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  • TVS.004628_TT_C. Edwards, David Penney, David Calvis - Differential Equations and Linear Algebra, Global Edition-Pearson (2020).pdf.jpg
  • Sách/Book


  • Authors: Edwards, C. Henry (2020)

  • The book combines core topics in elementary differential equations with concepts and methods of elementary linear algebra. It starts and ends with discussions of mathematical modeling of real-world phenomena, evident in figures, examples, problems, and applications throughout.

  • TVS.004648_TT_David C. Lay, Steven R. Lay, Judi J. McDonald, R. Kent Nagle, Edward B. Saff, Arthur David Snider - MATH 54 Linear Algebra and Different.pdf.jpg
  • Sách/Book


  • Authors: Lay, David C (2021)

  • With a systems-first approach, the book is appropriate for courses for majors in mathematics, science, and engineering that study systems of differential equations. Because of its emphasis on linearity, the text opens with a full chapter devoted to essential ideas in linear algebra. Motivated by future problems in systems of differential equations, the chapter on linear algebra introduces such

  • TVS.004615_TT_(Advances in Applied Mathematics) Svetlin G. Georgiev, Khaled Zennir - Multiplicative Partial Differential Equations-CRC Press (2024).pdf.jpg
  • Sách/Book


  • Authors: Georgiev, Svetlin (2023)

  • This book presents an introduction to the theory of multiplicative partial differential equations (MPDEs). It is suitable for all types of basic courses on MPDEs. The author's aim is to present a clear and well-organized treatment of the concept behind the development of mathematics and solution techniques. The text material of this book is presented in highly readable, mathematically solid format. Many practical problems are illustrated displaying a wide variety of solution techniques"--

  • TVS.004953_TT_(Wiley Finance) Daniel J. Duffy - Numerical Methods in Computational Finance_ A Partial Differential Equation (PDE_FDM) Approach-Wiley (.pdf.jpg
  • Sách/Book


  • Authors: Duffy, Daniel J (2022)

  • Ordinary differential equations and partial differential equations form the basis for modelling many kinds of phenomena in areas such as science, engineering, computational finance and more generally, mathematical physics. There are currently no books on the market which can guide a reader with no prior knowledge of PDEs through the basics and onto advanced applications."

  • TVS.004617_TT_(Essential Textbooks in Mathematics) Enrique Fernandez-Cara - Ordinary Differential Equations and Applications-World Scientific Publishi.pdf.jpg
  • Sách/Book


  • Authors: Fernández-Cara, Enrique (2024)

  • Differential equations can be viewed as a tool well suited to bring mathematics closer to real life and describe phenomena with an origin in physics, chemistry, biology, economics, etc. Of course, this "invites" scientists and engineers to use them. On the other hand, differential equations are at the starting point of a lot of purely mathematical activity. Thus, a large part of functional analysis has been motivated by the need to solve questions coming from the analysis of differential systems. The same can be said of numerical analysis