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  1. The mathematical models of this class of phenomena are most frequently described by partial differential equations, which have been given the name "the equations of mathematical physics" (cf.[1]
  2. The formulation of problems in mathematical physics results in the construction of mathematical models which describe the fundamental laws of the class of physical phenomena being studied.[1]
  3. This applies to such well-known methods of solution of problems in mathematical physics as the methods of Ritz and Galerkin (cf.[1]
  4. This is explained, in particular, by the fact that the mathematical models of real physical process are, as a rule, non-linear, that is, are described by non-linear equations of mathematical physics.[1]
  5. Mathematical Physics and Geometry are among the most rapidly developing branches of Pure and Applied Mathematics.[2]
  6. This elite master program offers students both an in-depth and broad education in theoretical and mathematical physics, cornerstones of our modern knowledge-based society.[3]
  7. The ability to formulate and solve problems that is developed in the Mathematical Physics program is highly sought-after in the private sector.[4]
  8. Mathematical physics is concerned with mathematical modeling of physical phenomena.[5]
  9. In mathematical physics, new problems in physics give rise to new mathematics to solve them, while new mathematics open doors to understandings of the physical universe.[6]
  10. Perimeter’s mathematical physics researchers continue this grand tradition.[6]
  11. In the fourth year, your studies will give you an appreciation of modern research topics in mathematical physics.[7]
  12. Modern mathematical physics was born from the attempts to gain mathematical understanding of quantum field theory and statistical mechanics.[8]
  13. In Mathematical Physics, you’ll combine theoretical physics with high-level math courses in differential equations, vector calculus, and applied mathematics.[9]
  14. You can earn your Mathematical Physics degree through the Faculty of Mathematics or the Faculty of Science.[9]
  15. This isn't an exhaustive list – rather a glimpse into the skills a Mathematical Physics major can provide.[9]
  16. What can you do with a degree in Mathematical Physics?[9]
  17. In this module you will apply the general theory you learnt in Introduction to Mathematical Physics to more general problems.[10]
  18. Newly established theoretical chairs were called chairs of mathematical physics.[11]
  19. Roughly speaking, the concept of Mathematical Physics covered theoretical papers where mathematical formulae were used.[11]
  20. Some of the greatest names of mathematical physics have sought a more profound role for it in the belief that very deep mathematical ideas are required to describe nature.[11]
  21. It is no easy task to write in a few lines a comprehensible list of Grand Challenges in the Frontiers of Mathematical Physics.[12]
  22. does not at all mean that these Challenges will have any priority for Frontiers in Mathematical Physics, nor the contrary, at any rate.[12]
  23. In the study of quantum vacuum fluctuations and many different spectral problems, zeta functions and other special functions of mathematical physics also play a fundamental role.[12]
  24. There are other themes as well, so students interested in research in mathematical physics are offered a rich choice.[13]
  25. A fundamental problem in mathematical physics is to “canonically analyze” a given system of Euler-Lagrange equations.[14]
  26. Welcome to the web pages of the Mathematical Physics Group.[15]
  27. Mathematical physics refers to the development of mathematical methods for application to problems in physics.[16]
  28. Certain parts of mathematics that initially arose from the development of physics are not, in fact, considered parts of mathematical physics, while other closely related fields are.[16]
  29. The term "mathematical physics" is sometimes used to denote research aimed at studying and solving problems in physics or thought experiments within a mathematically rigorous framework.[16]
  30. In this sense, mathematical physics covers a very broad academic realm distinguished only by the blending of some mathematical aspect and physics theoretical aspect.[16]
  31. Mathematical physics seeks to apply rigorous mathematical ideas to problems in physics, or problems inspired by physics.[17]
  32. Traditionally mathematical physics has been quite closely associated to ideas in calculus, particularly those of differential equations.[17]
  33. In recent years however, in part due to the rise of superstring theory, there has been a great enlargement of branches of mathematics which can now be categorized as part of mathematical physics.[17]
  34. At Duke, the mathematical physics studied is related to geometrical ideas.[17]
  35. Since 1960, the Journal of Mathematical Physics (JMP) has published some of the best papers from outstanding mathematicians and physicists.[18]
  36. The Journal of Mathematical Physics (JMP) features content in all areas of mathematical physics.[18]
  37. The aim of the present book is to demonstrate the basic methods for solving the classical linear problems in mathematical physics of elliptic, parabolic and hyperbolic type.[19]

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