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cyschneck committed Dec 23, 2024
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2 changes: 1 addition & 1 deletion _preview/1/README.html
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Expand Up @@ -432,7 +432,7 @@ <h1>Great Circle Cookbook<a class="headerlink" href="#great-circle-cookbook" tit
<h2>Motivation<a class="headerlink" href="#motivation" title="Link to this heading"><i class="fas fa-link"></i></a></h2>
<p>A great circle is the largest circle that can be drawn onto a sphere (like the Earth) that is the same diameter of the sphere. Great Circle arcs connect two positions on the curved surface of a planet like Earth and are commonly used for navigation that relies on “as-the crow flies” directions like planes, ships, and satellites</p>
<p align="center">
<img src="https://mathworld.wolfram.com/images/eps-svg/SmallGreatCircles_700.svg"/>
<img src="https://github.com/user-attachments/assets/5ffe9566-d869-4e20-bef0-f5864502b2df" width="400"/>
</p>
<p><em>Image Source: <a class="reference external" href="https://mathworld.wolfram.com/GreatCircle.html">Wolfram MathWorld</a></em></p>
<p>Great circles are commonly used in navigation, satellites in remote sensing, and working with coordinates on planets, but can be difficult to find resources to fully explain how to use them.</p>
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2 changes: 1 addition & 1 deletion _preview/1/_sources/README.md
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Expand Up @@ -14,7 +14,7 @@ This Project Pythia Cookbook covers the background and mathematics of working wi
A great circle is the largest circle that can be drawn onto a sphere (like the Earth) that is the same diameter of the sphere. Great Circle arcs connect two positions on the curved surface of a planet like Earth and are commonly used for navigation that relies on "as-the crow flies" directions like planes, ships, and satellites

<p align="center">
<img src="https://mathworld.wolfram.com/images/eps-svg/SmallGreatCircles_700.svg"/>
<img src="https://github.com/user-attachments/assets/5ffe9566-d869-4e20-bef0-f5864502b2df" width="400"/>
</p>

_Image Source: [Wolfram MathWorld](https://mathworld.wolfram.com/GreatCircle.html)_
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4 changes: 2 additions & 2 deletions _preview/1/notebooks/notebook-template.html
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Expand Up @@ -537,8 +537,8 @@ <h5>of further and further<a class="headerlink" href="#of-further-and-further" t
<section id="header-levels">
<h6>header levels<a class="headerlink" href="#header-levels" title="Link to this heading"><i class="fas fa-link"></i></a></h6>
<p>as well <span class="math notranslate nohighlight">\(m = a * t / h\)</span> text! Similarly, you have access to other <span class="math notranslate nohighlight">\(\LaTeX\)</span> equation <a class="reference external" href="https://jupyter-notebook.readthedocs.io/en/stable/examples/Notebook/Typesetting%20Equations.html"><strong>functionality</strong></a> via MathJax (demo below from link),</p>
<div class="amsmath math notranslate nohighlight" id="equation-da8aafd7-5808-422d-9451-3abd7d56dd30">
<span class="eqno">()<a class="headerlink" href="#equation-da8aafd7-5808-422d-9451-3abd7d56dd30" title="Permalink to this equation"><i class="fas fa-link"></i></a></span>\[\begin{align}
<div class="amsmath math notranslate nohighlight" id="equation-4440f794-0855-4d4e-bff2-f3ea3ecb2a4a">
<span class="eqno">()<a class="headerlink" href="#equation-4440f794-0855-4d4e-bff2-f3ea3ecb2a4a" title="Permalink to this equation"><i class="fas fa-link"></i></a></span>\[\begin{align}
\dot{x} &amp; = \sigma(y-x) \\
\dot{y} &amp; = \rho x - y - xz \\
\dot{z} &amp; = -\beta z + xy
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