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additional math examples #531
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</section>
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</section>
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<section>
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<section>
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<h2>The Lorenz Equations</h2>
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\[\begin{aligned}
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\[\begin{aligned}
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\dot{x} & = \sigma(y-x) \\
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\dot{x} & = \sigma(y-x) \\
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\dot{y} & = \rho x - y - xz \\
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\dot{y} & = \rho x - y - xz \\
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@ -43,6 +44,30 @@
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\end{aligned} \]
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\end{aligned} \]
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</section>
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</section>
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<section>
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<h2>The Cauchy-Schwarz Inequality</h2>
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\[ \left( \sum_{k=1}^n a_k b_k \right)^2 \leq \left( \sum_{k=1}^n a_k^2 \right) \left( \sum_{k=1}^n b_k^2 \right) \]
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</section>
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<section>
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<h2>A Cross Product Formula</h2>
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\[\mathbf{V}_1 \times \mathbf{V}_2 = \begin{vmatrix}
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\mathbf{i} & \mathbf{j} & \mathbf{k} \\
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\frac{\partial X}{\partial u} & \frac{\partial Y}{\partial u} & 0 \\
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\frac{\partial X}{\partial v} & \frac{\partial Y}{\partial v} & 0
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\end{vmatrix} \]
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</section>
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<section>
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<h2>An Identity of Ramanujan</h2>
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\[ \frac{1}{\Bigl(\sqrt{\phi \sqrt{5}}-\phi\Bigr) e^{\frac25 \pi}} =
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1+\frac{e^{-2\pi}} {1+\frac{e^{-4\pi}} {1+\frac{e^{-6\pi}}
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{1+\frac{e^{-8\pi}} {1+\ldots} } } } \]
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</section>
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</div>
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</div>
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</div>
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</div>
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