Abstract
Problem statement. Currently, the higher school provides students of physical and mathematical training areas with fundamental subject knowledge, forms professional competencies, develops creative abilities and creativity, teaches them to use modern computer technologies to solve applied problems. One of such academic disciplines, in which students are taught to use computer technologies in solving applied mathematical problems, is a training course called Inverse problems for differential equations. Such an academic discipline has been taught in some Russian universities in the form of elective courses since the 70s of the 20th century. The educational material of this training course includes advanced research results on inverse problems belonging to specialists from different countries, such as Germany, Italy, China, Sweden, Netherlands, Russia, Japan and other foreign countries. During the practical classes, much attention is paid to the use of computer simulation for the study of such applied problems. This circumstance implies the development of educational materials taking into account the professional training of university students, in which attention should be paid to the use of computer modeling in solving mathematical models of inverse problems. Methodology. The implementation of training of university students in physical and mathematical areas of training involves taking into account modern scientific achievements of world science in the field of inverse problems using computer simulation and implementing advanced pedagogical technologies in the classroom. Results. Students acquire scientific knowledge of computer modeling and master the wide possibilities of computer modeling in the study of inverse problems. Conclusion. The presence of scientific knowledge in the field of computer simulation and practical experience of its application for solving inverse problems gives students great advantages and opportunities to be successful specialists in the field of applied mathematics and to be in demand on the labor market in various spheres of human activity.
Publisher
Peoples' Friendship University of Russia
Reference29 articles.
1. Vabishevich PN. Computational methods of mathematical physics. Inverse problems and management problems. Moscow: Vuzovskaya Kniga Publ.; 2019. (In Russ.)
2. Romanov VG. Stability in inverse problems. Moscow: Nauchnyj Mir Publ.; 2005. (In Russ.)
3. Yurko VA. Introduction to the theory of inverse spectral problems. Moscow: Fizmatlit Publ.; 2007. (In Russ.)
4. Yagola AG, Titarenko VN, Van YA, Stepanova IE. Inverse problems and methods of their solution. Applications to geophysics. Moscow: Binom Publ.; 2014. (In Russ.)
5. Falleta S, Monegato G, Scuderi L. On the discretization and application of two space - time boundary integral equations for 3D wave propagation problems in unbounded domains. Applied Numerical Mathematics. 2018;124:22-43. http://doi.org/10.1016/j.apnum.2017.10.001