Opening book details…
Can I read Methods for Solving Mathematical Physics Problems on EtoBox?
Methods for Solving Mathematical Physics Problems by V. Agoshkov, et al., is a nonfiction available to read on EtoBox.
What is Methods for Solving Mathematical Physics Problems about?
Annotation The book examines the classic and generally accepted methods for solving mathematical physics problems (method of the potential theory, the eigenfunction method, integral transformation methods, discretisation characterisation methods, splitting methods). A separate chapter is devoted to methods for solving nonlinear equations. The book offers a large number of examples of how these methods are applied to the solution of specific mathematical physics problems, applied in the areas of science and social activities, such as energy, environmental protection, hydrodynamics, theory of elasticity, etc
Who reads Methods for Solving Mathematical Physics Problems?
It is typically read by self-directed learners exploring a subject in depth.
Common subject areas: history, science, philosophy, social sciences.
- Author
- V. Agoshkov, et al.,
- Publisher
- Cambridge University Press
- Published
- 2003
- Language
- EN
- ISBN
- 9781904602057
- Category
- nonfiction
- Subjects
- Science, Mathematics, Engineering
- Updated
- 2026-03-24
Other editions & translations
More by V. Agoshkov, et al.,
Browse all works by V. Agoshkov, et al.,
Similar books
- Mathematical Methods For Physics — Wyld, H. W. (Henry William), 1928- (1976)
- Methods for Solving Inverse Problems in Mathematical Physics — Aleksey I. Prilepko & Dmitry G. Orlovsky & Igor A. Vasin (2000)
- Mathematical Methods of Physics : Problems with Solutions — Igor V. Kolokolov; Evgeny A. Kuznetsov; Alexander I. Milstein; Evgeny V. Podivilov; Alexander I. Chernykh; David A. Shapiro; Elena G. Shapiro (2024)
- General Methods for Solving Physics Problems — B. S. Belikov (1988)
- Methods Of Solving Nonstandard Problems. — Unknown. (2015)
- Mathematical Methods for Physics : Problems and Solutions — Farkhad G. Aliev, Antonio Lara (2023)
