ISBN: 0691044597

[SR: 2942942], Hardcover, [EAN: 9780691044590], Princeton University Press, Princeton University Press, Book, [PU: Princeton University Press], 1996-03-04, Princeton University Press, 277106, Aviation, 277107, Commercial, 277109, History, 277110, Pictorial, 277076, Transport, 59, Reference, 1025612, Subjects, 266239, Books, 277906, Theoretical & Mathematical Astronomy, 922068, Astronomy, 277886, Astronomy & Cosmology, 57, Science & Nature, 1025612, Subjects, 266239, Books, 278272, Aerospace & Aviation Technology, 278267, Aeronautics & Aerospace, 278115, Engineering & Technology, 57, Science & Nature, 1025612, Subjects, 266239, Books, 278268, Astronautics, 278267, Aeronautics & Aerospace, 278115, Engineering & Technology, 57, Science & Nature, 1025612, Subjects, 266239, Books, 922354, Mechanics, 278122, Civil Engineering, 278115, Engineering & Technology, 57, Science & Nature, 1025612, Subjects, 266239, Books, 922390, Engineering Physics, 278115, Engineering & Technology, 57, Science & Nature, 1025612, Subjects, 266239, Books, 278229, Mechanical & Materials Engineering, 278240, Dynamics & Vibration, 278232, Engineering Thermodynamics, 278250, Engines & Power Transmission, 278237, Fluid Mechanics, 278238, Hydraulics, 278233, Materials Science, 278247, Materials Testing, 278254, Mechanical Engineering, 278213, Polymers, 278115, Engineering & Technology, 57, Science & Nature, 1025612, Subjects, 266239, Books, 922864, Applied Physics, 278409, Physics, 57, Science & Nature, 1025612, Subjects, 266239, Books, 922952, Physics, 277889, Cosmology, 278439, Relativity, 922868, Popular Science, 57, Science & Nature, 1025612, Subjects, 266239, Books, 570600, Theoretical Physics, 564338, Astronomy & Cosmology, 564334, Scientific, Technical & Medical, 1025612, Subjects, 266239, Books, 571050, Mechanical & Material Engineering, 564346, Engineering, 564334, Scientific, Technical & Medical, 1025612, Subjects, 266239, Books

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1996, ISBN: 0691044597

[EAN: 9780691044590], Neubuch, [PU: Princeton University Press, United States], Science|Astrophysics & Space Science, Technology|Aeronautics & Astronautics, Language: English . This book usually ship within 10-15 business days and we will endeavor to dispatch orders quicker than this where possible. Brand New Book. Newton s laws of motion and his universal law of gravitation described mathematically the motion of two bodies undergoing mutual gravitational attraction. However, it is impossible to solve analytically the equation of motion for three gravitationally interacting bodies. This book discusses some techniques used to obtain numerical solutions of the equations of motion for planets and satellites, which are of fundamental importance to solar-system dynamicists and to those involved in planning the orbits of artificial satellites. The first part introduces the classical two-body problem and solves it by rigorously developing the six integrals of the motion, starting from Newton s three laws of motion and his law of gravitation and then using vector algebra to develop the integrals. The various forms of the solution flow naturally from the integrals. In the second part, several modern perturbation techniques are developed and applied to cases of practical importance. For example, the perturbed two-body problem for an oblate planet or for a nonsymmetric rotating planet is considered, as is the effect of drag on a satellite. The two-body problem is regularized, and the nonlinear differential equation is thereby transformed to a linear one by further embedding several of the integrals. Finally, a brief sketch of numerical methods is given, as the perturbation equations must be solved by numerical rather than by analytical methods.

