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Display information for equation id:math.2556.35 on revision:2556

* Page found: Das ideale Bosegas (eq math.2556.35)

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Hash: 408810d166be836c49e8ac85df60bb3c

TeX (original user input):

\begin{align}
  & \frac{N\acute{\ }}{V}=\frac{\left( 2s+1 \right)}{{{\lambda }^{3}}}\tilde{\ }{{T}^{\frac{3}{2}}} \\ 
 & \Rightarrow \frac{N\acute{\ }}{{\bar{N}}}={{\left( \frac{T}{{{T}_{C}}} \right)}^{\frac{3}{2}}} \\ 
\end{align}

TeX (checked):

{\begin{aligned}&{\frac {N{\acute {\ }}}{V}}={\frac {\left(2s+1\right)}{{\lambda }^{3}}}{\tilde {\ }}{{T}^{\frac {3}{2}}}\\&\Rightarrow {\frac {N{\acute {\ }}}{\bar {N}}}={{\left({\frac {T}{{T}_{C}}}\right)}^{\frac {3}{2}}}\\\end{aligned}}

LaTeXML (experimentell; verwendet MathML) rendering

MathML (15.251 KB / 2.068 KB) :

N ´ V = ( 2 s + 1 ) λ 3 ~ T 3 2 N ´ N ¯ = ( T T C ) 3 2 missing-subexpression 𝑁 ´ absent 𝑉 2 𝑠 1 superscript 𝜆 3 ~ absent superscript 𝑇 3 2 missing-subexpression absent 𝑁 ´ absent ¯ 𝑁 superscript 𝑇 subscript 𝑇 𝐶 3 2 {\displaystyle{\displaystyle\begin{aligned} &\displaystyle\frac{N\acute{\ }}{V% }=\frac{\left(2s+1\right)}{{{\lambda}^{3}}}\tilde{\ }{{T}^{\frac{3}{2}}}\\ &\displaystyle\Rightarrow\frac{N\acute{\ }}{{\bar{N}}}={{\left(\frac{T}{{{T}_{% C}}}\right)}^{\frac{3}{2}}}\\ \end{aligned}}}

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MathML (experimentell; keine Bilder) rendering

MathML (2.432 KB / 474 B) :

N´V=(2s+1)λ3~T32N´N¯=(TTC)32

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  • N
  • ´
  • V
  • s
  • λ
  • ~
  • T
  • N
  • ´
  • N¯
  • T
  • TC

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