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	<title>NGC 6341 &#8211; PekDar – Astrophotography Engineering</title>
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	<title>NGC 6341 &#8211; PekDar – Astrophotography Engineering</title>
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		<title>M92 – The Ancient Pearl in the Crown of Hercules</title>
		<link>https://astrophotography.pekdar.net/en/m92/</link>
		
		<dc:creator><![CDATA[PekDar]]></dc:creator>
		<pubDate>Fri, 27 Dec 2019 20:30:51 +0000</pubDate>
				<category><![CDATA[Astrophotography]]></category>
		<category><![CDATA[Globular cluster]]></category>
		<category><![CDATA[Hercules]]></category>
		<category><![CDATA[M92]]></category>
		<category><![CDATA[Messier]]></category>
		<category><![CDATA[NGC 6341]]></category>
		<category><![CDATA[Stellar Evolution]]></category>
		<guid isPermaLink="false">http://www.astrofoto.pekdar.net/?p=733</guid>

					<description><![CDATA[M92 is the forgotten pearl of Hercules. Explore the history of this 14-billion-year-old cluster, learn how to find it, and how to photograph it without burning its dense core.]]></description>
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									<h2>M92 &#8211; In the Shadow of a Giant </h2>
<p>When we point our telescopes toward the constellation Hercules, our eyes almost automatically drift to M13. However, just a few degrees away lies <b data-path-to-node="23" data-index-in-node="185">M92 (NGC 6341)</b>—an object that in many ways surpasses its famous neighbor. It is brighter at its center and significantly older.</p>
<h3>A Cosmic Senior: 14 Billion Years Old</h3>
<p data-path-to-node="24">M92 is one of the oldest known globular clusters in the Milky Way. Its age is estimated at approximately <b data-path-to-node="24" data-index-in-node="143">14.2 billion years</b> (with an error margin of <span class="math-inline" data-math="\pm 1.2" data-index-in-node="187"><span class="katex"><span class="katex-html" aria-hidden="true"><span class="base"><span class="mord">±</span><span class="mord">1.2</span></span></span></span></span> billion). This means M92 formed almost at the same time as the Universe itself.</p>
<ul data-path-to-node="25">
<li>
<p data-path-to-node="25,0,0"><b data-path-to-node="25,0,0" data-index-in-node="0">Mass:</b> Approximately <span class="math-inline" data-math="3.3 \times 10^{5} M_{\odot}" data-index-in-node="20"><span class="katex"><span class="katex-html" aria-hidden="true"><span class="base"><span class="mord">3.3</span><span class="mbin">×</span></span><span class="base"><span class="mord">1</span><span class="mord">0<span class="msupsub"><span class="vlist-t"><span class="vlist-r"><span class="vlist"><span class=""><span class="sizing reset-size6 size3 mtight"><span class="mord mtight">5</span></span></span></span></span></span></span></span><span class="mord"><span class="mord mathnormal">M</span><span class="msupsub"><span class="vlist-t vlist-t2"><span class="vlist-r"><span class="vlist"><span class=""><span class="sizing reset-size6 size3 mtight"><span class="mord mtight">⊙</span></span></span></span><span class="vlist-s">​</span></span></span></span></span></span></span></span></span> (solar masses).</p>
</li>
<li>
<p data-path-to-node="25,1,0"><b data-path-to-node="25,1,0" data-index-in-node="0">Metallicity:</b> It is extremely poor in &#8220;metals&#8221; (elements heavier than helium), confirming its archaic origin.</p>
</li>
</ul>
<h3>Astrophotography Challenge: Resolving the Core</h3>
<p data-path-to-node="26">Unlike M13, M92 is an <b data-path-to-node="26" data-index-in-node="69">Oosterhoff II</b> type cluster, which translates to a very dense and bright core.</p>
<ol start="1" data-path-to-node="27">
<li>
<p data-path-to-node="27,0,0"><b data-path-to-node="27,0,0" data-index-in-node="0">Dynamic Range:</b> The main issue is avoiding &#8220;blowing out&#8221; the center of the cluster. Instead of one long exposure, consider using an HDR technique or simply shortening exposure times while increasing the number of frames.</p>
</li>
<li>
<p data-path-to-node="27,1,0"><b data-path-to-node="27,1,0" data-index-in-node="0">Image Scale:</b> To resolve individual stars in the center, you need a long focal length (above 1000 mm) and excellent <i data-path-to-node="27,1,0" data-index-in-node="115">seeing</i>.</p>
</li>
<li>
<p data-path-to-node="27,2,0"><b data-path-to-node="27,2,0" data-index-in-node="0">Star Colors:</b> Pay attention to the colors—old, yellow, and red giants dominate, but a keen eye will also spot &#8220;blue stragglers.&#8221;</p>
</li>
</ol>
<p> </p>
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<p>Source: <a href="https://en.wikipedia.org/wiki/Messier_92" target="_blank" rel="noopener">https://en.wikipedia.org/wiki/Messier_92</a></p>
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<p>Photographs taken on March 2019.</p>
<p><!-- /wp:paragraph --></p>
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<p><!-- wp:list --></p>
<ul>
<li>Stack: <a href="https://astrophotography.pekdar.net/en/astro-pixel-processor-basic-tutorial/" target="_blank" rel="noopener">APP</a> (7 best frames),</li>
<li>Processing: GIMP v2.10.14 + add-ons (Linux),</li>
<li>Lights: 7 x 88[s], ISO-1000; 30.3.2019,</li>
<li>Flats: 22 ISO-1000; 02.8.2019,</li>
<li>Bias: 20 ISO-1000; 02.8.2019</li>
</ul>
<p><!-- /wp:list --></p>
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