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author | siveshs <siveshs@gmail.com> | 2010-07-03 05:12:50 +0000 |
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committer | bnewbold <bnewbold@adelie.robocracy.org> | 2010-07-03 05:12:50 +0000 |
commit | fc8c27d5b42d9787edc375d7e31e4848c17511e7 (patch) | |
tree | d2d73ff10e034adaeff94db900a86f7687ae5580 | |
parent | d1816cbfd1e6f36ece22acdff65ef45c4e572937 (diff) | |
download | afterklein-wiki-fc8c27d5b42d9787edc375d7e31e4848c17511e7.tar.gz afterklein-wiki-fc8c27d5b42d9787edc375d7e31e4848c17511e7.zip |
editing
-rw-r--r-- | Fourier Series.page | 2 |
1 files changed, 2 insertions, 0 deletions
diff --git a/Fourier Series.page b/Fourier Series.page index 79bd095..c279a3f 100644 --- a/Fourier Series.page +++ b/Fourier Series.page @@ -3,8 +3,10 @@ We first begin with a few basic identities on the size of sets. Then, we will sh ## To show that $(0,1) \sim \mathbb R$ --> could someone fill this out? + ## Cantor's proof for $\mathbb R > \mathbb N$ --> don't have the notes for this + ## Proof that no. of available functions is greater than number of functions required to define the periodic function --> don't have the notes for this |