Movement Equations 1

Location, Kinematics and Kinetics

Nonfiction, Science & Nature, Science, Physics, Mechanics
Cover of the book Movement Equations 1 by Michel Borel, Georges Vénizélos, Wiley
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Author: Michel Borel, Georges Vénizélos ISBN: 9781119361442
Publisher: Wiley Publication: September 16, 2016
Imprint: Wiley-ISTE Language: English
Author: Michel Borel, Georges Vénizélos
ISBN: 9781119361442
Publisher: Wiley
Publication: September 16, 2016
Imprint: Wiley-ISTE
Language: English

The set of books on Mechanical Engineering and Solid Mechanics, of which this book is the first volume, is an essential tool for those looking to develop a rigorous knowledge of the discipline, whether students, professionals (in search of an approach to a problem they are dealing with), or anyone else interested.

This volume deals with the elements required for establishing the equations of motion when dealing with solid bodies. Chapter 1 focuses on the systems of reference used to locate solid bodies relative to the observer, and demonstrates how to describe their position, orientation, and evolution during their motion. Chapter 2 introduces descriptors of motion such as velocity and acceleration, and develops the concept of torsor notation in relation to these descriptors. Finally, Chapter 3 concerns the notions of mass and inertia, as well as the kinetic torsor and dynamic torsor which consolidate the kinematic and kinetic aspects in a single concept.

View on Amazon View on AbeBooks View on Kobo View on B.Depository View on eBay View on Walmart

The set of books on Mechanical Engineering and Solid Mechanics, of which this book is the first volume, is an essential tool for those looking to develop a rigorous knowledge of the discipline, whether students, professionals (in search of an approach to a problem they are dealing with), or anyone else interested.

This volume deals with the elements required for establishing the equations of motion when dealing with solid bodies. Chapter 1 focuses on the systems of reference used to locate solid bodies relative to the observer, and demonstrates how to describe their position, orientation, and evolution during their motion. Chapter 2 introduces descriptors of motion such as velocity and acceleration, and develops the concept of torsor notation in relation to these descriptors. Finally, Chapter 3 concerns the notions of mass and inertia, as well as the kinetic torsor and dynamic torsor which consolidate the kinematic and kinetic aspects in a single concept.

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