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| author | JP Appel <jeanpierre.appel01@gmail.com> | 2024-04-19 19:51:07 -0400 |
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| committer | JP Appel <jeanpierre.appel01@gmail.com> | 2024-04-19 19:51:07 -0400 |
| commit | 706c30fa8ad8cc0a48c6d4d62902ee0d6802662e (patch) | |
| tree | 18a9b3a22a96eedb6821858af885884a7aa8c90b /presentation/notes.md | |
| parent | 246aabf036e731a1ae932bd7c3d1f08f7833cb7e (diff) | |
created notes and presentation files
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| -rw-r--r-- | presentation/notes.md | 23 |
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diff --git a/presentation/notes.md b/presentation/notes.md new file mode 100644 index 0000000..1d6b162 --- /dev/null +++ b/presentation/notes.md @@ -0,0 +1,23 @@ +# Final Presentation Notes + +## Outline + +* definition of complex numbers +* definition of mandelbrot set + * examples of fractals (Romanesco, Sripenski triangle, Menger sponge) +* question: how do we handle recursion in computer science + * we avoid it! +* serial algorithm for computing Mandelbrot set + * runtime + * animation where the number of frames are dependent on runtime:w +* shared algorithm for computing mandelbrot set + * runtime + * unique challenges of the shared version + * benefits gained from the shared version + * animation where the number of frames are dependent on runtime:w +* gpu algorithm for computing mandelbrot set + * runtime + * unique challenges of the gpu version + * benefits gained from the gpu version + * animation where the number of frames are dependent on runtime:w +* overall comparison of implementations |
