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Statics Dynamics 9th Ed Upper Saddle River New Jersey 2001 Russell C Hibbeler

  • SKU: BELL-235760986
Statics Dynamics 9th Ed Upper Saddle River New Jersey 2001 Russell C Hibbeler
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Statics Dynamics 9th Ed Upper Saddle River New Jersey 2001 Russell C Hibbeler instant download after payment.

Publisher: Prentice Hall College Div.
File Extension: PDF
File size: 764.52 MB
Author: Russell C. Hibbeler, R.C. Hibbeler, Russell Charles Hibbeler
ISBN: 9780130294357, 9780130200068, 9780130907578, 0130294357, 0130200069, 013090757X
Language: English
Year: 2001
Edition: 9th ed, Upper Saddle River, New Jersey, 2001

Product desciption

Statics Dynamics 9th Ed Upper Saddle River New Jersey 2001 Russell C Hibbeler by Russell C. Hibbeler, R.c. Hibbeler, Russell Charles Hibbeler 9780130294357, 9780130200068, 9780130907578, 0130294357, 0130200069, 013090757X instant download after payment.

This best-selling book offers a concise and thorough presentation of engineering mechanics theory and application. The material is reinforced with numerous examples to illustrate principles and imaginative, well-illustrated problems of varying degrees of difficulty. The book is committed to developing its users' problem-solving skills and includes pedagogical features that have made Hibbeler synonymous with excellence in the field. The Ninth Edition has been updated to offer insightful new problems, improved examples, and a stronger supplement package. Chapter topics cover general principles, force vectors, equilibrium of a particle, force system resultants, equilibrium of a rigid body, structural analysis, internal forces, friction, center of gravity and centroid, moments of inertia, virtual work, kinematics of a particle, kinetics of a particle: force and acceleration, kinetics of a particle: work and energy, kinetics of a particle: impulse and momentum, planar kinematics of a rigid body, planar kinetics of a rigid body: force and acceleration, planar kinetics of a rigid body: work and energy, planar kinetics of a rigid body: impulse and momentum, three-dimensional kinematics of a rigid body, three-dimensional kinetics of a rigid body, and vibrations.