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Fundamentals of Astrodynamics: Second Edition

- Second Edition

About Fundamentals of Astrodynamics: Second Edition

Developed at the U.S. Air Force Academy, this teaching text is widely known and used throughout the astrodynamics and aerospace engineering communities. Completely revised and updated, this second edition takes into account new developments of the past four decades, especially regarding information technology. Central emphasis is placed on the use of the universal variable formulation, although classical methods are also discussed. The development of the basic two-body and n-body equations of motion serves as a foundation for all that follows. Subsequent topics include orbit determination and the classical orbital elements, coordinate transformations, and differential correction. The Kepler and Gauss problems are treated in detail, and two-body mechanics are applied to the ballistic missile problem. Perturbations, integration schemes and error, and analytic formulations of several common perturbations are introduced. Example problems and exercises appear throughout the text, along with photographs, diagrams, and drawings. Four helpful appendixes conclude the book. Revised and updated reprint of the 1971 Dover original publication. www.doverpublications.com

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  • Language:
  • English
  • ISBN:
  • 9780486497044
  • Binding:
  • Paperback
  • Pages:
  • 496
  • Published:
  • February 28, 2020
  • Edition:
  • Dimensions:
  • 215x230x23 mm.
  • Weight:
  • 522 g.
  In stock
Delivery: 3-5 business days
Expected delivery: December 5, 2024

Description of Fundamentals of Astrodynamics: Second Edition

Developed at the U.S. Air Force Academy, this teaching text is widely known and used throughout the astrodynamics and aerospace engineering communities. Completely revised and updated, this second edition takes into account new developments of the past four decades, especially regarding information technology. Central emphasis is placed on the use of the universal variable formulation, although classical methods are also discussed. The development of the basic two-body and n-body equations of motion serves as a foundation for all that follows. Subsequent topics include orbit determination and the classical orbital elements, coordinate transformations, and differential correction. The Kepler and Gauss problems are treated in detail, and two-body mechanics are applied to the ballistic missile problem. Perturbations, integration schemes and error, and analytic formulations of several common perturbations are introduced. Example problems and exercises appear throughout the text, along with photographs, diagrams, and drawings. Four helpful appendixes conclude the book. Revised and updated reprint of the 1971 Dover original publication. www.doverpublications.com

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