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Calculus of variations on fibred man...
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Musilová, Jana.
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Calculus of variations on fibred manifolds and variational physics = a geometrical approach to variational problems in physics /
Record Type:
Electronic resources : Monograph/item
Title/Author:
Calculus of variations on fibred manifolds and variational physics/ by Jana Musilová, Pavla Musilová, Olga Rossi.
Reminder of title:
a geometrical approach to variational problems in physics /
Author:
Musilová, Jana.
other author:
Musilová, Pavla.
Published:
Cham :Springer Nature Switzerland : : 2025.,
Description:
xiii, 331 p. :ill., digital ;24 cm.
[NT 15003449]:
Chapter 1. Introduction -- Chapter 2. Fibred manifolds -- Chapter 3. Vector fields and differential forms -- Chapter 4. Calculus of variations -- Chapter 5. Dynamical forms and the inverse problem -- Chapter 6. Hamiltonian systems -- Chapter 7. Elements of the variational sequences -- Chapter 8. Extension: Geometrical structures for field theories -- Chapter 9. Variational physics -- Chapter 10. Appendix.
Contained By:
Springer Nature eBook
Subject:
Calculus of variations. -
Online resource:
https://doi.org/10.1007/978-3-031-77408-9
ISBN:
9783031774089
Calculus of variations on fibred manifolds and variational physics = a geometrical approach to variational problems in physics /
Musilová, Jana.
Calculus of variations on fibred manifolds and variational physics
a geometrical approach to variational problems in physics /[electronic resource] :by Jana Musilová, Pavla Musilová, Olga Rossi. - Cham :Springer Nature Switzerland :2025. - xiii, 331 p. :ill., digital ;24 cm. - Lecture notes in physics,v. 10331616-6361 ;. - Lecture notes in physics ;v. 1033..
Chapter 1. Introduction -- Chapter 2. Fibred manifolds -- Chapter 3. Vector fields and differential forms -- Chapter 4. Calculus of variations -- Chapter 5. Dynamical forms and the inverse problem -- Chapter 6. Hamiltonian systems -- Chapter 7. Elements of the variational sequences -- Chapter 8. Extension: Geometrical structures for field theories -- Chapter 9. Variational physics -- Chapter 10. Appendix.
This book presents modern variational calculus in mechanics and field theories with applications to theoretical physics. It is based on modern mathematical tools, specifically fibred spaces and their jet prolongations, which operate with vector fields and differential forms on foundational structures. The book systematically explains Lagrangian and Hamiltonian mechanics and field theory, with a focused exploration of the underlying structures. Additionally, it addresses the well-known inverse problem of calculus of variations and provides examples illustrating key variational physical theories. The text is complemented by solved examples from physics and includes exercises designed to help readers master the subject. Aimed at PhD students, postdocs, and interested researchers, this book assumes prior knowledge of mathematical analysis, linear and multilinear algebra, as well as elements of general and theoretical physics for effective engagement with the discussion.
ISBN: 9783031774089
Standard No.: 10.1007/978-3-031-77408-9doiSubjects--Topical Terms:
516604
Calculus of variations.
LC Class. No.: QC20.7.C3
Dewey Class. No.: 530.15564
Calculus of variations on fibred manifolds and variational physics = a geometrical approach to variational problems in physics /
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Chapter 1. Introduction -- Chapter 2. Fibred manifolds -- Chapter 3. Vector fields and differential forms -- Chapter 4. Calculus of variations -- Chapter 5. Dynamical forms and the inverse problem -- Chapter 6. Hamiltonian systems -- Chapter 7. Elements of the variational sequences -- Chapter 8. Extension: Geometrical structures for field theories -- Chapter 9. Variational physics -- Chapter 10. Appendix.
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This book presents modern variational calculus in mechanics and field theories with applications to theoretical physics. It is based on modern mathematical tools, specifically fibred spaces and their jet prolongations, which operate with vector fields and differential forms on foundational structures. The book systematically explains Lagrangian and Hamiltonian mechanics and field theory, with a focused exploration of the underlying structures. Additionally, it addresses the well-known inverse problem of calculus of variations and provides examples illustrating key variational physical theories. The text is complemented by solved examples from physics and includes exercises designed to help readers master the subject. Aimed at PhD students, postdocs, and interested researchers, this book assumes prior knowledge of mathematical analysis, linear and multilinear algebra, as well as elements of general and theoretical physics for effective engagement with the discussion.
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