Elasticity and Geometry

Elasticity and Geometry
Author :
Publisher : Oxford University Press
Total Pages : 597
Release :
ISBN-10 : 9780198506256
ISBN-13 : 0198506252
Rating : 4/5 (56 Downloads)

Synopsis Elasticity and Geometry by : Basile Audoly

We experience elasticity everywhere in everyday life. This book covers several modern aspects of the established field of elasticity theory, applying general methods of classical analysis including advanced nonlinear aspects to derive detailed solutions to specific problems. It can serve as an introduction to nonlinear methods in science.

Mathematical Foundations of Elasticity

Mathematical Foundations of Elasticity
Author :
Publisher : Courier Corporation
Total Pages : 578
Release :
ISBN-10 : 9780486142272
ISBN-13 : 0486142272
Rating : 4/5 (72 Downloads)

Synopsis Mathematical Foundations of Elasticity by : Jerrold E. Marsden

Graduate-level study approaches mathematical foundations of three-dimensional elasticity using modern differential geometry and functional analysis. It presents a classical subject in a modern setting, with examples of newer mathematical contributions. 1983 edition.

An Introduction to Differential Geometry with Applications to Elasticity

An Introduction to Differential Geometry with Applications to Elasticity
Author :
Publisher : Springer Science & Business Media
Total Pages : 212
Release :
ISBN-10 : 9781402042485
ISBN-13 : 1402042485
Rating : 4/5 (85 Downloads)

Synopsis An Introduction to Differential Geometry with Applications to Elasticity by : Philippe G. Ciarlet

curvilinear coordinates. This treatment includes in particular a direct proof of the three-dimensional Korn inequality in curvilinear coordinates. The fourth and last chapter, which heavily relies on Chapter 2, begins by a detailed description of the nonlinear and linear equations proposed by W.T. Koiter for modeling thin elastic shells. These equations are “two-dimensional”, in the sense that they are expressed in terms of two curvilinear coordinates used for de?ning the middle surface of the shell. The existence, uniqueness, and regularity of solutions to the linear Koiter equations is then established, thanks this time to a fundamental “Korn inequality on a surface” and to an “in?nit- imal rigid displacement lemma on a surface”. This chapter also includes a brief introduction to other two-dimensional shell equations. Interestingly, notions that pertain to di?erential geometry per se,suchas covariant derivatives of tensor ?elds, are also introduced in Chapters 3 and 4, where they appear most naturally in the derivation of the basic boundary value problems of three-dimensional elasticity and shell theory. Occasionally, portions of the material covered here are adapted from - cerpts from my book “Mathematical Elasticity, Volume III: Theory of Shells”, published in 2000by North-Holland, Amsterdam; in this respect, I am indebted to Arjen Sevenster for his kind permission to rely on such excerpts. Oth- wise, the bulk of this work was substantially supported by two grants from the Research Grants Council of Hong Kong Special Administrative Region, China [Project No. 9040869, CityU 100803 and Project No. 9040966, CityU 100604].

Introduction to Numerical Linear Algebra and Optimisation

Introduction to Numerical Linear Algebra and Optimisation
Author :
Publisher : Cambridge University Press
Total Pages : 456
Release :
ISBN-10 : 0521339847
ISBN-13 : 9780521339841
Rating : 4/5 (47 Downloads)

Synopsis Introduction to Numerical Linear Algebra and Optimisation by : Philippe G. Ciarlet

The purpose of this book is to give a thorough introduction to the most commonly used methods of numerical linear algebra and optimisation. The prerequisites are some familiarity with the basic properties of matrices, finite-dimensional vector spaces, advanced calculus, and some elementary notations from functional analysis. The book is in two parts. The first deals with numerical linear algebra (review of matrix theory, direct and iterative methods for solving linear systems, calculation of eigenvalues and eigenvectors) and the second, optimisation (general algorithms, linear and nonlinear programming). The author has based the book on courses taught for advanced undergraduate and beginning graduate students and the result is a well-organised and lucid exposition. Summaries of basic mathematics are provided, proofs of theorems are complete yet kept as simple as possible, and applications from physics and mechanics are discussed. Professor Ciarlet has also helpfully provided over 40 line diagrams, a great many applications, and a useful guide to further reading. This excellent textbook, which is translated and revised from the very successful French edition, will be of great value to students of numerical analysis, applied mathematics and engineering.

Outlines and Highlights for Elasticity and Geometry

Outlines and Highlights for Elasticity and Geometry
Author :
Publisher : Academic Internet Pub Incorporated
Total Pages : 126
Release :
ISBN-10 : 1467266906
ISBN-13 : 9781467266901
Rating : 4/5 (06 Downloads)

Synopsis Outlines and Highlights for Elasticity and Geometry by : Cram101 Textbook Reviews

Never HIGHLIGHT a Book Again! Virtually all of the testable terms, concepts, persons, places, and events from the textbook are included. Cram101 Just the FACTS101 studyguides give all of the outlines, highlights, notes, and quizzes for your textbook with optional online comprehensive practice tests. Only Cram101 is Textbook Specific. Accompanys: 9780198506256 .

