Mechanisms and Machines: Kinematics, Dynamics, and Synthesis (SI)
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A large number of automotive-based examples are included in the text -- these examples are a highly engaging feature for students.
This is the only text that consistently uses the Vector Loop method throughout the text.
Subject matter presented entirely in terms of kinematic coefficients, including geartrains, mechanical advantage, limit positions and dead positions.
Final two chapters deal with mechanism synthesis and stand apart from the first seven chapters which focus entirely on analysis.
1.Introduction.
2.Kinematic Analysis PART I: VECTOR LOOP METHOD.
3.Kinematic Analysis PART II: ROLLING CONTACTS.
4.Kinematic Analysis PART III: KINEMATIC COEFFICIENTS.
5.Machine Dynamics PART I: THE INVERSE DYNAMICS PROBLEM.
6.Machine Dynamics PART II: JOINT FRICTION.
7.Machine Dynamics PART III: THE POWER EQUATION.
8.Mechanism Synthesis PART I: FREUDENSTEIN'S EQUATION.
9.Mechanism Synthesis PART II: RIGID BODY GUIDANCE.
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1160
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1079
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81元
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INTRODUCTION TO APPLIED NUMERICAL ANALYSIS, AN
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his book is based on lecture notes for a numerical analysis course designed mainly for senior undergraduate students majoring in mathematics, engineering, computer science and physical sciences.
The book has two overarching goals. The first goal is to introduce different available numerical procedures for finding solutions to linear equations, roots of polynomial equations, interpolation and approximation, numerical differentiation and integration, differential equations, and error analysis. The second goal is to translate theory into practice through applying commonly used numerical methods in mathematics, physical sciences, biomedical sciences, and engineering.
This book was crafted in an informal and user-friendly manner to motivate the study of the material being covered. Ample figures and numerical tables are presented to enhance the reader's ease of understanding of the material under consideration.
Sample Chapter(s)
Preface
Chapter 7: Boundary Value Problems
Contents:
Preliminaries
Solution of Linear System of Equations
Roots of Nonlinear Equations
Polynomial Approximation and Interpolation
Differentiation and Integration
Initial Value Problems
Boundary Value Problems
Partial Differential Equations
Readership: Undergraduate students in Mathematics, Statistics, Physics, Engineering and Computer Science, biomedical, and any Course dealing with numerical calculations and computations.
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