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Vector Mechanics for Engineers: Dynamics

Ferdinand P. Beer, E. Russell Johnston

Open publisher page 204 citations

Abstract

11 Kinematics of Particles12 Kinetics of Particles: Newton's Second Law13 Kinetics of Particles: Energy and Momentum Methods14 Systems of Particles15 Kinematics of Rigid Bodies16 Plane Motion of Rigid Bodies: Forces and Accelerations17 Plane Motion of Rigid Bodies: Energy and Momentum Methods18 Kinetics of Rigid Bodies in Three Dimensions19 Mechanical VibrationsAppendix A Some Useful Definitions and Properties of Vector AlgebraAppendix B Moments of Inertia of MassesAppendix C Fundamentals of Engineering Examination

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11 Kinematics of Particles12 Kinetics of Particles: Newton's Second Law13 Kinetics of Particles: Energy and Momentum Methods14 Systems of Particles15 Kinematics of Rigid Bodies16 Plane Motion of Rigid Bodies: Forces and Accelerations17 Plane Motion of Rigid Bodies: Energy and Momentum Methods18 Kinetics of Rigid Bodies in Three Dimensions19 Mechanical VibrationsAppendix A Some Useful Definitions and Properties of Vector AlgebraAppendix B Moments of Inertia of MassesAppendix C Fundamentals of Engineering Examination

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Available abstract

11 Kinematics of Particles12 Kinetics of Particles: Newton's Second Law13 Kinetics of Particles: Energy and Momentum Methods14 Systems of Particles15 Kinematics of Rigid Bodies16 Plane Motion of Rigid Bodies: Forces and Accelerations17 Plane Motion of Rigid Bodies: Energy and Momentum Methods18 Kinetics of Rigid Bodies in Three Dimensions19 Mechanical VibrationsAppendix A Some Useful Definitions and Properties of Vector AlgebraAppendix B Moments of Inertia of MassesAppendix C Fundamentals of Engineering Examination

Key concepts: Kinematics, Classical mechanics, Dynamics (music), Momentum (technical analysis), Inertia, Applied mechanics, Kinetics, Motion (physics)

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