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Display information for equation id:math.17540.5 on revision:17540

* Page found: Taylor dispersion (eq math.17540.5)

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Hash: 94db2e1b314b8eec56ccc2942aaedba1

TeX (original user input):

 D_{\mathrm{eff}} = D \left( 1 + \frac{1}{192}\mathit{Pe}_d^{2} \right)\, ,

TeX (checked):

D_{\mathrm {eff} }=D\left(1+{\frac {1}{192}}{\mathit {Pe}}_{d}^{2}\right)\,,

LaTeXML (experimental; uses MathML) rendering

MathML (4.421 KB / 927 B) :

D eff = D ( 1 + 1 192 𝑃𝑒 d 2 ) , subscript D eff D 1 1 192 superscript subscript 𝑃𝑒 d 2 {\displaystyle D_{{{\mathrm{eff}}}}=D\left(1+{\frac{1}{192}}{\mathit{Pe}}_{d}^% {{2}}\right)\,,}
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SVG (10.081 KB / 3.915 KB) :

upper D Subscript e f f Baseline equals upper D times left-parenthesis 1 plus StartFraction 1 Over 192 EndFraction times italic upper P e Subscript d Superscript 2 Baseline right-parenthesis comma

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MathML (0 B / 8 B) :

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PNG (0 B / 8 B) :


Translations to Computer Algebra Systems

Translation to Maple

In Maple: D[e*f*f]= (1 +(1)/(192)*P*e(e[d])^(2)),

Information about the conversion process:


Translation to Mathematica

In Mathematica: Subscript[D, e*f*f]= (1 +Divide[1,192]*P*e(Subscript[e, d])^(2)),

Information about the conversion process:


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