Schaum’s Outline of Engineering Mechanics Dynamics, 7th Edition
- Length: 336 pages
- Edition: 7
- Language: English
- Publisher: McGraw Hill
- Publication Date: 2021-02-01
- ISBN-10: 1260462862
- ISBN-13: 9781260462869
- Sales Rank: #188619 (See Top 100 Books)
An engineering major’s must have: The most comprehensive review of the required dynamics course―now updated to meet the latest curriculum and with access to Schaum’s improved app and website!
Tough Test Questions? Missed Lectures? Not Enough Time?
Fortunately, there’s Schaum’s.
More than 40 million students have trusted Schaum’s to help them succeed in the classroom and on exams. Schaum’s is the key to faster learning and higher grades in every subject. Each Outline presents all the essential course information in an easy-to-follow, topic-by-topic format. You also get hundreds of examples, solved problems, and practice exercises to test your skills.
This Schaum’s Outline gives you:
- 729 fully solved problems to reinforce knowledge
- 1 final practice exam
- Hundreds of examples with explanations of dynamics concepts
- Extra practice on topics such as rectilinear motion, curvilinear motion, rectangular components, tangential and normal components, and radial and transverse components
- Support for all the major textbooks for dynamics courses
- Access to revised Schaums.com website with access to 25 problem-solving videos and more.
Schaum’s reinforces the main concepts required in your course and offers hundreds of practice questions to help you succeed. Use Schaum’s to shorten your study time – and get your best test scores!
Cover Title Page Copyright Page Contents About the Authors Preface Chapter 1 Vectors 1.1 Definitions 1.2 Addition of Two Vectors 1.3 Subtraction of a Vector 1.4 Zero Vector 1.5 Composition of Vectors 1.6 Multiplication of Vectors by Scalars 1.7 Orthogonal Triad of Unit Vectors 1.8 Position Vector 1.9 Dot or Scalar Product 1.10 The Cross or Vector Product 1.11 Vector Calculus 1.12 Dimensions and Units The International System (SI) Solved Problems Supplementary Problems Chapter 2 Kinematics of a Particle 2.1 Kinematics 2.2 Rectilinear Motion 2.2.1 Projectile Motion 2.2.2 Harmonic Motion 2.3 Curvilinear Motion 2.3.1 Rectangular Components 2.3.2 Tangential and Normal Components 2.3.3 Radial and Transverse Components Solved Problems Supplementary Problems Chapter 3 Dynamics of a Particle 3.1 Newton’s Laws of Motion 3.2 Acceleration 3.3 D’Alembert’s Principle 3.4 Problems in Dynamics Solved Problems Supplementary Problems Chapter 4 Kinematics of a Rigid Body in Plane Motion 4.1 Plane Motion of a Rigid Body 4.2 Translation 4.3 Rotation 4.4 Instantaneous Axis of Rotation 4.5 The Coriolis Acceleration Solved Problems Supplementary Problems Chapter 5 Dynamics of a Rigid Body in Plane Motion 5.1 Vector Equations of Plane Motion 5.2 Scalar Equations of Plane Motion 5.3 Summary of the Equations 5.4 Translation of a Rigid Body 5.5 Rotation of a Rigid Body 5.6 Center of Percussion 5.7 Inertia Force Method for Rigid Bodies Solved Problems Supplementary Problems Chapter 6 Work and Energy 6.1 Work and Potential Energy 6.2 Power 6.3 Efficiency and Kinetic Energy 6.4 Work-Energy Relations for a Particle 6.5 Kinetic Energy of a Rigid Body 6.6 Work-Energy Relations for a Rigid Body Solved Problems Supplementary Problems Chapter 7 Impulse and Momentum 7.1 Impulse-Momentum Relation for a Particle 7.2 Impulse-Momentum Relation for an Assemblage of Particles 7.3 Angular Momentum 7.4 Relative Angular Momentum 7.5 Impact 7.6 Variable Mass Solved Problems Supplementary Problems Chapter 8 Mechanical Vibrations 8.1 Definitions 8.2 Simple Harmonic Motion 8.2.1 Free Vibrations—Linear 8.2.2 Free Vibrations—Angular 8.3 Free Vibrations with Viscous Damping 8.4 Forced Vibrations without Damping 8.5 Forced Vibrations with Viscous Damping 8.6 Multicomponent Systems Solved Problems Supplementary Problems Practice Final Exam Appendix A SI Units Appendix B Second Moments of Areas and Mass Moments of Inertia Index
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