Update 2022-02-14 06:33
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@@ -1,7 +1,7 @@
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<!DOCTYPE html>
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<html lang="en">
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<head>
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<!-- 2022-02-10 Thu 08:32 -->
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<!-- 2022-02-13 Sun 21:20 -->
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<meta charset="utf-8">
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<meta name="viewport" content="width=device-width, initial-scale=1">
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<title>Pre-Quantum Electrodynamics</title>
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@@ -1629,7 +1629,7 @@ B_0 = \frac{k}{\omega} E_0 = \frac{1}{c} E_0.
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Generalizing to propagation in the direction of an arbitrary wavevector
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\({\boldsymbol k}\) and (transverse) polarization vector \(\hat{\boldsymbol n}\), we have the
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</p>
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<div class="core div" id="org0336f47">
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<div class="core div" id="org19a2b1c">
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<p>
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{\bf E and B fields for a monochromatic EM plane wave}
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\[
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@@ -1658,6 +1658,8 @@ or if you prefer explicit real parts (adding a possible phase shift \(\delta\)):
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<br><ul class="navigation-links"><li>Prev: <a href="emd_emw_we.html">The Wave Equation <small>[emd.emw.we]</small></a></li><li>Next: <a href="emd_emw_ep.html">Energy and Momentum <small>[emd.emw.ep]</small></a></li><li>Up: <a href="emd_emw.html">Electromagnetic waves in vacuum <small>[emd.emw]</small></a></li></ul>
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<br>
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<hr>
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<div class="license">
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<a rel="license noopener" href="https://creativecommons.org/licenses/by/4.0/"
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@@ -1671,7 +1673,7 @@ target="_blank">Creative Commons Attribution 4.0 International License</a>.
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</div>
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<div id="postamble" class="status">
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<p class="author">Author: Jean-Sébastien Caux</p>
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<p class="date">Created: 2022-02-10 Thu 08:32</p>
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<p class="date">Created: 2022-02-13 Sun 21:20</p>
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<p class="validation"></p>
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</div>
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