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› Find signed collectible books: 'Basic Complex Analysis'
Basic Complex Analysis skillfully combines a clear exposition of core theory with a rich variety of applications. Designed for undergraduates in mathematics, the physical sciences, and engineering who have completed two years of calculus and are taking complex analysis for the first time..
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› Find signed collectible books: 'Basic Complex Analysis Student Guide'
The guide contains solutions to exercises marked with a bullet in the text.
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› Find signed collectible books: 'Basic Multivariable Calculus'
Basic Multivariable Calculus fills the need for a student-oriented text devoted exclusively to the third-semester course in multivariable calculus. In this text, the basic algebraic, analytic, and geometric concepts of multivariable and vector calculus are carefully explained, with an emphasis on developing the student's intuitive understanding and computational technique. A wealth of figures supports geometrical interpretation, while exercise sets, review sections, practice exams, and historical notes keep the students active in, and involved with, the mathematical ideas. All necessary linear algebra is developed within the text, and the material can be readily coordinated with computer laboratories. Basic Multivariable Calculus is the product of an extensive writing, revising, and class-testing collaboration by the authors of Calculus III (Springer-Verlag) and Vector Calculus (W.H. Freeman & Co.). Incorporating many features from these highly respected texts, it is both a synthesis of the authors' previous work and a new and original textbook.
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› Find signed collectible books: 'Basic Multivariable Calculus & Study Guide'
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› Find signed collectible books: 'Calculus'
› Find signed collectible books: 'Calculus: Student's Guide'
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› Find signed collectible books: 'Calculus Unlimited'
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› Find signed collectible books: 'Elementary Classical Analysis'
Designed for courses in advanced calculus and introductory real analysis, Elementary Classical Analysis strikes a careful balance between pure and applied mathematics with an emphasis on specific techniques important to classical analysis without vector calculus or complex analysis. Intended for students of engineering and physical science as well as of pure mathematics.
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› Find signed collectible books: 'Fluids and Plasmas: Geometry and Dynamics (Contemporary Mathematics)'
Book by Ams-Ims-Siam Joint Summer Research Conference in the Mathematical Scie, Marsden, Jerrold E.
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› Find signed collectible books: 'Foundations of Mechanics: 2nd Edition'
Book by Ralph Abraham, Jerrold E. Marsden, Tudor Ratiu, Richard Cushman
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› Find signed collectible books: 'Hamiltonian Reduction by Stages'
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› Find signed collectible books: 'Hamiltonian Reduction by Stages (Lecture Notes in Mathematics, Vol. 1913)'
This volume provides a detailed account of the theory of symplectic reduction by stages, along with numerous illustrations of the theory. It gives special emphasis to group extensions, including a detailed discussion of the Euclidean group, the oscillator group, the Bott-Virasoro group and other groups of matrices. The volume also provides ample background theory on symplectic reduction and cotangent bundle reduction.
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› Find signed collectible books: 'Im T/A Basic Multivariable Calc 3e Marsden'
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› Find signed collectible books: 'Instructor's guide to accompany Calculus'
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› Find signed collectible books: 'Introduction to Mechanics and Symmetry: A Basic Exposition of Classical Mechanical Systems (Texts in Applied Mathematics)'
Symmetry has always played an important role in mechanics, from fundamental formulations of basic principles to concrete applications. The theme of the book is to emphasize the role of symmetry in various aspects of mechanics. In recent times, this feature has accelerated because of new applications of symmetry techniques for studying integrable and chaotic systems, stability and bifurcation, as well as for obtaining new insight into specific rigid, fluid, plasma and elastic systems. Mechanics and Symmetry lays the basic foundation for these topics. It also covers reduction theory and includes numerous specific applications, making it beneficial to physicists and engineers. Unlike the competition, this text has specific examples and applications showing how the theory works, and up-to-date techniques, all of which makes it accessible to a wide variety of readers, especially senior undergraduate and graduate students in mathematics, physics and engineering.
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› Find signed collectible books: 'Lagrangian Reduction by Stages (Memoirs of the American Mathematical Society)'
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› Find signed collectible books: 'Lectures on Geometric Methods in Mathematical Physics (CBMS-NSF Regional Conference Series in Applied Mathematics)'
A monograph on some of the ways geometry and analysis can be used in mathematical problems of physical interest. The roles of symmetry, bifurcation and Hamiltonian systems in diverse applications are explored.
