Orbital mechanics for engineering students [electronic resource] / Howard D. Curtis.

* A complete, stand-alone text for this core aerospace engineering subject * NEW: updated throughout, with new coverage of perturbations, Lambert's problem, attitude dynamics, and techniques for numerically integrating orbits * NEW: more examples and homework problems, more Matlab algorithms *...

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Bibliographic Details
Online Access: Full Text (via ScienceDirect)
Main Author: Curtis, Howard D.
Format: Electronic eBook
Language:English
Published: Kidlington, Oxford, UK ; Burlington, MA : Butterworth-Heinemann, ©2010.
Edition:2nd ed.
Series:Elsevier aerospace engineering series.
Subjects:

MARC

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245 1 0 |a Orbital mechanics for engineering students  |h [electronic resource] /  |c Howard D. Curtis. 
250 |a 2nd ed. 
260 |a Kidlington, Oxford, UK ;  |a Burlington, MA :  |b Butterworth-Heinemann,  |c ©2010. 
300 |a 1 online resource (xiii, 722 pages) :  |b illustrations. 
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490 1 |a Elsevier aerospace engineering series. 
500 |a Title from title screen (viewed on Apr 4, 2012) 
505 0 |a 1. Dynamics of Point Masses; -- 2. The Two-Body Problem; -- 3. Orbital Position as a Function of Time; -- 4. Orbits in Three Dimensions; -- 5. Preliminary Orbit Determination; -- 6. Orbital Maneuvers; -- 7. Relative Motion and Rendezvous; -- 8. Interplanetary Trajectories; -- 9. Rigid-Body Dynamics; -- 10. Satellite Attitude Dynamics; -- 11. Rocket Vehicle Dynamics; -- Appx A. Physical Data; -- Appx B.A Road Map; -- Appx C. Numerical Integration of the n-Body Equations of Motion; -- Appx D. Matlab Algorithms; -- Appx E. Gravitational Potential Energy of a Sphere. 
504 |a Includes bibliographical references (pages 707-708) and index. 
505 0 |a Dynamics of point masses -- The two-body problem -- Orbital position as a function of time -- Orbits in three dimensions -- Preliminary orbit determination -- Orbital maneuvers -- Relative motion and rendezvous -- Interplanetary trajectories -- Rigid-body dynamics -- Satellite attitude dynamics -- Rocket vehicle dynamics. 
520 |a * A complete, stand-alone text for this core aerospace engineering subject * NEW: updated throughout, with new coverage of perturbations, Lambert's problem, attitude dynamics, and techniques for numerically integrating orbits * NEW: more examples and homework problems, more Matlab algorithms * NEW: improved support material, including instructor solutions manual and lecture PowerPoint slides. * NEW: Reorganized and improved discusions of coordinate systems, new discussion on perturbations and quarternions * NEW: Increased coverage of attitude dynamics, including new Matlab algorithms and examples in chapter 10 * New examples and homework problems * Highly illustrated and fully supported with downloadable MATLAB algorithms for project and practical work; fully worked examples throughout; extensive homework exercises; Instructor's Manual and lecture slides. 
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