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Craig A. Kluever - Space Flight Dynamics

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Space Flight Dynamics: summary, description and annotation

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Thorough coverage of space flight topics with self-contained chapters serving a variety of courses in orbital mechanics, spacecraft dynamics, and astronautics

This concise yet comprehensive book on space flight dynamics addresses all phases of a space mission: getting to space (launch trajectories), satellite motion in space (orbital motion, orbit transfers, attitude dynamics), and returning from space (entry flight mechanics). It focuses on orbital mechanics with emphasis on two-body motion, orbit determination, and orbital maneuvers with applications in Earth-centered missions and interplanetary missions.

Space Flight Dynamics presents wide-ranging information on a host of topics not always covered in competing books. It discusses relative motion, entry flight mechanics, low-thrust transfers, rocket propulsion fundamentals, attitude dynamics, and attitude control. The book is filled with illustrated concepts and real-world examples drawn from the space industry. Additionally, the book includes a computational toolbox composed of MATLAB M-files for performing space mission analysis.

Key features:

  • Provides practical, real-world examples illustrating key concepts throughout the book
  • Accompanied by a website containing MATLAB M-files for conducting space mission analysis
  • Presents numerous space flight topics absent in competing titles

Space Flight Dynamics is a welcome addition to the field, ideally suited for upper-level undergraduate and graduate students studying aerospace engineering.

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Table of Contents List of Tables Chapter 01 Chapter 02 Chapter 04 - photo 1
Table of Contents
List of Tables
  1. Chapter 01
  2. Chapter 02
  3. Chapter 04
  4. Chapter 05
  5. Chapter 06
  6. Chapter 09
  7. Chapter 10
  8. Chapter 11
  9. Chapter 13
  10. Appendix A
List of Illustrations
  1. Chapter 01
  2. Chapter 02
  3. Chapter 03
  4. Chapter 04
  5. Chapter 05
  6. Chapter 06
  7. Chapter 07
  8. Chapter 08
  9. Chapter 09
  10. Chapter 10
  11. Chapter 11
  12. Chapter 12
  13. Chapter 13
  14. Appendix B
  15. Appendix C
Guide
Pages
Aerospace Series
Space Flight DynamicsKlueverJanuary 2018
Introduction to Nonlinear AeroelasticityDimitriadisApril 2017
Introduction to Aerospace Engineering with a Flight Test PerspectiveCordaMarch 2017
Adaptive Aeroservoelastic ControlTewariMarch 2016
Theory and Practice of Aircraft PerformanceKundu, Price and RiordanNovember 2015
The Global Airline Industry, Second EditionBelobaba, Odoni and BarnhartJuly 2015
Modeling the Effect of Damage in Composite Structures: Simplified ApproachesKassapoglouMarch 2015
Introduction to Aircraft Aeroelasticity and Loads, 2nd EditionWright and CooperDecember 2014
Aircraft Aerodynamic Design: Geometry and OptimizationSbester and ForresterOctober 2014
Theoretical and Computational AerodynamicsSenguptaSeptember 2014
Aerospace PropulsionLeeOctober 2013
Aircraft Flight Dynamics and ControlDurhamAugust 2013
Civil Avionics Systems, 2nd EditionMoir, Seabridge and JukesAugust 2013
Modelling and Managing Airport PerformanceZografos, Andreatta and OdoniJuly 2013
Advanced Aircraft Design: Conceptual Design, Analysis and Optimization of Subsonic Civil AirplanesTorenbeekJune 2013
Design and Analysis of Composite Structures: With Applications to Aerospace Structures, 2nd EditionKassapoglouApril 2013
Aircraft Systems Integration of AirLaunched WeaponsRigbyApril 2013
Design and Development of Aircraft Systems, 2nd EditionMoir and SeabridgeNovember 2012
Understanding Aerodynamics: Arguing from the Real PhysicsMcLeanNovember 2012
Aircraft Design: A Systems Engineering ApproachSadraeyOctober 2012
Introduction to UAV Systems 4eFahlstrom and GleasonAugust 2012
Theory of Lift: Introductory Computational Aerodynamics with MATLAB and OctaveMcBainAugust 2012
Sense and Avoid in UAS: Research and ApplicationsAngelovApril 2012
Morphing Aerospace Vehicles and StructuresValasekApril 2012
Gas Turbine Propulsion SystemsMacIsaac and LangtonJuly 2011
Basic Helicopter Aerodynamics, 3rd EditionSeddon and NewmanJuly 2011
Advanced Control of Aircraft, Spacecraft and RocketsTewariJuly 2011
Cooperative Path Planning of Unmanned Aerial VehiclesTsourdos et alNovember 2010
Principles of Flight for PilotsSwattonOctober 2010
Air Travel and Health: A Systems PerspectiveSeabridge et alSeptember 2010
Design and Analysis of Composite Structures: With applications to aerospace StructuresKassapoglouSeptember 2010 April 2010
Unmanned Aircraft Systems: UAVS Design, Development and Deployment Austin
Introduction to Antenna Placement & InstallationsMacnamaraApril 2010
Principles of Flight SimulationAllertonOctober 2009
Aircraft Fuel SystemsLangton et alMay 2009
The Global Airline IndustryBelobabaApril 2009
Computational Modelling and Simulation of Aircraft and the Environment: Volume 1 Platform Kinematics and Synthetic EnvironmentDistonApril 2009
Handbook of Space TechnologyLey, Wittmann HallmannApril 2009
Aircraft Performance Theory and Practice for PilotsSwattonAugust 2008
Aircraft Systems, 3rd EditionMoir & SeabridgeMarch 2008
Introduction to Aircraft Aeroelasticity and LoadsWright & CooperDecember 2007
Stability and Control of Aircraft SystemsLangtonSeptember 2006
Military Avionics SystemsMoir & SeabridgeFebruary 2006
Design and Development of Aircraft SystemsMoir & SeabridgeJune 2004
Aircraft Loading and Structural LayoutHoweMay 2004
Aircraft Display SystemsJukesDecember 2003
Civil Avionics SystemsMoir & SeabridgeDecember 2002
Space Flight Dynamics

