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__NOTOC__
__NOTOC__
== Bessel Function ==
== Benchmark Table ==


; Gold ID : 1
{| class="wikitable sortable"
; Link : https://sigir21.wmflabs.org/wiki/Bessel_function#math.51.18
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; Formula : <math>\begin{align}J_{-(m+\frac{1}{2})}(x) &= (-1)^{m+1} Y_{m+\frac{1}{2}}(x), \\Y_{-(m+\frac{1}{2})}(x) &= (-1)^m J_{m+\frac{1}{2}}(x).\end{align}</math>
! colspan="4" | Translation Results
; TeX Source : <syntaxhighlight lang="tex" inline >\begin{align}J_{-(m+\frac{1}{2})}(x) &= (-1)^{m+1} Y_{m+\frac{1}{2}}(x), \\Y_{-(m+\frac{1}{2})}(x) &= (-1)^m J_{m+\frac{1}{2}}(x).\end{align}</syntaxhighlight>
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! ID Link !! Semantic LaTeX !! Mathematica Translation !! Maple Translations


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! Semantic LaTeX !! Mathematica Translation !! Maple Translations
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=== Semantic LaTeX ===
; Translation : <syntaxhighlight lang="tex" inline>\begin{align}\BesselJ{- (m + \frac{1}{2})}@{x} &= (- 1)^{m+1} \BesselY{m+\frac{1}{2}}@{x} , \\ \BesselY{- (m + \frac{1}{2})}@{x} &= (-1)^m \BesselJ{m+\frac{1}{2}}@{x} .\end{align}</syntaxhighlight>
; Expected (Gold Entry) : <syntaxhighlight lang="tex" inline>\begin{align}\BesselJ{- (m + \frac{1}{2})}@{x} &= (- 1)^{m+1} \BesselY{m+\frac{1}{2}}@{x} , \\ \BesselY{- (m + \frac{1}{2})}@{x} &= (-1)^m \BesselJ{m+\frac{1}{2}}@{x} .\end{align}</syntaxhighlight>
=== Mathematica ===
; Translation : <syntaxhighlight lang="mathematica" inline>BesselJ[- (m +Divide[1,2]), x] == (- 1)^(m + 1)* BesselY[m +Divide[1,2], x]\nBesselY[- (m +Divide[1,2]), x] == (- 1)^(m)* BesselJ[m +Divide[1,2], x]</syntaxhighlight>
; Expected (Gold Entry) : <syntaxhighlight lang="mathematica" inline>BesselJ[- (m +Divide[1,2]), x] == (- 1)^(m + 1)* BesselY[m +Divide[1,2], x]\nBesselY[- (m +Divide[1,2]), x] == (- 1)^(m)* BesselJ[m +Divide[1,2], x]</syntaxhighlight>
=== Maple ===
; Translation : <syntaxhighlight lang="mathematica" inline>BesselJ(- (m +(1)\/(2)), x) = (- 1)^(m + 1)* BesselY(m +(1)\/(2), x); BesselY(- (m +(1)\/(2)), x) = (- 1)^(m)* BesselJ(m +(1)\/(2), x)</syntaxhighlight>
; Expected (Gold Entry) : <syntaxhighlight lang="mathematica" inline>BesselJ(- (m +(1)\/(2)), x) = (- 1)^(m + 1)* BesselY(m +(1)\/(2), x); BesselY(- (m +(1)\/(2)), x) = (- 1)^(m)* BesselJ(m +(1)\/(2), x)</syntaxhighlight>

Latest revision as of 13:43, 1 September 2021