"There are few courses in the engineering curriculum that cause students more difficulty than rigid-body dynamics. By laying out the foundations of the subject with precision and clarity through unambiguous notation and rigorous definitions, Engineering Dynamics goes a long way toward remedying this situation. Numerous examples with motivating applications demonstrate the underlying ideas and solution techniques. This landmark text stands apart in the field, and will be welcomed by students and instructors alike."
A Comprehensive Introduction Engineering Dynamics by N. Jeremy Kasdin, Derek A. Paley Overview
This textbook introduces undergraduate students to engineering dynamics using an innovative approach that is at once accessible and comprehensive. Combining the strengths of both beginner and advanced dynamics texts, this book has students solving dynamics problems from the very start and gradually guides them from the basics to increasingly more challenging topics without ever sacrificing rigor.
Engineering Dynamics spans the full range of mechanics problems, from one-dimensional particle kinematics to three-dimensional rigid-body dynamics, including an introduction to Lagrange's and Kane's methods. It skillfully blends an easy-to-read, conversational style with careful attention to the physics and mathematics of engineering dynamics, and emphasizes the formal systematic notation students need to solve problems correctly and succeed in more advanced courses. This richly illustrated textbook features numerous real-world examples and problems, incorporating a wide range of difficulty; ample use of MATLAB for solving problems; helpful tutorials; suggestions for further reading; and detailed appendixes.
Provides an accessible yet rigorous introduction to engineering dynamics
Uses an explicit vector-based notation to facilitate understanding
Engineering Dynamics spans the full range of mechanics problems, from one-dimensional particle kinematics to three-dimensional rigid-body dynamics, including an introduction to Lagrange's and Kane's methods. It skillfully blends an easy-to-read, conversational style with careful attention to the physics and mathematics of engineering dynamics, and emphasizes the formal systematic notation students need to solve problems correctly and succeed in more advanced courses. This richly illustrated textbook features numerous real-world examples and problems, incorporating a wide range of difficulty; ample use of MATLAB for solving problems; helpful tutorials; suggestions for further reading; and detailed appendixes.
Provides an accessible yet rigorous introduction to engineering dynamics
Uses an explicit vector-based notation to facilitate understanding
A Comprehensive Introduction Engineering Dynamics by N. Jeremy Kasdin, Derek A. Paley Review
There are many great books on Engineering Dynamics out there and this book is one of them. However, what really sets this book apart from others is its unique and unorthodox approach in helping students to learn engineering dynamics. This author addresses the 2 most important components in learning this subject - Physics and Mathematics. Each one is treated separately and from the ground up starting with qualitative definition of dynamics concepts followed by basic mechanics with some problem solving at very early stages before delving more in-depth into Newton's laws where their meanings are explained to enable students to realize the advantages and pitfalls in using Newtonian and how they can be complemented by Lagrangian method. Basics like reference frames, velocity and vectors and physics of motions are all consolidated in early chapters and given the utmost treatments by the author instead of breaking them up as introduction in individual topics. This way, students are able to build a concrete foundation to prepare them for more advanced discussions. Equipped with these basics, students are able to understand that solving problems in motions is about finding equations to predict their trajectories rather than giving those formulations to students without requiring them to understand the underlying principles. The rest of the chapters are very similar to other texts covering particle dynamics, motion of multiparticle system, rigid body dynamics and so on. There's another notable feature which is Tutorial section that acts as chapter summary to remind student once again on the important concepts through various scenarios and by relating to concepts and techniques from other chapters.This book is also a great source for educators who are looking for more effective ways to impart knowledge to students, be it engineering, biology, chemistry or any other sciences. This book can also be a great companion to Fundamentals of Applied Dynamics by James H. Williams, Jr.
If only Amazona allows 6-star rating.
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