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MATLAB模拟的电磁学时域有限差分法\MATLAB模拟的电磁学时域有限差分法\Appendix_A\fdtd_1d_code.m
................................\................................\..........\initialize_plotting_parameters.m
................................\................................\..........\plot_fields.m
................................\................................\.........C\polar_plot_constant_phi.m
................................\................................\..........\polar_plot_constant_theta.m
................................\................................\Chapter_1\figure_1_2.m
................................\................................\.........0\calculate_domain_size.m
................................\................................\..........\define_geometry.m
................................\................................\..........\example_10_a\define_geometry.m
................................\................................\..........\............\define_output_parameters.m
................................\................................\..........\............\define_problem_space_parameters.m
................................\................................\..........\............\define_sources_and_lumped_elements.m
................................\................................\..........\initialize_thin_wire_updating_coefficients.m
................................\................................\..........\initialize_updating_coefficients.m
................................\................................\.........1\calculate_and_display_farfields.m
................................\................................\..........\calculate_farfields_per_plane.m
................................\................................\..........\calculate_incident_plane_wave_power.m
................................\................................\..........\define_sources_and_lumped_elements.m
................................\................................\..........\display_transient_parameters.m
................................\................................\..........\example_11_a\define_geometry.m
................................\................................\..........\............\define_output_parameters.m
................................\................................\..........\............\define_problem_space_parameters.m
................................\................................\..........\............\define_sources_and_lumped_elements.m
................................\................................\..........\...........b\define_geometry.m
................................\................................\..........\............\define_output_parameters.m
................................\................................\..........\............\define_problem_space_parameters.m
................................\................................\..........\............\define_sources_and_lumped_elements.m
................................\................................\..........\...........c\capture_sampled_electric_fields.m
................................\................................\..........\............\define_geometry.m
................................\................................\..........\............\define_output_parameters.m
................................\................................\..........\............\define_problem_space_parameters.m
................................\................................\..........\............\define_sources_and_lumped_elements.m
................................\................................\..........\initialize_incident_field_updating_coefficients.m
................................\................................\..........\initialize_sources_and_lumped_elements.m
................................\................................\..........\update_electric_fields.m
................................\................................\..........\update_incident_fields.m
................................\.....