Specific Objectives of course:

Many physical problems that  are usually solved by differential equation methods can be solved more effectively by integral equation methods. This course will help students gain insight into the application of advanced mathematics and guide them through derivation of appropriate integral equations governing the behavior of several standard physical problems.

Course Outline:

Linear integral equations of the first kind, Linear integral equations of the second kind. Relationship between differential equation and Volterra   integral   equation.   Neumann   series.   Fredholm   Integral equation of the second kind with separable Kernels. Eigenvalues and eigenvectors. Iterated functions. Quadrature methods. Least square methods. Homogeneous integral equations of the second kind. Fredholm integral equations of the first kind. Fredholm integral equations  of  the  second  kind.  Abel’s  integral  equations.  Hilbert Schmidt   theory   of   integral   equations   with   symmetric   Kernels. Regularization and filtering techniques.