1 edition of **Finsler Geometry, Relativity and Gauge Theories** found in the catalog.

- 370 Want to read
- 38 Currently reading

Published
**1985**
by Springer Netherlands in Dordrecht
.

Written in English

- Physics

**Edition Notes**

Statement | by G.S. Asanov |

Series | Fundamental Theories of Physics, A New International Book Series on the Fundamental Theories of Physics: Their Clarification, Development and Application -- 12, Fundamental Theories of Physics, A New International Book Series on the Fundamental Theories of Physics: Their Clarification, Development and Application -- 12. |

Classifications | |
---|---|

LC Classifications | QC19.2-20.85 |

The Physical Object | |

Format | [electronic resource] / |

Pagination | 1 online resource (384 pages). |

Number of Pages | 384 |

ID Numbers | |

Open Library | OL27038879M |

ISBN 10 | 9401088535, 9400953291 |

ISBN 10 | 9789401088534, 9789400953291 |

OCLC/WorldCa | 851389658 |

^-^Read Online: Finsler Geometry, Relativity and Gauge Theories (Fundamental Theories of Physics) by G.S. Asanov #PDF#Download ^-^Read Online: Fire in the . Interactions and Strings in Higher Order Anisotropic and Inhomogeneous Superspaces and Isospaces (summary of monograph).

Gauge vector–tensor gravity (GVT) is a relativistic generalization of Mordehai Milgrom's modified Newtonian dynamics (MOND) paradigm where gauge fields cause the MOND behavior. The former covariant realizations of MOND such as the Bekenestein's tensor–vector–scalar gravity and the Moffat's scalar–tensor–vector gravity attribute MONDian behavior to some scalar fields. Lagrange Geometry, applications of Finsler and Lagrange geometry to grav-itation, gauge and spinor theory as well as Einstein equations, deviation of geodesics, tidal forces, weak gravitational ﬁelds, gravitational waves. He is co-author in the monograph ”Introduction to the Physical Principles of Dif-ferential Geometry”, in Russian.

The first pages of this book are almost entirely about differential geometry. Weyl gives a lot of intuitive and philosophical insight into the geometry which underlies general relativity. The rest of the book is about special and general relativity. This is an enjoyable book to read. [3] Cohen A G, Glashow S L. Very special relativity. Phys Rev Lett, , Google Scholar [4] Gibbons G W, Gomis J, Pope C N. General very special relativity is .

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Finsler Geometry, Relativity and Gauge Theories (Fundamental Theories of Physics) th Edition byCited by: Find many great new & used options and get the best deals for Fundamental Theories of Physics: Finsler Geometry, Relativity and Gauge Theories 12 by G. Asanov (, Hardcover) at the best online prices at eBay.

Free shipping for many products. @article{osti_, title = {Finsler geometry, relativity and gauge theories}, author = {Asanov, G.S.}, abstractNote = {The author provides an account of the Finslerian techniques aimed to synthesizing the ideas of the Finslerian metrical generalization of the Riemannian geometry to merge with the primary physical concepts of the general relativity and gauge field theories.

Finsler Geometry, Relativity and Gauge Theories. Authors generalization of Riemannian geometry justify the attempt to systematize the basic techniques for extending general relativity on the basis of Finsler geometry.

It is this endeavour that forms the subject matter of the present book. The book has been written in such a way that the. Finsler Geometry, Relativity and Gauge Theories by G.S.

Asanov,available at Book Depository with free delivery worldwide. Finsler Geometry, Relativity and Gauge Theories. Authors (view affiliations) generalization of Riemannian geometry justify the attempt to systematize the basic techniques for extending general relativity on the basis of Finsler geometry.

It is this endeavour that forms the subject matter of the present book. The book has been written in. Get this from a library. Finsler Geometry, Relativity and Gauge Theories. [G S Asanov] -- The methods of differential geometry have been so completely merged nowadays with physical concepts that general relativity may well be considered to be a physical theory of the geometrical.

ISBN: OCLC Number: Description: x, pages ; 25 cm. Contents: A. Motivation and Outline of the Book.- B. Introduction to Finsler.

