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Display information for equation id:math.2126.6 on revision:2126

* Page found: Freie Wellenausbreitung im Vakuum (eq math.2126.6)

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TeX (original user input):

\begin{align}
& \nabla \times \bar{B}={{\varepsilon }_{0}}{{\mu }_{0}}\dot{\bar{E}} \\
& \nabla \times \bar{E}=-\dot{\bar{B}} \\
& \Rightarrow mit\quad \nabla \cdot \bar{E}=0 \\
& \left( \Delta -{{\varepsilon }_{0}}{{\mu }_{0}}\frac{{{\partial }^{2}}}{\partial {{t}^{2}}} \right)\bar{E}=0 \\
\end{align}

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MathML (20.78 KB / 2.623 KB) :

× B ¯ = ε 0 μ 0 E ¯ ˙ × E ¯ = - B ¯ ˙ m i t E ¯ = 0 ( Δ - ε 0 μ 0 2 t 2 ) E ¯ = 0 missing-subexpression ¯ 𝐵 subscript 𝜀 0 subscript 𝜇 0 ˙ ¯ 𝐸 missing-subexpression ¯ 𝐸 ˙ ¯ 𝐵 missing-subexpression formulae-sequence absent 𝑚 𝑖 𝑡 ¯ 𝐸 0 missing-subexpression Δ subscript 𝜀 0 subscript 𝜇 0 superscript 2 superscript 𝑡 2 ¯ 𝐸 0 {\displaystyle{\displaystyle\begin{aligned} &\displaystyle\nabla\times\bar{B}=% {{\varepsilon}_{0}}{{\mu}_{0}}\dot{\bar{E}}\\ &\displaystyle\nabla\times\bar{E}=-\dot{\bar{B}}\\ &\displaystyle\Rightarrow mit\quad\nabla\cdot\bar{E}=0\\ &\displaystyle\left(\Delta-{{\varepsilon}_{0}}{{\mu}_{0}}\frac{{{\partial}^{2}% }}{\partial{{t}^{2}}}\right)\bar{E}=0\\ \end{aligned}}}

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MathML (2.475 KB / 487 B) :

×B¯=ε0μ0E¯˙×E¯=B¯˙mitE¯=0(Δε0μ02t2)E¯=0

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