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Dynamics of Planetary Systems - (Princeton Astrophysics) by Scott Tremaine (Paperback)

Dynamics of Planetary Systems - (Princeton Astrophysics) by  Scott Tremaine (Paperback) - 1 of 1
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About this item

Highlights

  • An introduction to celestial mechanics for advanced undergraduates, graduate students, and researchers new to the field Celestial mechanics--the study of the movement of planets, satellites, and smaller bodies such as comets--is one of the oldest subjects in the physical sciences.
  • About the Author: Scott Tremaine is Professor Emeritus at the Institute for Advanced Study in Princeton and a member of the Royal Society of London, the Royal Society of Canada, and the US National Academy of Sciences.
  • 640 Pages
  • Science, Physics
  • Series Name: Princeton Astrophysics

Description



About the Book



"An introduction to celestial mechanics for advanced undergraduates, graduate students, and researchers new to the field. Celestial mechanics-the study of the movement of planets, satellites, and smaller bodies such as comets-is one of the oldest subjects in the physical sciences. Since the mid-twentieth century, the field has experienced a renaissance due to advances in space flight, digital computing, numerical mathematics, nonlinear dynamics, and chaos theory, and the discovery of exoplanets. This modern, authoritative introduction to planetary system dynamics reflects these recent developments and discoveries and is suitable for advanced undergraduate and graduate students as well as researchers. The book treats both traditional subjects, such as the two-body and three-body problems, lunar theory, and Hamiltonian perturbation theory, as well as a diverse range of other topics, including chaos in the solar system, comet dynamics, extrasolar planets, planetesimal dynamics, resonances, tidal friction and disruption, and more. The book provides readers with all the core concepts, tools, and methods needed to conduct research in the subject. Provides an authoritative introduction that reflects recent advances in the field. Topics treated include Andoyer variables, co-orbital satellites and quasi-satellites, Hill's problem, the Milankovich equations, Colombo's top and Cassini states, the Yarkovsky and YORP effects, orbit determination for extrasolar planets, and more. More than 100 end-of-book problems elaborate on concepts not fully covered in the main text. Appendixes summarize the necessary background material. Suitable for advanced undergraduates and graduate students; some knowledge of Hamiltonian mechanics and methods of mathematical physics (vectors, matrices, special functions, etc.) required. Solutions manual available on request for instructors who adopt the book for a course"--



Book Synopsis



An introduction to celestial mechanics for advanced undergraduates, graduate students, and researchers new to the field

Celestial mechanics--the study of the movement of planets, satellites, and smaller bodies such as comets--is one of the oldest subjects in the physical sciences. Since the mid-twentieth century, the field has experienced a renaissance due to advances in space flight, digital computing, numerical mathematics, nonlinear dynamics, and chaos theory, and the discovery of exoplanets. This modern, authoritative introduction to planetary system dynamics reflects these recent developments and discoveries and is suitable for advanced undergraduate and graduate students as well as researchers. The book treats both traditional subjects, such as the two-body and three-body problems, lunar theory, and Hamiltonian perturbation theory, as well as a diverse range of other topics, including chaos in the solar system, comet dynamics, extrasolar planets, planetesimal dynamics, resonances, tidal friction and disruption, and more. The book provides readers with all the core concepts, tools, and methods needed to conduct research in the subject.

  • Provides an authoritative introduction that reflects recent advances in the field
  • Topics treated include Andoyer variables, co-orbital satellites and quasi-satellites, Hill's problem, the Milankovich equations, Colombo's top and Cassini states, the Yarkovsky and YORP effects, orbit determination for extrasolar planets, and more
  • More than 100 end-of-book problems elaborate on concepts not fully covered in the main text
  • Appendixes summarize the necessary background material
  • Suitable for advanced undergraduates and graduate students; some knowledge of Hamiltonian mechanics and methods of mathematical physics (vectors, matrices, special functions, etc.) required
  • Solutions manual available on request for instructors who adopt the book for a course



Review Quotes




"Finalist for the PROSE Award in Chemistry, Physics, Astronomy, and Cosmology, Association of American Publishers"

"Winner of the PROSE Award in Chemistry, Physics, Astronomy, and Cosmology Texbooks, Association of American Publishers"



About the Author



Scott Tremaine is Professor Emeritus at the Institute for Advanced Study in Princeton and a member of the Royal Society of London, the Royal Society of Canada, and the US National Academy of Sciences. He is the author (with James Binney) of Galactic Dynamics (Princeton).
Dimensions (Overall): 9.0 Inches (H) x 6.0 Inches (W) x 1.7 Inches (D)
Weight: 1.5 Pounds
Suggested Age: 22 Years and Up
Number of Pages: 640
Genre: Science
Sub-Genre: Physics
Series Title: Princeton Astrophysics
Publisher: Princeton University Press
Format: Paperback
Author: Scott Tremaine
Language: English
Street Date: February 7, 2023
TCIN: 87068788
UPC: 9780691207117
Item Number (DPCI): 247-30-6664
Origin: Made in the USA or Imported
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Shipping details

Estimated ship dimensions: 1.7 inches length x 6 inches width x 9 inches height
Estimated ship weight: 1.5 pounds
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