Finsler Geometry, Relativity and Gauge Theories (Fundamental Theories of Physics) Author Asanov, G.S Format/binding Hardcover Book condition Used - Good Quantity available 1 Binding Hardcover ISBN 10 ISBN 13 Publisher Springer This edition first published The theory of gauge transformations in Finsler space is applied to general relativity.

It is seen that the transformations produce new metrics which correspond to the introduction of physical fields. Relativistic Finsler geometry. ”Finsler Geometry, Relativity and Gauge Theories” Reidel Pub of the general relativity and gauge field theories. The key points of the book are the.

Asanov G.S. () Parametrical Representation of Physical Fields. The Relevance to Gauge Theories. In: Finsler Geometry, Relativity and Gauge Theories. Fundamental Theories of Physics (A New International Book Series on the Fundamental Theories of Physics: Their Clarification, Development and Application), vol Springer, DordrechtAuthor: G.

Asanov. There is a recent interest for a new physics beyond the Standard Model related to Finsler theories of curved spacetime and quantum gravity and possible applications in modern cosmology, see, and references therein. Such theories constructed on tangent bundles of spacetime manifolds are positively with local Lorentz violations which may be related to new directions in particle physics and Cited by: Abstract.

We study the different types of Finsler space with -metrics which have nonholonomic frames as an application for classical mechanics and dynamics in physics using gauge transformation which helps to derive unified field r, we set up the application of Finsler geometry to geometrize the electromagnetic field by: 1.

He has been frequently quoted both at home and abroad; notably, in the research monographs “Foundations of Finsler Geometry and Special Finsler Spaces” by Prof. Makoto Matsumoto of Kyoto Univ., Japan and “Finsler Geometry, Relativity and Gauge Theories” by Prof. G.S. Asanov of Moscow State Univ., Russia.

The notion of Finsler spaces of order k, introduced by the present author, was investigated in the book The Geometry of Higher-Order Finsler Spaces, Hadronic Press, Here it is a natural extension to the manifold TgkM of the theory of Finsler spaces given in Section File Size: 1MB.

Vol. 39 () REPORTS ON MATHEMATICAL PHYSICS No. 1 ON THE ROLE OF THE FINSLER GEOMETRY IN THE THEORY OF ELASTO-PLASTICITY JAN SACZUK Institute of Fluid-Flow Machinery, Polish Academy of Sciences, Gdansk, ui.

Fisz Poland (e-mail: [email protected]) (Received Decem Revised February 1, ) The one-to-one Cited by: 9. Finsler Geometry Relativity and Gauge Theories by G.S.

Asanov (English) Hardcov Fundamental Theories of - $ Fundamental Theories of Physics: Finsler Geometry Relativity and Gauge.

Follow G. Asanov and explore their bibliography from 's G. Asanov Author Page. He has been frequently quoted both at home and abroad; notably, in the research monographs “Foundations of Finsler Geometry and Special Finsler Spaces” by Prof.

Makoto Matsumoto of Kyoto Univ., Japan and “Finsler Geometry, Relativity and Gauge Theories” by Prof. G.S.

Asanov of Moscow State Univ., Russia. Prof. J.V. Narlikar and T. Padmanabhan: Gravity, Gauge Theories and Quantum Cosmology. ISBN G.S. Asanov: Finsler Geometry, Relativity and Gauge Theories. ISBN K. Namsrai: Nonlocal Quantum Field Theory and Stochastic Quantum Mechanics.

ISBN C.Read Finsler Geometry, Relativity and Gauge Theories (Fundamental Theories of Physics) by G.S. Asanov () PDF Read Geometric Theory of Dynamical Systems: An Introduction by J. Jr. Palis () PDF.He has been frequently quoted both at home and abroad; notably, in the research monographs: “Foundations of Finsler Geometry” and “Special Finsler Spaces” by Prof.

Makoto Matsumoto of Kyoto Univ., Japan and “Finsler Geometry, Relativity and Gauge Theories” by .