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› Find signed collectible books: 'Lectures on Mechanics (London Mathematical Society Lecture Note Series)'
The use of geometric methods in classical mechanics has proven fruitful, with wide applications in physics and engineering. In this book, Professor Marsden concentrates on these geometric aspects, especially on symmetry techniques. The main points he covers are: the stability of relative equilibria, which is analyzed using the block diagonalization technique; geometric phases, studied using the reduction and reconstruction technique; and bifurcation of relative equilibria and chaos in mechanical systems. A unifying theme for these points is provided by reduction theory, the associated mechanical connection and techniques from dynamical systems. These methods can be applied to many control and stabilization situations, and this is illustrated using rigid bodies with internal rotors, and the use of geometric phases in mechanical systems. To illustrate the above ideas and the power of geometric arguments, the author studies a variety of specific systems, including the double spherical pendulum and the classical rotating water molecule.
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› Find signed collectible books: 'Manifolds, Tensor Analysis and Applications (Global analysis, pure and applied)'
The purpose of this book is to provide core material in nonlinear analysis for mathematicians, physicists, engineers, and mathematical biologists. The main goal is to provide a working knowledge of manifolds, dynamical systems, tensors, and differential forms. Some applications to Hamiltonian mechanics, fluid me chanics, electromagnetism, plasma dynamics and control thcory arc given in Chapter 8, using both invariant and index notation. The current edition of the book does not deal with Riemannian geometry in much detail, and it does not treat Lie groups, principal bundles, or Morse theory. Some of this is planned for a subsequent edition. Meanwhile, the authors will make available to interested readers supplementary chapters on Lie Groups and Differential Topology and invite comments on the book's contents and development. Throughout the text supplementary topics are given, marked with the symbols ~ and {l:;J. This device enables the reader to skip various topics without disturbing the main flow of the text. Some of these provide additional background material intended for completeness, to minimize the necessity of consulting too many outside references. We treat finite and infinite-dimensional manifolds simultaneously. This is partly for efficiency of exposition. Without advanced applications, using manifolds of mappings, the study of infinite-dimensional manifolds can be hard to motivate.
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› Find signed collectible books: 'Manifolds, Tensor Analysis, and Applications (Applied Mathematical Sciences)'
The purpose of this book is to provide core material in nonlinear analysis for mathematicians, physicists, engineers, and mathematical biologists. The main goal is to provide a working knowledge of manifolds, dynamical systems, tensors, and differential forms. Some applications to Hamiltonian mechanics, fluid me chanics, electromagnetism, plasma dynamics and control thcory arc given in Chapter 8, using both invariant and index notation. The current edition of the book does not deal with Riemannian geometry in much detail, and it does not treat Lie groups, principal bundles, or Morse theory. Some of this is planned for a subsequent edition. Meanwhile, the authors will make available to interested readers supplementary chapters on Lie Groups and Differential Topology and invite comments on the book's contents and development. Throughout the text supplementary topics are given, marked with the symbols ~ and {l:;J. This device enables the reader to skip various topics without disturbing the main flow of the text. Some of these provide additional background material intended for completeness, to minimize the necessity of consulting too many outside references. We treat finite and infinite-dimensional manifolds simultaneously. This is partly for efficiency of exposition. Without advanced applications, using manifolds of mappings, the study of infinite-dimensional manifolds can be hard to motivate.
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› Find signed collectible books: 'Manifolds, Tensor Analysis, and Applications (Applied Mathematical Sciences) (v. 75)'
The purpose of this book is to provide core material in nonlinear analysis for mathematicians, physicists, engineers, and mathematical biologists. The main goal is to provide a working knowledge of manifolds, dynamical systems, tensors, and differential forms. Some applications to Hamiltonian mechanics, fluid me chanics, electromagnetism, plasma dynamics and control thcory arc given in Chapter 8, using both invariant and index notation. The current edition of the book does not deal with Riemannian geometry in much detail, and it does not treat Lie groups, principal bundles, or Morse theory. Some of this is planned for a subsequent edition. Meanwhile, the authors will make available to interested readers supplementary chapters on Lie Groups and Differential Topology and invite comments on the book's contents and development. Throughout the text supplementary topics are given, marked with the symbols ~ and {l:;J. This device enables the reader to skip various topics without disturbing the main flow of the text. Some of these provide additional background material intended for completeness, to minimize the necessity of consulting too many outside references. We treat finite and infinite-dimensional manifolds simultaneously. This is partly for efficiency of exposition. Without advanced applications, using manifolds of mappings, the study of infinite-dimensional manifolds can be hard to motivate.
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› Find signed collectible books: 'A Mathematical Introduction to Fluid Mechanics (Texts in Applied Mathematics)'
A presentation of some of the basic ideas of fluid mechanics in a mathematically attractive manner. The text illustrates the physical background and motivation for some constructions used in recent mathematical and numerical work on the Navier- Stokes equations and on hyperbolic systems, so as to interest students in this at once beautiful and difficult subject. This third edition incorporates a number of updates and revisions, while retaining the spirit and scope of the original book.
