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Display information for equation id:math.2137.36 on revision:2137

* Page found: Wellenoptik und Beugung (eq math.2137.36)

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Hash: cf52989914f5efb1b46d24ef2672a4d6

TeX (original user input):

\begin{align}
& \tilde{G}\left( {\bar{R}} \right)=g\left( {\bar{R}} \right)+\frac{1}{4\pi }\frac{{{e}^{ikR}}}{R} \\
& \left( \Delta +{{k}^{2}} \right)g=0 \\
\end{align}

TeX (checked):

{\begin{aligned}&{\tilde {G}}\left({\bar {R}}\right)=g\left({\bar {R}}\right)+{\frac {1}{4\pi }}{\frac {{e}^{ikR}}{R}}\\&\left(\Delta +{{k}^{2}}\right)g=0\\\end{aligned}}

LaTeXML (experimentell; verwendet MathML) rendering

MathML (12.653 KB / 1.771 KB) :

G ~ ( R ¯ ) = g ( R ¯ ) + 1 4 π e i k R R ( Δ + k 2 ) g = 0 missing-subexpression ~ 𝐺 ¯ 𝑅 𝑔 ¯ 𝑅 1 4 𝜋 superscript 𝑒 𝑖 𝑘 𝑅 𝑅 missing-subexpression Δ superscript 𝑘 2 𝑔 0 {\displaystyle{\displaystyle\begin{aligned} &\displaystyle\tilde{G}\left({\bar% {R}}\right)=g\left({\bar{R}}\right)+\frac{1}{4\pi}\frac{{{e}^{ikR}}}{R}\\ &\displaystyle\left(\Delta+{{k}^{2}}\right)g=0\\ \end{aligned}}}

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MathML (experimentell; keine Bilder) rendering

MathML (1.748 KB / 436 B) :

G~(R¯)=g(R¯)+14πeikRR(Δ+k2)g=0

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  • R¯
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  • R¯
  • π
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  • R
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