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| 《工程力学.动力学(第10版 英文影印版)》 dynamics 12kinematics of a particle chapter objectives 12.1 introduction 12.2 rectilinear kinematics: continuous motion 12.3 rectilinear kinematics: erratic motion 12.4 general curvilinear motion 12.5 curvilinear motion: rectangular components 12.6 motion of a projectile 12.7 curvilinear motion: normal and tangential components 12.8 curvilinear motion: cylindrical components 12.9 absolute dependent motion analysis of two particles 12.10relative-motion analysis of two particles using translating axes 13kinetics of a partide: force and acceleration chapter objectives 13.1newton's laws of motion 13.2the equation of motion 13.3equation of motion for a system of particles 13.4equations of motion: rectangular coordinates .13.5 equations of motion: normal and tangential coordinates 13.6 equations of motion: cylindrical coordinates 13.7central-force motion and space mechanics 14kinetics of a partide: work and energy chapter objectives 14.1 the work of a force 14.2 principle of work and energy 14.3 principle of work and energy for a system of particles 14.4 power and efficiency 14.5 conservative forces and potential energy 14.6 conservation of energy 15kinetics of a partide: impulse and momentum chapter objectives 15.1 principle of linear impulse and momentum 15.2 principle of linear impulse and momentum for a system of particles 15.3 conservation of linear momentum for a system of particles 15.4 impact 15.5 angular momentum 15.6 relation between moment of a force and angular momentum 15.7 angular impulse and momentum principles 15.8steady fluid streams 15.9propulsion with variable mass review 1: kinematics and kinetics of a particle 16 planar kinematics of a rigid body chapter objectives 16.1 rigid-body motion 16.2 translation 16.3 rotation about a fixed axis 16.4 absolute general plane motion analysis 16.5 relative-motion analysis: velocity 16.6 instantaneous center of zero velocity 16.7 relative-motion analysis: acceleration 16.8 relative-motion analysis using rotating axes 17 planar kinetics of a rigid body: force and acceleration chapter objectives 17.1moment of inertia 17.2 planar kinetic equations of motion 17.3 equations of motion: translation 17.4 equations of motion: rotation about a fixed axes 17.5 equations of motion: general plane motion 18 planar kinetics of a rigid body: work and energy chapter objectives 18.1 kinetic energy 18.2 the work of a force 18.3 the work of a couple 18.4 principle of work and energy 18.5 conservation of energy 19 planar kinetics of a rigid body: impulse and momentum chapter objectives 19.1 linear and angular momentum 19.2 principle of impulse and momentum 19.3 conservation of momentum 19.4 eccentric impact review 2: planar kinematics and kinetics of a rigid body 20 three-dimensional kinematics of a rigid body chapter objectives 20.1rotation about a fixed point 20.2the time derivative of a vector measured from either a fixed and translating-rotating system 20.3general motion 20.4relative-motion analysis using translating and rotating axes 21 three-dimensional kinetics of a rigid body chapter objectives 21.1moments and products of inertia 21.2angular momentum 21.3kinetic energy 21.4equations of motion 21.5gyroscopic motion 21.6torque-free motion 22 vibrations chapter objectives 21.1undamped free vibration 21.2energy methods 21.3undamped forced vibration 21.4viscous damped free vibration 21.5viscous damped forced vibration 21.6electrical circuit analogs appendices a.mathematical expressions b.numerical and computer analysis c.vector analysis d.review for the fundamentals of engineering examination answers to selected problems index |
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