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Thursday, December 3, 2020 | History

1 edition of Theory of Orbits found in the catalog.

Theory of Orbits

Volume 1: Integrable Systems and Non-perturbative Methods

by Dino Boccaletti

  • 397 Want to read
  • 36 Currently reading

Published by Springer Berlin Heidelberg in Berlin, Heidelberg .
Written in English

    Subjects:
  • Astrophysics,
  • Physics,
  • Physical geography

  • About the Edition

    This textbook treats celestial mechanics as well as stellar dynamics from the common point of view of orbit theory making use of concepts and techniques from modern geometric mechanics. It starts with elementary Newtonian mechanics and ends with the dynamics of chaotic motions. The book is meant for students in astronomy and physics alike. Prerequisite is a physicist"s knowledge of calculus and differential geometry. The first volume begins with classical mechanics and with a thorough treatment of the 2-body problem, including regularization, followed by an introduction to the N-body problem with particular attention given to the virial theorem. Then the authors discuss all important non-perturbative aspects of the 3-body problem. They end with a final chapter on integrability of Hamilton-Jacobi systems and the search for constants of motion.

    Edition Notes

    Statementby Dino Boccaletti, Giuseppe Pucacco
    SeriesAstronomy and Astrophysics Library, Astronomy and Astrophysics Library
    ContributionsPucacco, Giuseppe
    Classifications
    LC ClassificationsQB4
    The Physical Object
    Format[electronic resource] :
    Pagination1 online resource (xiv, 393 p.)
    Number of Pages393
    ID Numbers
    Open LibraryOL27091764M
    ISBN 103642082106, 3662033194
    ISBN 109783642082108, 9783662033197
    OCLC/WorldCa851390522


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Theory of Orbits by Dino Boccaletti Download PDF EPUB FB2

This book is an invaluable source for astronomers, engineers, and mathematicians. Show less Theory of Orbits: The Restricted Problem of Three Bodies is a chapter text that covers the significance of the restricted problem of three bodies in analytical dynamics, celestial mechanics, and space dynamics.

Description: This book focuses on the theory and design of special space orbits. Offering a systematic and detailed introduction to the hovering orbit, spiral cruising orbit, multi-target rendezvous orbit, initiative approaching orbit, responsive orbit and earth pole-sitter orbit, it also discusses the concept, theory, design methods and.

This textbook treats Celestial Mechanics as well as Stellar Dynamics from the common point of view of orbit theory making use of the concepts and techniques from modern geometric mechanics.

It starts with elementary Newtonian Mechanics and ends with the dynamics of chaotic motions. The book is meant for students in astronomy and physics alike.

Prerequisite is a Cited by: Theory of Orbits: Perturbative and Geometrical Methods (Astronomy and Astrophysics Library Book 2) - Kindle edition by Boccaletti, Dino, Pucacco, Giuseppe.

Download it once and read it on your Kindle device, PC, phones or tablets. Use features like bookmarks, note taking and highlighting while reading Theory of Orbits: Perturbative and Geometrical Methods (Astronomy Manufacturer: Springer.

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May some of ebooks not available on your country and only available for those who subscribe and depend to the source of library websites. Theory of Orbits treats celestial mechanics as well as stellar dynamics from the common point of view of orbit theory, making use of concepts and techniques from modern geometric mechanics.

It starts with elementary Newtonian mechanics and ends with the dynamics of chaotic motion. The two volumes are meant for students in astronomy and physics. Geometrical Theory of Satellite Orbits and Gravity Field. Authors: Svehla, Drazen This book on space geodesy presents pioneering geometrical approaches in the modelling of satellite orbits and gravity field of the Earth, based on the gravity field missions CHAMP, GRACE and GOCE in the LEO orbit.

Theory of Orbits treats celestial mechanics as well as stellar dynamics from the common point of view of orbit theory, making use of concepts and techniques from modern geometric mechanics.

It starts with elementary Newtonian mechanics and ends with the dynamics of chaotic motion. The two volumes are meant for students in astronomy and physics Format: Hardcover.

Orbits in Given Potentials -- Mathematical Appendix -- Bibliographical Notes -- Name Index -- Subject Index This textbook treats celestial mechanics as well as stellar dynamics from the common point of view of orbit theory making use of concepts and techniques from modern geometric mechanics.

In classical mechanics, Newton's theorem of revolving orbits identifies the type of central force needed to multiply the angular speed of a particle by a factor k without affecting its radial motion (Figures 1 and 2). Newton applied his theorem to understanding the overall rotation of orbits (apsidal precession, Figure 3) that is observed for the Moon and planets.

This textbook treats celestial mechanics as well as stellar dynamics from the common point of view of orbit theory making use of concepts and techniques from modern geometric mechanics.

It starts with elementary Newtonian mechanics and ends with the dynamics of chaotic motions. The book is meant for students in astronomy and physics alike.

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Theory of Orbits treats celestial mechanics as well as stellar dynamics from the common point of view of orbit theory, making use of concepts and techniques from modern geometric mechanics. It starts with elementary Newtonian mechanics and ends with the dynamics of chaotic motion.

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