focused on comets and asteroids have markedly enriched our understanding of the prebiotic materials available to the early Earth and Mars. This enhanced comprehension of Earth's primordial biochemical conditions assists in the identification of similar environments on Mars, furthering our quest to unravel the mysteries of life beyond our planet.

  continue reading

2755 에피소드

Artwork
icon공유
 
Manage episode 440229474 series 1540312
Københavns Universitets Videoportal에서 제공하는 콘텐츠입니다. 에피소드, 그래픽, 팟캐스트 설명을 포함한 모든 팟캐스트 콘텐츠는 Københavns Universitets Videoportal 또는 해당 팟캐스트 플랫폼 파트너가 직접 업로드하고 제공합니다. 누군가가 귀하의 허락 없이 귀하의 저작물을 사용하고 있다고 생각되는 경우 여기에 설명된 절차를 따르실 수 있습니다 https://ko.player.fm/legal.

Professor of Space Policy and International Affairs at George Washington University and the President of the Committee on Space research (COSPAR).

Pascale EhrenfreundWith a degree in molecular biology, in astrochemistry, as well as in management & leadership, her interest spans a wide multidisciplinary area, with important contributions to the scientific literature in - among many fields - astrobiology, prebiotic chemistry, and organic molecules in the interstellar medium, comets and meteorites. Principal Investigator, Co-Investigator and Team leader on several space missions as well as experiments in low Earth orbit.

Abstract: One of the most compelling questions in planetary science revolves around the origins of life on Earth and the possibility of extraterrestrial life. Key environments conducive to the formation of organic molecules, crucial in the genesis of life, include deep-sea hydrothermal vents, volcanic regions, and primordial oceans. Additionally, the early Earth's chemical raw material may have been enriched by small Solar System bodies that deposited carbon-rich molecules and volatile compounds onto the young planets.

Recent space missions focused on comets and asteroids have markedly enriched our understanding of the prebiotic materials available to the early Earth and Mars. This enhanced comprehension of Earth's primordial biochemical conditions assists in the identification of similar environments on Mars, furthering our quest to unravel the mysteries of life beyond our planet.

  continue reading

2755 에피소드

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