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Mechanics of Deformable Bodies

Mechanics of Deformable Bodies PDF Author: Arnold Sommerfeld
Publisher:
ISBN:
Category :
Languages : en
Pages : 396

Book Description


Mechanics of Deformable Bodies

Mechanics of Deformable Bodies PDF Author: Arnold Sommerfeld
Publisher:
ISBN:
Category :
Languages : en
Pages : 396

Book Description


Engineering Mechanics of Deformable Bodies

Engineering Mechanics of Deformable Bodies PDF Author: Edward Ford Byars
Publisher:
ISBN:
Category : Technology & Engineering
Languages : en
Pages : 470

Book Description


Fundamentals of Biomechanics

Fundamentals of Biomechanics PDF Author: Dawn L. Leger
Publisher: Springer Science & Business Media
ISBN: 1475730675
Category : Medical
Languages : en
Pages : 393

Book Description
Extensively revised from a successful first edition, this book features a wealth of clear illustrations, numerous worked examples, and many problem sets. It provides the quantitative perspective missing from more descriptive texts, without requiring an advanced background in mathematics, and as such will be welcomed for use in courses such as biomechanics and orthopedics, rehabilitation and industrial engineering, and occupational or sports medicine.

Mechanics of Deformable Bodies

Mechanics of Deformable Bodies PDF Author: Arnold Sommerfeld
Publisher: Elsevier
ISBN: 1483214281
Category : Science
Languages : en
Pages : 408

Book Description
Mechanics of Deformable Bodies: Lectures on Theoretical Physics, Volume II covers topics on the mechanics of deformable bodies. The book discusses the kinematics, statics, and dynamics of deformable bodies; the vortex theory; as well as the theory of waves. The test also describes flow with given boundaries. Supplementary notes on selected hydrodynamic problems, as well as supplements to the theory of elasticity are also provided. Physicists, mathematicians, and students taking related courses will find the book invaluable.

Mechanics of Deformable Solids

Mechanics of Deformable Solids PDF Author: Issam Doghri
Publisher: Springer Science & Business Media
ISBN: 3662041685
Category : Science
Languages : en
Pages : 587

Book Description
Three subjects of major interest in one textbook: linear elasticity, mechanics of structures in linear isotropic elasticity, and nonlinear mechanics including computational algorithms. After the simplest possible, intuitive approach there follows the mathematical formulation and analysis, with computational methods occupying a good portion of the book. There are several worked-out problems in each chapter and additional exercises at the end of the book, plus mathematical expressions are bery often given in more than one notation. The book is intended primarily for students and practising engineers in mechanical and civil engineering, although students and experts from applied mathematics, materials science and other related fields will also find it useful.

Introduction to the Mechanics of Deformable Solids

Introduction to the Mechanics of Deformable Solids PDF Author: David H. Allen
Publisher: Springer Science & Business Media
ISBN: 1461440033
Category : Science
Languages : en
Pages : 232

Book Description
Introduction to the Mechanics of Deformable Solids: Bars and Beams introduces the theory of beams and bars, including axial, torsion, and bending loading and analysis of bars that are subjected to combined loadings, including resulting complex stress states using Mohr’s circle. The book provides failure analysis based on maximum stress criteria and introduces design using models developed in the text. Throughout the book, the author emphasizes fundamentals, including consistent mathematical notation. The author also presents the fundamentals of the mechanics of solids in such a way that the beginning student is able to progress directly to a follow-up course that utilizes two- and three-dimensional finite element codes imbedded within modern software packages for structural design purposes. As such, excessive details included in the previous generation of textbooks on the subject are obviated due to their obsolescence with the availability of today’s finite element software packages.

Fundamentals of the Three-Dimensional Theory of Stability of Deformable Bodies

Fundamentals of the Three-Dimensional Theory of Stability of Deformable Bodies PDF Author: A.N. Guz
Publisher: Springer Science & Business Media
ISBN: 3540696334
Category : Science
Languages : en
Pages : 560

Book Description
At the present time stability theory of deformable systems has been developed into a manifold field within solid mechanics with methods, techniques and approaches of its own. We can hardly name a branch of industry or civil engineering where the results of the stability theory have not found their application. This extensive development together with engineering applications are reflected in a flurry of papers appearing in periodicals as well as in a plenty of monographs, textbooks and reference books. In so doing, overwhelming majority of researchers, con cerned with the problems of practical interest, have dealt with the loss of stability in the thin-walled structural elements. Trying to simplify solution of the problems, they have used two- and one-dimensional theories based on various auxiliary hypotheses. This activity contributed a lot to the preferential development of the stability theory of thin-walled structures and organisation of this theory into a branch of solid mechanics with its own up-to-date methods and trends, but left three-dimensional linearised theory of deformable bodies stability (TL TDBS), methods of solving and solutions of the three-dimensional stability problems themselves almost without attention. It must be emphasised that by three dimensional theories and problems in this book are meant those theories and problems which do not draw two-dimensional plate and shell and one-dimensional rod theories.

Deformable Bodies and Their Material Behavior

Deformable Bodies and Their Material Behavior PDF Author: Henry W. Haslach
Publisher:
ISBN:
Category : Science
Languages : en
Pages : 568

Book Description
ESSENTIAL TOOLS FOR AVOIDING MATERIAL FUNCTIONAL FAILURE Offering comprehensive, organized, and detailed coverage, Henry Haslach and Ronald Armstrong’s Deformable Bodies and Their Material Behavior present a quantitative description of the mechanical behavior of a broad range of deformable bodies under widely differing conditions and at a level sufficient to match real behavior, and introduces the key tools needed to avoid material functional failure. Covering stress and deformation analysis, material failure modes, and mechanical rest evaluations of material properties, this text provides the tools, insights, and knowledge needed to build a strong foundation for the design of mechanical devices. HIGHLIGHTS Considers most types of materials: metals, ceramics, fibered composites, concrete biological tissue, rubber, polymers, and wood. Focuses on the relationships between material properties of a deformable body and the forces and displacements applied to its boundary. Helps develop an appreciation for the approximations made in producing the mathematical models intended to predict mechanical response. Provides historical background on the definitions and models that designers commonly use, describing the practical reasons why these tools were invented.

Engineering Mechanics of Deformable Solids

Engineering Mechanics of Deformable Solids PDF Author: Sanjay Govindjee
Publisher: Oxford University Press
ISBN: 0199651647
Category : Mathematics
Languages : en
Pages : 355

Book Description
An explanation of the basic theory of engineering mechanics for mechanical, civil, and materials engineers. The presentation is concise and geared to more mathematically-oriented students and those looking to quickly refresh their understanding of engineering mechanics.

Advanced Mechanics of Solids

Advanced Mechanics of Solids PDF Author: Lester W. Schmerr
Publisher: Cambridge University Press
ISBN: 110884331X
Category : Science
Languages : en
Pages : 581

Book Description
Build on elementary mechanics of materials texts with this treatment of the analysis of stresses and strains in elastic bodies.