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Program12C 1D FDTD (impulse source) with units and conductivities

Program12C 1D FDTD (impulse source) with units and conductivities

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Program13C 1D FDTD (impulse source) with Perfect Magnetic Conductor boundary

Program13C 1D FDTD (impulse source) with Perfect Magnetic Conductor boundary

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Program14C 1D FDTD (impulse source) with Perfect Electric Conductor boundary

Program14C 1D FDTD (impulse source) with Perfect Electric Conductor boundary

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Program16C 1D FDTD (impulse source) with Perfectly Matched Layer boundary condition

Program16C 1D FDTD (impulse source) with Perfectly Matched Layer boundary condition

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Program15C 1D FDTD (impulse source) with Mur's Absorbing Boundary Condition

Program15C 1D FDTD (impulse source) with Mur's Absorbing Boundary Condition

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Program 10D Unitless 1D FDTD (impulse source) without For Loops using Vector update

Program 10D Unitless 1D FDTD (impulse source) without For Loops using Vector update

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Lecture 7 (FDTD) -- Learning from 1D FDTD

Lecture 7 (FDTD) -- Learning from 1D FDTD

This lecture completes the discussion of

Program12D 1D FDTD (unit step source) with units and conductivities

Program12D 1D FDTD (unit step source) with units and conductivities

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Program 7B Unitless 1D FDTD Open Boundary with Courant Factor less than 1 & Impulse source

Program 7B Unitless 1D FDTD Open Boundary with Courant Factor less than 1 & Impulse source

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Improving My 1D FDTD Simulation with Absorbing Boundary Conditions

Improving My 1D FDTD Simulation with Absorbing Boundary Conditions

In this short update, I show progress on a

Program 9A 1D FDTD with Left half Air and Right half with epsilonr 4, Sinusoidal source

Program 9A 1D FDTD with Left half Air and Right half with epsilonr 4, Sinusoidal source

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Lecture 8 (FDTD) -- Review and walkthrough of 1D FDTD

Lecture 8 (FDTD) -- Review and walkthrough of 1D FDTD

This lecture starts from the very beginning and reviews the entire formulation and implementation of a

Green’s Function: How One Tiny Impulse Solves an Entire Equation

Green’s Function: How One Tiny Impulse Solves an Entire Equation

What if one tiny