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Planetesimals : early differentiation and consequences for planets /

Processes governing the evolution of planetesimals are critical to understanding how rocky planets are formed, how water is delivered to them, the origin of planetary atmospheres, how cores and magnetic dynamos develop, and ultimately, which planets have the potential to be habitable. Theoretical ad...

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Detalles Bibliográficos
Clasificación:Libro Electrónico
Otros Autores: Elkins-Tanton, Linda T. (Editor ), Weiss, Benjamin P. (Benjamin Paul) (Editor )
Formato: Electrónico eBook
Idioma:Inglés
Publicado: Cambridge : Cambridge University Press, 2017.
Colección:Cambridge planetary science series.
Temas:
Acceso en línea:Texto completo

MARC

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245 0 0 |a Planetesimals :  |b early differentiation and consequences for planets /  |c edited by Linda T. Elkins-Tanton, School of Earth and Space Exploration, Arizona State University, and Benjamin P. Weiss, Department of Earth, Atmospheric and Planetary Sciences, Massachusetts Institute of Technology. 
264 1 |a Cambridge :  |b Cambridge University Press,  |c 2017. 
300 |a 1 online resource (xii, 381 pages, 24 unnumbered pages of plates) 
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490 1 |a Cambridge planetary science 
504 |a Includes bibliographical references and index. 
588 0 |a Print version record. 
505 0 |a Planetesimals / Benjamin P. Weiss -- Signatures of Hit-and-run Collisions / Erik Asphaug -- Using The Main Asteroid Belt to Constrain Planetesimal and Planet Formation / William Bottke and Alessandro Morbidelli -- Differentiation Under Highly Reducing Conditions: New Insights from Enstatite Meteorites and Mercury / Timothy J. McCoy and Emma S. Bullock -- Origin and Evolution of Volatile-rich Asteroids / Julie Castillo Rodriguez and Edward D. Young -- Silicate Melting and Volatile Loss During Differentiation in Planetesimals / Roger R. Fu, Edward D. Young, Richard C. Greenwood, and Linda T. Elkins-Tanton -- Iron and Stony-iron Meteorites: Evidence for The Formation, Crystallization, and Early Impact Histories of Differentiated Planetesimals / Alex M. Ruzicka, Henning Haack, Nancy L. Chabot, and Edward R.D. Scott -- Arguments for The Non-Existence of Magma Oceans in Asteroids / Lionel Wilson and Klaus Keil -- Magnetic Field on Asteroids and Planetesimals / Aaron Scheinberg, Roger R. Fu, Linda T. Elkins-Tanton, Benjamin P. Weiss, and Sabine Stanley -- Magnetic Mineralogy of Meteroritic Metal: Paleomagnetic Evidence for Dynamo Activity on Differentiated Planetesimals / Richard J. Harrison, James F.J. Bryson, Claire I.O. Nichols, and Benjamin P. Weiss -- Chronology of Planetesimal Differentiation / Thorsten Kleine and Meenakshi Wadhwa -- Stable Isotope Evidence for the Differentiation and Evolution of Planetesimals / Anat Shahar, Paul S. Savage, and Frederick Moynier -- Composition of Solar System Small Bodies / Pierre Vernazza and Pierre Beck -- Evidence for Differentiation among Asteroid Families / Thomas H. Burbine, Francesca E. Demeo, Andrew S. Rivkin, and Vishnu Reddy -- Dawn at Vesta: Paradigms and Paradoxes / Carol A. Raymond, Christopher T. Russell, and Harry McSween Jr -- Planetesimals in Debris Disks / Andrew N. Youdin and George H. Rieke -- The Taxonomy of Planetesimals: Consequences for Planets / Linda T. Elkins-Tanton 
520 |a Processes governing the evolution of planetesimals are critical to understanding how rocky planets are formed, how water is delivered to them, the origin of planetary atmospheres, how cores and magnetic dynamos develop, and ultimately, which planets have the potential to be habitable. Theoretical advances and new data from asteroid and meteorite observations, coupled with spacecraft missions such as Rosetta and Dawn, have led to major advances in this field over the last decade. This transdisciplinary volume presents an authoritative overview of the latest in our understanding of the processes of planet formation. Combining meteorite, asteroid and icy body observations with theory and modelling of accretion and orbital dynamics, this text also provides insights into the exoplanetary system and the search for habitable worlds. This is an essential reference for those interested in planetary formation, solar system dynamics, exoplanets and planetary habitability. 
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700 1 |a Weiss, Benjamin P.  |q (Benjamin Paul),  |e editor. 
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