Craig A. Kluever

University of Missouri-Columbia, USA

This edition first published 2018 2018 John Wiley Sons Ltd All rights - photo 2

This edition first published 2018
2018 John Wiley & Sons Ltd

All rights reserved. No part of this publication may be reproduced, stored in a retrieval system, or transmitted, in any form or by any means, electronic, mechanical, photocopying, recording or otherwise, except as permitted by law. Advice on how to obtain permission to reuse material from this title is available at http://www.wiley.com/go/permissions.

The right of Craig A. Kluever to be identified as the author of this work has been asserted in accordance with law.

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Limit of Liability/Disclaimer of Warranty
MATLAB and Simulink is a trademark of The MathWorks, Inc. and is used with permission. The MathWorks does not warrant the accuracy of the text or exercises in this book. This works use or discussion of MATLAB software or related products does not constitute endorsement or sponsorship by The MathWorks of a particular pedagogical approach or particular use of the MATLAB software.
While the publisher and authors have used their best efforts in preparing this work, they make no representations or warranties with respect to the accuracy or completeness of the contents of this work and specifically disclaim all warranties, including without limitation any implied warranties of merchantability or fitness for a particular purpose. No warranty may be created or extended by sales representatives, written sales materials or promotional statements for this work. The fact that an organization, website, or product is referred to in this work as a citation and/or potential source of further information does not mean that the publisher and authors endorse the information or services the organization, website, or product may provide or recommendations it may make. This work is sold with the understanding that the publisher is not engaged in rendering professional services. The advice and strategies contained herein may not be suitable for your situation. You should consult with a specialist where appropriate. Further, readers should be aware that websites listed in this work may have changed or disappeared between when this work was written and when it is read. Neither the publisher nor authors shall be liable for any loss of profit or any other commercial damages, including but not limited to special, incidental, consequential, or other damages.

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