Solving the second kind linear volterra integrodifferential equations using the complex SEE integral transform
Sadiq A. Mehdi, Emad A. Kuffi, Eman A. Mansour
Abstract
Open-access reader
Sadiq A. Mehdi, Emad A. Kuffi, Eman A. Mansour
Abstract
Open-access reader
As an important type of integral equation, Volterra integral equations snatch the focus of many scientists and mathematicians to provide approximate or exact solutions to such equations. The integral transform capability of providing an algebraic solution to the integral equations led the mathematical community to lean heavily on them to solve those kinds of equations, including the Volterra integrodifferential equations of the second kind. This paper uses the complex SEE integral transform to find the exact solution to the second kind linear Volterra integrodifferential equation. The capability and efficiency of complex SEE integral transform in providing an exact solution with the minimum number of computations possible are demonstrated via practical applications.
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As an important type of integral equation, Volterra integral equations snatch the focus of many scientists and mathematicians to provide approximate or exact solutions to such equations. The integral transform capability of providing an algebraic solution to the integral equations led the mathematical community to lean heavily on them to solve those kinds of equations, including the Volterra integrodifferential equations of the second kind. This paper uses the complex SEE integral transform to find the exact solution to the second kind linear Volterra integrodifferential equation. The capability and efficiency of complex SEE integral transform in providing an exact solution with the minimum number of computations possible are demonstrated via practical applications.
Key concepts: Volterra integral equation, Integral equation, Integral transform, Mathematics, Algebraic equation, Focus (optics), Summation equation, Applied mathematics