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Planar Multibody Dynamics - Formulation, Programming with MATLAB (R), and Applications, Second Edition (Hardcover, 2nd edition)
Loot Price: R774
Discovery Miles 7 740
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Planar Multibody Dynamics - Formulation, Programming with MATLAB (R), and Applications, Second Edition (Hardcover, 2nd edition)
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Planar Multibody Dynamics: Formulation, Programming with MATLAB
(R), and Applications, Second Edition, provides sets of
methodologies for analyzing the dynamics of mechanical systems,
such as mechanisms and machineries, with coverage of both classical
and modern principles. Using clear and concise language, the text
introduces fundamental theories, computational methods, and program
development for analyzing simple to complex systems. MATLAB is used
throughout, with examples beginning with basic commands before
introducing students to more advanced programming techniques. The
simple programs developed in each chapter come together to form
complete programs for different types of analysis. Features Two new
chapters on free-body diagram and vector-loop concepts demonstrate
that the modern computational techniques of formulating the
equations of motion is merely an organized and systematic
interpretation of the classical methods A new chapter on modeling
impact between rigid bodies is based on two concepts known as
continuous and piecewise methods A thorough discussion on modeling
friction and the associated computational issues The short MATLAB
(R) programs that are listed in the book can be downloaded from a
companion website Several other MATLAB (R) programs and their user
manuals can be downloaded from the companion website including: a
general purpose program for kinematic, inverse dynamic, and forward
dynamic analysis; a semi-general-purpose program that allows
student to experiment with his or her own formulation of equations
of motion; a special-purpose program for kinematic and inverse
dynamic analysis of four-bar mechanisms The preceding three sets of
programs contain animation capabilities for easy visualization of
the simulated motion A greater range of examples, problems, and
projects
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