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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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Hash: deb8d93a08533c3752bced8f47544ee8

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}

TeX (checked):

{\begin{aligned}&\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{aligned}}

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MathML (experimentell; keine Bilder) rendering

MathML (2.063 KB / 468 B) :

×B¯=ε0μ0E¯˙×E¯=B¯˙mitE¯=0(Δε0μ02t2)E¯=0
<math xmlns="http://www.w3.org/1998/Math/MathML" class="mwe-math-element mwe-math-element-inline"><mrow data-mjx-texclass="ORD"><mstyle displaystyle="true" scriptlevel="0"><mtable displaystyle="true"><mtr><mtd class="mwe-math-columnalign-r"></mtd><mtd class="mwe-math-columnalign-l"><mi mathvariant="normal"></mi><mo stretchy="false">×</mo><mover><mi>B</mi><mo>¯</mo></mover><mo stretchy="false">=</mo><msub><mi>ε</mi><mrow data-mjx-texclass="ORD"><mn>0</mn></mrow></msub><msub><mi>μ</mi><mrow data-mjx-texclass="ORD"><mn>0</mn></mrow></msub><mover><mover><mi>E</mi><mo>¯</mo></mover><mo>˙</mo></mover></mtd></mtr><mtr><mtd class="mwe-math-columnalign-r"></mtd><mtd class="mwe-math-columnalign-l"><mi mathvariant="normal"></mi><mo stretchy="false">×</mo><mover><mi>E</mi><mo>¯</mo></mover><mo stretchy="false">=</mo><mo stretchy="false"></mo><mover><mover><mi>B</mi><mo>¯</mo></mover><mo>˙</mo></mover></mtd></mtr><mtr><mtd class="mwe-math-columnalign-r"></mtd><mtd class="mwe-math-columnalign-l"><mo stretchy="false"></mo><mi>m</mi><mi>i</mi><mi>t</mi><mspace width="1em"></mspace><mi mathvariant="normal"></mi><mo stretchy="false"></mo><mover><mi>E</mi><mo>¯</mo></mover><mo stretchy="false">=</mo><mn>0</mn></mtd></mtr><mtr><mtd class="mwe-math-columnalign-r"></mtd><mtd class="mwe-math-columnalign-l"><mrow data-mjx-texclass="INNER"><mo data-mjx-texclass="OPEN">(</mo><mi>Δ</mi><mo stretchy="false"></mo><msub><mi>ε</mi><mrow data-mjx-texclass="ORD"><mn>0</mn></mrow></msub><msub><mi>μ</mi><mrow data-mjx-texclass="ORD"><mn>0</mn></mrow></msub><mrow data-mjx-texclass="ORD"><mfrac><mrow data-mjx-texclass="ORD"><msup><mi></mi><mrow data-mjx-texclass="ORD"><mn>2</mn></mrow></msup></mrow><mrow data-mjx-texclass="ORD"><mrow data-mjx-texclass="ORD"><mi></mi><msup><mi>t</mi><mrow data-mjx-texclass="ORD"><mn>2</mn></mrow></msup></mrow></mrow></mfrac></mrow><mo data-mjx-texclass="CLOSE">)</mo></mrow><mover><mi>E</mi><mo>¯</mo></mover><mo stretchy="false">=</mo><mn>0</mn></mtd></mtr><mtr><mtd class="mwe-math-columnalign-r"></mtd></mtr></mtable></mstyle></mrow></math>

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Calculated based on the variables occurring on the entire Freie Wellenausbreitung im Vakuum page

Identifiers

  • B¯
  • ε0
  • μ0
  • E¯˙
  • E¯
  • B¯˙
  • m
  • i
  • t
  • E¯
  • Δ
  • ε0
  • μ0
  • t
  • E¯

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