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1996, ISBN: 0691044597

[EAN: 9780691044590], Neubuch, [PU: Princeton University Press, United States], Language: English. Brand new Book. Newton's laws of motion and his universal law of gravitation described mathematically the motion of two bodies undergoing mutual gravitational attraction. However, it is impossible to solve analytically the equation of motion for three gravitationally interacting bodies. This book discusses some techniques used to obtain numerical solutions of the equations of motion for planets and satellites, which are of fundamental importance to solar-system dynamicists and to those involved in planning the orbits of artificial satellites. The first part introduces the classical two-body problem and solves it by rigorously developing the six integrals of the motion, starting from Newton's three laws of motion and his law of gravitation and then using vector algebra to develop the integrals. The various forms of the solution flow naturally from the integrals. In the second part, several modern perturbation techniques are developed and applied to cases of practical importance. For example, the perturbed two-body problem for an oblate planet or for a nonsymmetric rotating planet is considered, as is the effect of drag on a satellite.The two-body problem is regularized, and the nonlinear differential equation is thereby transformed to a linear one by further embedding several of the integrals. Finally, a brief sketch of numerical methods is given, as the perturbation equations must be solved by numerical rather than by analytical methods.

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ISBN: 9780691044590

Newton''s laws of motion and his universal law of gravitation described mathematically the motion of two bodies undergoing mutual gravitational attraction. However, it is impossible to solve analytically the equation of motion for three gravitationally interacting bodies. This book discusses some techniques used to obtain numerical solutions of the equations of motion for planets and satellites, which are of fundamental importance to solar-system dynamicists and to those involved in planning the orbits of artificial satellites. The first part introduces the classical two-body problem and solves it by rigorously developing the six integrals of the motion, starting from Newton''s three laws of motion and his law of gravitation and then using vector algebra to develop the integrals. The various forms of the solution flow naturally from the integrals. In the second part, several modern perturbation techniques are developed and applied to cases of practical importance. For example, the perturbed two-body problem for an oblate planet or for a nonsymmetric rotating planet is considered, as is the effect of drag on a satellite. The two-body problem is regularized, and the nonlinear differential equation is thereby transformed to a linear one by further embedding several of the integrals. Finally, a brief sketch of numerical methods is given, as the perturbation equations must be solved by numerical rather than by analytical methods. Books > Science and Nature List_Books, [PU: Princeton University Press]

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1996, ISBN: 0691044597

[EAN: 9780691044590], Gebraucht, sehr guter Zustand, [PU: Princeton University Press 1996-03-24], Books is in very good condition. Some creases from wear.

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ISBN: 0691044597

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## Victor R. Bond, Mark C. Allman:

Modern Astrodynamics: Fundamentals and Perturbation Methods (Hardback)*- hardcover*

1996, ISBN: 0691044597

[EAN: 9780691044590], Neubuch, [PU: Princeton University Press, United States], Science|Astrophysics & Space Science, Technology|Aeronautics & Astronautics, Language: English . This book … More...

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1996

## ISBN: 0691044597

[EAN: 9780691044590], Neubuch, [PU: Princeton University Press, United States], Language: English. Brand new Book. Newton's laws of motion and his universal law of gravitation described m… More...

NEW BOOK. Shipping costs: EUR 0.56

ISBN: 9780691044590

Newton''s laws of motion and his universal law of gravitation described mathematically the motion of two bodies undergoing mutual gravitational attraction. However, it is impossible to so… More...

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1996, ISBN: 0691044597

[EAN: 9780691044590], Gebraucht, sehr guter Zustand, [PU: Princeton University Press 1996-03-24], Books is in very good condition. Some creases from wear.

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** Details of the book - Modern Astrodynamics: Fundamentals and Perturbation Methods**

EAN (ISBN-13): 9780691044590

ISBN (ISBN-10): 0691044597

Hardcover

Publishing year: 1996

Publisher: PRINCETON UNIV PR

264 Pages

Weight: 0,553 kg

Language: eng/Englisch

Book in our database since 2007-07-09T21:02:47+01:00 (London)

Detail page last modified on 2019-06-11T19:08:42+01:00 (London)

ISBN/EAN: 0691044597

ISBN - alternate spelling:

0-691-04459-7, 978-0-691-04459-0

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