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Engineering Mechanics 2: Strength of Materials
Engineering Mechanics 2: Strength of Materials
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This book follows the classical division of engineering mechanics as taught at universities in Germany and is devoted to strength of materials, i.e. the determination of stresses and of deformations in elastic bodies. The aim of this book is to provide students with a clear introduction and to enable them to formulate and solve engineering problems in this field. For this purpose, the book provides a number of examples. This book is intended for university students of mechanical engineering, ci…

Engineering Mechanics 2: Strength of Materials (el. knyga) (skaityta knyga) | knygos.lt

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This book follows the classical division of engineering mechanics as taught at universities in Germany and is devoted to strength of materials, i.e. the determination of stresses and of deformations in elastic bodies. The aim of this book is to provide students with a clear introduction and to enable them to formulate and solve engineering problems in this field. For this purpose, the book provides a number of examples.

This book is intended for university students of mechanical engineering, civil engineering, mechanics, but also all other courses in which the contents of this book play a role.

The Contents

Introduction to linear elasticity - Plane stress state - Bars - Beams - Beam deflections - Shear stresses in beams - Torsion - Energy methods - Buckling of bars

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This book follows the classical division of engineering mechanics as taught at universities in Germany and is devoted to strength of materials, i.e. the determination of stresses and of deformations in elastic bodies. The aim of this book is to provide students with a clear introduction and to enable them to formulate and solve engineering problems in this field. For this purpose, the book provides a number of examples.

This book is intended for university students of mechanical engineering, civil engineering, mechanics, but also all other courses in which the contents of this book play a role.

The Contents

Introduction to linear elasticity - Plane stress state - Bars - Beams - Beam deflections - Shear stresses in beams - Torsion - Energy methods - Buckling of bars

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