Update README.md

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nilsberglund-orleans 2021-07-19 18:05:00 +02:00 committed by GitHub
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@ -10,10 +10,10 @@ There are two groups of 4 files:
### Simulations of classical particles in billiards.
1. global_particles.c: global variables and parameters
2. sub_part_billiard.c: drawing/computation routines common to particle_billiard and drop_billiard
3. particle_billiard.c: simulation of a collection of non-interacting particles in a billiard
4. drop_billiard.c: simulation of an expanding front of particles
1. **global_particles.c**: global variables and parameters
2. **sub_part_billiard.c**: drawing/computation routines common to particle_billiard and drop_billiard
3. **particle_billiard.c**: simulation of a collection of non-interacting particles in a billiard
4. **drop_billiard.c**: simulation of an expanding front of particles
- Create subfolders 'tif_part', 'tif_drop'
- Customize constants at beginning of .c file
@ -29,11 +29,11 @@ ffmpeg -i part.%05d.tif -vcodec libx264 part.mp4
### Simulations of wave equation, heat equation and Schrodinger equation.
1. global_pdes.c: global variables and parameters
2. sub_wave.c: drawing/computation routines common to wave_billiard, heat and schrodinger
3. wave_billiard.c: simulation of the (linear) wave equation
4. heat.c: simulation of the heat equation, with optional drawing of gradient field lines
5. schrodinger.c: simulation of the Schrodinger equation
1. **global_pdes.c**: global variables and parameters
2. **sub_wave.c**: drawing/computation routines common to wave_billiard, heat and schrodinger
3. **wave_billiard.c**: simulation of the (linear) wave equation
4. **heat.c**: simulation of the heat equation, with optional drawing of gradient field lines
5. **schrodinger.c**: simulation of the Schrodinger equation
- Create subfolders 'tif_wave', 'tif_heat', 'tif_schrod'
- Customize constants at beginning of .c file