Geometric Methods in the Elastic Theory of Membranes in Liquid Crystal Phases

Geometric Methods in the Elastic Theory of Membranes in Liquid Crystal Phases
Author :
Publisher : World Scientific
Total Pages : 252
Release :
ISBN-10 : 9810232489
ISBN-13 : 9789810232481
Rating : 4/5 (89 Downloads)

Synopsis Geometric Methods in the Elastic Theory of Membranes in Liquid Crystal Phases by : Zhong-Can Ou-Yang

This book contains a comprehensive description of the mechanical equilibrium and deformation of membranes as a surface problem in differential geometry. Following the pioneering work by W Helfrich, the fluid membrane is seen as a nematic or smectic ? A liquid crystal film and its elastic energy form is deduced exactly from the curvature elastic theory of the liquid crystals. With surface variation the minimization of the energy at fixed osmotical pressure and surface tension gives a completely new surface equation in geometry that involves potential interest in mathematics. The investigations of the rigorous solution of the equation that have been carried out in recent years by the authors and their co-workers are presented here, among which the torus and the discocyte (the normal shape of the human red blood cell) may attract attention in cell biology. Within the framework of our mathematical model by analogy with cholesteric liquid crystals, an extensive investigation is made of the formation of the helical structures in a tilted chiral lipid bilayer, which has now become a hot topic in the fields of soft matter and biomembranes.

Studyguide for Elasticity and Geometry

Studyguide for Elasticity and Geometry
Author :
Publisher : Cram101
Total Pages : 98
Release :
ISBN-10 : 1478485639
ISBN-13 : 9781478485636
Rating : 4/5 (39 Downloads)

Synopsis Studyguide for Elasticity and Geometry by : Cram101 Textbook Reviews

Never HIGHLIGHT a Book Again Virtually all testable terms, concepts, persons, places, and events are included. Cram101 Textbook Outlines gives all of the outlines, highlights, notes for your textbook with optional online practice tests. Only Cram101 Outlines are Textbook Specific. Cram101 is NOT the Textbook. Accompanys: 9780521673761

Geometry and Billiards

Geometry and Billiards
Author :
Publisher : American Mathematical Soc.
Total Pages : 192
Release :
ISBN-10 : 9780821839195
ISBN-13 : 0821839195
Rating : 4/5 (95 Downloads)

Synopsis Geometry and Billiards by : Serge Tabachnikov

Mathematical billiards describe the motion of a mass point in a domain with elastic reflections off the boundary or, equivalently, the behavior of rays of light in a domain with ideally reflecting boundary. From the point of view of differential geometry, the billiard flow is the geodesic flow on a manifold with boundary. This book is devoted to billiards in their relation with differential geometry, classical mechanics, and geometrical optics. Topics covered include variational principles of billiard motion, symplectic geometry of rays of light and integral geometry, existence and nonexistence of caustics, optical properties of conics and quadrics and completely integrable billiards, periodic billiard trajectories, polygonal billiards, mechanisms of chaos in billiard dynamics, and the lesser-known subject of dual (or outer) billiards. The book is based on an advanced undergraduate topics course. Minimum prerequisites are the standard material covered in the first two years of college mathematics (the entire calculus sequence, linear algebra). However, readers should show some mathematical maturity and rely on their mathematical common sense. A unique feature of the book is the coverage of many diverse topics related to billiards, for example, evolutes and involutes of plane curves, the four-vertex theorem, a mathematical theory of rainbows, distribution of first digits in various sequences, Morse theory, the Poincare recurrence theorem, Hilbert's fourth problem, Poncelet porism, and many others. There are approximately 100 illustrations. The book is suitable for advanced undergraduates, graduate students, and researchers interested in ergodic theory and geometry. This volume has been copublished with the Mathematics Advanced Study Semesters program at Penn State.

Geometry and Physics

Geometry and Physics
Author :
Publisher : Springer Science & Business Media
Total Pages : 226
Release :
ISBN-10 : 9783642005411
ISBN-13 : 3642005411
Rating : 4/5 (11 Downloads)

Synopsis Geometry and Physics by : Jürgen Jost

"Geometry and Physics" addresses mathematicians wanting to understand modern physics, and physicists wanting to learn geometry. It gives an introduction to modern quantum field theory and related areas of theoretical high-energy physics from the perspective of Riemannian geometry, and an introduction to modern geometry as needed and utilized in modern physics. Jürgen Jost, a well-known research mathematician and advanced textbook author, also develops important geometric concepts and methods that can be used for the structures of physics. In particular, he discusses the Lagrangians of the standard model and its supersymmetric extensions from a geometric perspective.