Difference between revisions of "Math"

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<math>1^2</math>
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<math>
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x=\frac{-b\pm\sqrt{b^2-4ac}}{2a}
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\phi_n(\kappa) =
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0.033C_n^2\kappa^{-11/3},\quad
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\frac{1}{L_0}\ll\kappa\ll\frac{1}{l_0}
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{}_pF_q(a_1,\dots,a_p;c_1,\dots,c_q;z)
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= \sum_{n=0}^\infty
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\frac{(a_1)_n\cdots(a_p)_n}{(c_1)_n\cdots(c_q)_n}
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\frac{z^n}{n!}
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</math>
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<math>
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\phi_n(\kappa) =
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\frac{1}{4\pi^2\kappa^2} \int_0^\infty
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\frac{\sin(\kappa R)}{\kappa R}
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\frac{\partial}{\partial R}
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\left[R^2\frac{\partial D_n(R)}{\partial R}\right]\,dR<
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\big / \Big / \bigg / \Bigg / \dots \Bigg\backslash \bigg\backslash \Big\backslash \big\backslash
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\left \uparrow \frac{a}{b} \right \downarrow \quad \left \Uparrow \frac{a}{b} \right \Downarrow \quad \left \updownarrow \frac{a}{b} \right \Updownarrow
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</math>
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<math>
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\begin{array}{|c|c||c|} a & b & S \\
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\hline
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0&0&1\\
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0&1&1\\
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1&0&1\\
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1&1&0
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\end{array}
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\oint_C x^3\, dx + 4y^2\, dy
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\sideset{_1^2}{_3^4}\prod_a^b
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</math>

Revision as of 13:53, 25 March 2019

[math] x=\frac{-b\pm\sqrt{b^2-4ac}}{2a} \phi_n(\kappa) = 0.033C_n^2\kappa^{-11/3},\quad \frac{1}{L_0}\ll\kappa\ll\frac{1}{l_0} {}_pF_q(a_1,\dots,a_p;c_1,\dots,c_q;z) = \sum_{n=0}^\infty \frac{(a_1)_n\cdots(a_p)_n}{(c_1)_n\cdots(c_q)_n} \frac{z^n}{n!} [/math] [math] \phi_n(\kappa) = \frac{1}{4\pi^2\kappa^2} \int_0^\infty \frac{\sin(\kappa R)}{\kappa R} \frac{\partial}{\partial R} \left[R^2\frac{\partial D_n(R)}{\partial R}\right]\,dR\lt \big / \Big / \bigg / \Bigg / \dots \Bigg\backslash \bigg\backslash \Big\backslash \big\backslash \left \uparrow \frac{a}{b} \right \downarrow \quad \left \Uparrow \frac{a}{b} \right \Downarrow \quad \left \updownarrow \frac{a}{b} \right \Updownarrow [/math]

[math] \begin{array}{|c|c||c|} a & b & S \\ \hline 0&0&1\\ 0&1&1\\ 1&0&1\\ 1&1&0 \end{array} \oint_C x^3\, dx + 4y^2\, dy \sideset{_1^2}{_3^4}\prod_a^b [/math]