Flow Characteristics, Reynolds Number ,Mach Number, Knudsen Number ,Limits of Aeronautic/Aerospace Flight ,Limits of Aero-Thermodynamic Heating ,Atmospheric Data, Aeronautic Flight ,Corridor ,Aerospace Flight Corridor ,Flight Envelope, Heating Problem ,Stagnation Temperatures ,Temperature Limits ,Summary of Skin Temperature ,Cooling Requirements, Flow Dynamics, Viscous Drag ,Laminar Flow Control ,Compliant Walls ,Riblets ,Large-Eddy Breakup Devices ,Surface Additives ,Drag due to Lift ,Interference Drag ,Wave Drag ,Vortex Drag ,Drag due to Speed ,Drag at Very Low Speeds ,Drag at Transonic Speeds ,Drag at Supersonic Speeds ,Drag Reduction Approaches ,Methods of Computation, Flow Phenomena ,Maximum Lift ,Boundary Layer Control ,Vortex Lift ,High-Lift Systems ,Powered vs. Unpowered Systems ,High-Lift Airfoils ,Pressure Distribution ,Multi-element Airfoils ,Design Issues for High-Lift ,Trailing- and Leading Edge Devices, Inviscid Methods ,Viscous Inviscid Methods ,Navier-Stokes Methods, Spacecraft Attitude Dynamics ,Euler’s Equations , Wiesel,Classical Euler Angles ,The Axisymmetric Case, The General Case,VII. Spacecraft Attitude Control 18, Spinning Spacecraft, Non-spinning Spacecraft, Gravity-Gradient Satellite, Dual-Spin Spacecraft, Gyroscopic Instruments, The Rate Gyro, The Integrating Gyro,Stable Platforms, Recent Developments.
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1. Wiesel, W.E., Spaceflight Dynamics, 2nd Edition, McGraw-Hill,1997.
2. Etkin, B., Reid, L.D., Dynamics of Flight, John Wiley.
3. McRuer, D., Met al, Aircraft Dynamics and Automatic Control, Princeton University Press.
4. Schmidt, L.V., Introduction to Aircraft Flight Dynamics, AIAA Education Series.
5. Huges, P.C., Spacecraft Attitude Dynamics, Wiley.
6. Thomson, W.T., Introduction to Space Dynamics, Wiley. 
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