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1D, 2D and 3D FDTD methods

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1D, 2D and 3D FDTD methods for matlab from Sullivan s book

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In Sullivan's book, there are detailed discussions about the 1D, 2D, and 3D FDTD methods that can be used in MATLAB. These methods have been proven to be effective in solving a wide range of problems in various fields, such as electromagnetics, optics, and acoustics. It is important to note that the FDTD method is a numerical analysis technique that is based on solving the differential equations governing the propagation of electromagnetic waves in different media. By using this method, we can accurately predict the behavior of electromagnetic waves in complex structures, such as waveguides and antennas. Additionally, the FDTD method can be used to study the interaction between electromagnetic waves and biological tissues, which is useful in medical applications. Overall, the FDTD method is a powerful tool that can be used to solve a wide range of problems in different fields, and MATLAB provides a convenient platform for implementing this method.