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Display information for equation id:math.1199.1177 on revision:1199

* Page found: Elektrodynamik Schöll (eq math.1199.1177)

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TeX (original user input):

\begin{align}
& {{p}^{i}}{{p}_{i}}={{m}_{0}}^{2}{{c}^{2}}{{u}^{i}}{{u}_{i}} \\
& {{u}^{i}}{{u}_{i}}=1 \\
& \Rightarrow {{p}^{i}}{{p}_{i}}={{m}_{0}}^{2}{{c}^{2}} \\
& {{p}^{0}}={{m}_{0}}\gamma c=m(v)c=\frac{E}{c} \\
& {{p}^{\alpha }}={{m}_{0}}\gamma {{v}^{\alpha }}=m(v){{v}^{\alpha }} \\
& {{p}^{i}}{{p}_{i}}={{m}_{0}}^{2}{{c}^{2}}{{u}^{i}}{{u}_{i}}\Leftrightarrow {{E}^{2}}={{m}_{0}}^{2}{{c}^{4}}+{{c}^{2}}{{{\bar{p}}}^{2}} \\
\end{align}

TeX (checked):

{\begin{aligned}&{{p}^{i}}{{p}_{i}}={{m}_{0}}^{2}{{c}^{2}}{{u}^{i}}{{u}_{i}}\\&{{u}^{i}}{{u}_{i}}=1\\&\Rightarrow {{p}^{i}}{{p}_{i}}={{m}_{0}}^{2}{{c}^{2}}\\&{{p}^{0}}={{m}_{0}}\gamma c=m(v)c={\frac {E}{c}}\\&{{p}^{\alpha }}={{m}_{0}}\gamma {{v}^{\alpha }}=m(v){{v}^{\alpha }}\\&{{p}^{i}}{{p}_{i}}={{m}_{0}}^{2}{{c}^{2}}{{u}^{i}}{{u}_{i}}\Leftrightarrow {{E}^{2}}={{m}_{0}}^{2}{{c}^{4}}+{{c}^{2}}{{\bar {p}}^{2}}\\\end{aligned}}

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pipi=m02c2uiuiuiui=1pipi=m02c2p0=m0γc=m(v)c=Ecpα=m0γvα=m(v)vαpipi=m02c2uiuiE2=m02c4+c2p¯2
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