Modern Differential Geometry for Physicists

Modern Differential Geometry for Physicists
Author: Chris J. Isham
Publsiher: Allied Publishers
Total Pages: 308
Release: 2002
Genre: Geometry, Differential
ISBN: 8177643169

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Differential Geometry for Physicists

Differential Geometry for Physicists
Author: Bo-Yu Hou,Bo-Yuan Hou
Publsiher: World Scientific Publishing Company
Total Pages: 560
Release: 1997-10-31
Genre: Mathematics
ISBN: 9789813105096

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This book is divided into fourteen chapters, with 18 appendices as introduction to prerequisite topological and algebraic knowledge, etc. The first seven chapters focus on local analysis. This part can be used as a fundamental textbook for graduate students of theoretical physics. Chapters 8–10 discuss geometry on fibre bundles, which facilitates further reference for researchers. The last four chapters deal with the Atiyah-Singer index theorem, its generalization and its application, quantum anomaly, cohomology field theory and noncommutative geometry, giving the reader a glimpse of the frontier of current research in theoretical physics.

Differential Geometry and Lie Groups for Physicists

Differential Geometry and Lie Groups for Physicists
Author: Marián Fecko
Publsiher: Cambridge University Press
Total Pages: 11
Release: 2006-10-12
Genre: Science
ISBN: 9781139458030

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Covering subjects including manifolds, tensor fields, spinors, and differential forms, this textbook introduces geometrical topics useful in modern theoretical physics and mathematics. It develops understanding through over 1000 short exercises, and is suitable for advanced undergraduate or graduate courses in physics, mathematics and engineering.

Modern Differential Geometry in Gauge Theories

Modern Differential Geometry in Gauge Theories
Author: Anastasios Mallios
Publsiher: Springer Science & Business Media
Total Pages: 293
Release: 2006-07-27
Genre: Mathematics
ISBN: 9780817644741

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This is original, well-written work of interest Presents for the first time (physical) field theories written in sheaf-theoretic language Contains a wealth of minutely detailed, rigorous computations, ususally absent from standard physical treatments Author's mastery of the subject and the rigorous treatment of this text make it invaluable

Modern Differential Geometry for Physicists

Modern Differential Geometry for Physicists
Author: C. J. Isham
Publsiher: World Scientific Publishing Company
Total Pages: 182
Release: 1989
Genre: Electronic books
ISBN: 9971509563

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1. Differentiable manifolds -- 2. Lie groups -- 3. Fibre bundles

A Course in Modern Mathematical Physics

A Course in Modern Mathematical Physics
Author: Peter Szekeres
Publsiher: Cambridge University Press
Total Pages: 620
Release: 2004-12-16
Genre: Mathematics
ISBN: 0521829607

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This textbook, first published in 2004, provides an introduction to the major mathematical structures used in physics today.

Introductory Differential Geometry For Physicists

Introductory Differential Geometry For Physicists
Author: A Visconti
Publsiher: World Scientific Publishing Company
Total Pages: 424
Release: 1992-10-09
Genre: Electronic Book
ISBN: 9789813103887

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This book develops the mathematics of differential geometry in a way more intelligible to physicists and other scientists interested in this field. This book is basically divided into 3 levels; level 0, the nearest to intuition and geometrical experience, is a short summary of the theory of curves and surfaces; level 1 repeats, comments and develops upon the traditional methods of tensor algebra analysis and level 2 is an introduction to the language of modern differential geometry. A final chapter (chapter IV) is devoted to fibre bundles and their applications to physics. Exercises are provided to amplify the text material.

Differential Geometry in Physics

Differential Geometry in Physics
Author: Gabriel Lugo
Publsiher: Unknown
Total Pages: 372
Release: 2021-10-15
Genre: Electronic Book
ISBN: 1469669242

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Differential Geometry in Physics is a treatment of the mathematical foundations of the theory of general relativity and gauge theory of quantum fields. The material is intended to help bridge the gap that often exists between theoretical physics and applied mathematics. The approach is to carve an optimal path to learning this challenging field by appealing to the much more accessible theory of curves and surfaces. The transition from classical differential geometry as developed by Gauss, Riemann and other giants, to the modern approach, is facilitated by a very intuitive approach that sacrifices some mathematical rigor for the sake of understanding the physics. The book features numerous examples of beautiful curves and surfaces often reflected in nature, plus more advanced computations of trajectory of particles in black holes. Also embedded in the later chapters is a detailed description of the famous Dirac monopole and instantons. Features of this book: * Chapters 1-4 and chapter 5 comprise the content of a one-semester course taught by the author for many years. * The material in the other chapters has served as the foundation for many master's thesis at University of North Carolina Wilmington for students seeking doctoral degrees. * An open access ebook edition is available at Open UNC (https: //openunc.org) * The book contains over 80 illustrations, including a large array of surfaces related to the theory of soliton waves that does not commonly appear in standard mathematical texts on differential geometry.