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› Find signed collectible books: 'Mathematical Aspects of Classical Field Theory: Proceedings of the Ams-Ims-Siam Joint Summer Research Conference Held July 20-26, 1991, With Support (Contemporary Mathematics)'
More editions of Mathematical Aspects of Classical Field Theory: Proceedings of the Ams-Ims-Siam Joint Summer Research Conference Held July 20-26, 1991, With Support (Contemporary Mathematics):
› Find signed collectible books: 'Mathematical Foundations of Elasticity (Dover Civil and Mechanical Engineering)'
This advanced-level study approaches mathematical foundations of three-dimensional elasticity using modern differential geometry and functional analysis. It is directed to mathematicians, engineers and physicists who wish to see this classical subject in a modern setting with examples of newer mathematical contributions. Prerequisites include a solid background in advanced calculus and the basics of geometry and functional analysis.
The first two chapters cover the background geometry developed as needed and use this discussion to obtain the basic results on kinematics and dynamics of continuous media. Subsequent chapters deal with elastic materials, linearization, variational principles, the use of functional analysis in elasticity, and bifurcation theory. Carefully selected problems are interspersed throughout, while a large bibliography rounds out the text.
Jerrold E. Marsden is Professor of Mathematics, University of California, Berkeley. Thomas J. R. Hughes is Professor of Mechanical Engineering, Stanford University.
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› Find signed collectible books: 'Mathematical Foundations of Elasticity (Prentice-Hall civil engineering and engineering mechanics series)'
This advanced-level study approaches mathematical foundations of three-dimensional elasticity using modern differential geometry and functional analysis. It is directed to mathematicians, engineers and physicists who wish to see this classical subject in a modern setting with examples of newer mathematical contributions. Prerequisites include a solid background in advanced calculus and the basics of geometry and functional analysis.
The first two chapters cover the background geometry developed as needed and use this discussion to obtain the basic results on kinematics and dynamics of continuous media. Subsequent chapters deal with elastic materials, linearization, variational principles, the use of functional analysis in elasticity, and bifurcation theory. Carefully selected problems are interspersed throughout, while a large bibliography rounds out the text.
Jerrold E. Marsden is Professor of Mathematics, University of California, Berkeley. Thomas J. R. Hughes is Professor of Mechanical Engineering, Stanford University.
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› Find signed collectible books: 'Uscd Marsden 5th Package'
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› Find signed collectible books: 'Vector Analysis: Instructor's Manual'
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› Find signed collectible books: 'Vector Calculus'
Vector Calculus helps students foster computational skills and intuitive understanding. This edition offers revised coverage in several areas and a new section looking at applications to Differential Geometry, Physics and Forms of Life as well as a large number of new exercises and expansion of the book's signature Historical Notes.
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› Find signed collectible books: 'Vector Calculus & Study Guide'
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› Find signed collectible books: 'Einführung in die Mechanik und Symmetrie: Eine grundlegende Darstellung klassischer mechanischer Systeme (Springer-Lehrbuch Masterclass) (German Edition)'
More editions of Einführung in die Mechanik und Symmetrie: Eine grundlegende Darstellung klassischer mechanischer Systeme (Springer-Lehrbuch Masterclass) (German Edition):
› Find signed collectible books: 'Manifolds, Tensor Analysis and Applications (Applied Mathematical Sciences)'
The purpose of this book is to provide core material in nonlinear analysis for mathematicians, physicists, engineers, and mathematical biologists. The main goal is to provide a working knowledge of manifolds, dynamical systems, tensors, and differential forms. Some applications to Hamiltonian mechanics, fluid me chanics, electromagnetism, plasma dynamics and control thcory arc given in Chapter 8, using both invariant and index notation. The current edition of the book does not deal with Riemannian geometry in much detail, and it does not treat Lie groups, principal bundles, or Morse theory. Some of this is planned for a subsequent edition. Meanwhile, the authors will make available to interested readers supplementary chapters on Lie Groups and Differential Topology and invite comments on the book's contents and development. Throughout the text supplementary topics are given, marked with the symbols ~ and {l:;J. This device enables the reader to skip various topics without disturbing the main flow of the text. Some of these provide additional background material intended for completeness, to minimize the necessity of consulting too many outside references. We treat finite and infinite-dimensional manifolds simultaneously. This is partly for efficiency of exposition. Without advanced applications, using manifolds of mappings, the study of infinite-dimensional manifolds can be hard to motivate.
More editions of Manifolds, Tensor Analysis and Applications (Applied Mathematical Sciences):
› Find signed collectible books: 'Calculo Vectorial (Tercera Edicion)'
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