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16 April 2024
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N 06:53 | Pi Squared is Irrational/Proof 2 3 changes history +3,770 [Simcha Waldman; Prime.mover (2×)] | |||
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06:53 (cur | prev) −314 Simcha Waldman talk contribs (Re-editing and explaining) | ||||
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06:00 (cur | prev) +1,126 Prime.mover talk contribs | ||||
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05:06 (cur | prev) +2,958 Prime.mover talk contribs (Created page with "== Theorem == {{:Pi Squared is Irrational}} == Proof == {{tidy}} {{MissingLinks}} <onlyinclude> {{AimForCont}} $\pi^2$ is rational. Then $\pi^2 = \dfrac p q$ where $p$ and $q$ are integers and $q \ne 0$. Let us define a polynomial: :$\ds \map f x = \frac{(1-x^2)^n}{n!} = \sum_{m\,=\,n}^{2n}\frac{c_m}{n!}x^m,\quad:c_m\in\Z$ $\map f x = f(-x)$ and so we get {{begin-eqn}} {{eqn | l = f^{(k)}(x) = (-1)^kf^{(k)}(-x)...") |
05:05 | Pi Squared is Irrational diffhist −4,858 Prime.mover talk contribs |
15 April 2024
23:49 | Pi Squared is Irrational diffhist +2,783 Simcha Waldman talk contribs (Adding another proof) |
14 April 2024
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12:11 | Definition:Integrable Function/Locally Integrable Function 2 changes history +145 [Prime.mover (2×)] | |||
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12:11 (cur | prev) +100 Prime.mover talk contribs | ||||
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12:09 (cur | prev) +45 Prime.mover talk contribs |
12 April 2024
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14:02 | Intermediate Value Theorem for Derivatives 5 changes history +236 [Prime.mover; Hbghlyj (4×)] | |||
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14:02 (cur | prev) +4 Prime.mover talk contribs | ||||
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12:34 (cur | prev) −23 Hbghlyj talk contribs | |||
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12:32 (cur | prev) +2 Hbghlyj talk contribs | |||
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12:30 (cur | prev) −34 Hbghlyj talk contribs | |||
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12:29 (cur | prev) +287 Hbghlyj talk contribs (Add a source) |
11 April 2024
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14:06 | Definition:Probability Generating Function 2 changes history −1,163 [Prime.mover (2×)] | |||
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14:06 (cur | prev) +58 Prime.mover talk contribs | ||||
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14:04 (cur | prev) −1,221 Prime.mover talk contribs |