Methods of Celestial Mechanics - Info and Reading Options
By Dirk Brouwer and Gerald M. Clemence

"Methods of Celestial Mechanics" was published by Academic Press in 1961 - New York, it has 598 pages and the language of the book is English.
“Methods of Celestial Mechanics” Metadata:
- Title: Methods of Celestial Mechanics
- Authors: Dirk BrouwerGerald M. Clemence
- Language: English
- Number of Pages: 598
- Publisher: Academic Press
- Publish Date: 1961
- Publish Location: New York
“Methods of Celestial Mechanics” Subjects and Themes:
- Subjects: Celestial mechanics - 39.23 celestial mechanics - Himmelsmechanik - Hemelmechanica
Edition Specifications:
- Pagination: 598 p.
Edition Identifiers:
- The Open Library ID: OL5802762M - OL7345510W
- Online Computer Library Center (OCLC) ID: 530063
- Library of Congress Control Number (LCCN): 60016909
AI-generated Review of “Methods of Celestial Mechanics”:
"Methods of Celestial Mechanics" Table Of Contents:
- 1- Preface
- 2- Errata
- 3- Elliptic Motion
- 4- Expansions in Elliptic Motion
- 5- Gravitational Attraction Between Bodies of Finite Dimensions
- 6- Calculus of Finite Differences
- 7- Numerical Integration of Orbits
- 8- Aberration
- 9- Comparison of Observation and Theory
- 10- The Method of Least Squares
- 11- The Differential Correction of Orbits
- 12- General Integrals. Equilimbrium Solutions
- 13- Variation of Arbitrary Constants
- 14- Lunar Theory
- 15- Pertuberations of the Coordinates
- 16- Hansen's Method
- 17- The Disturbing Function
- 18- Secular Pertuberations
- 19- Canonical Variables
"Methods of Celestial Mechanics" Description:
The Open Library:
Methods of Celestial Mechanics provides a comprehensive background of celestial mechanics for practical applications. Celestial mechanics is the branch of astronomy that is devoted to the motions of celestial bodies. This book is composed of 17 chapters, and begins with the concept of elliptic motion and its expansion. The subsequent chapters are devoted to other aspects of celestial mechanics, including gravity, numerical integration of orbit, stellar aberration, lunar theory, and celestial coordinates. Considerable chapters explore the principles and application of various mathematical methods. This book is of value to mathematicians, physicists, astronomers, and celestial researchers.
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