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		<title><![CDATA[Multiwfn forum / Gaussian or ORCA includes SpinOrbitcoupling (SOC) at the grand state]]></title>
		<link>http://sobereva.com/wfnbbs/viewtopic.php?id=1559</link>
		<description><![CDATA[The most recent posts in Gaussian or ORCA includes SpinOrbitcoupling (SOC) at the grand state.]]></description>
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			<title><![CDATA[Re: Gaussian or ORCA includes SpinOrbitcoupling (SOC) at the grand state]]></title>
			<link>http://sobereva.com/wfnbbs/viewtopic.php?pid=4725#p4725</link>
			<description><![CDATA[<p>In Gaussian, RESC can only represent scalar relativistic effect, SOC is not incorporated. In addition, relativistic Hamiltonian cannot be used in conjunction with pseudopotential.</p><p>If you want to incorporate SOC effect into DFT ground state calculation, you can consider to use spin-orbit DFT feature in NWChem. I have a blog article written in Chinese, you may use Google translator to understand the content: <a href="http://sobereva.com/368" rel="nofollow">http://sobereva.com/368</a></p>]]></description>
			<author><![CDATA[dummy@example.com (sobereva)]]></author>
			<pubDate>Thu, 28 Nov 2024 03:10:09 +0000</pubDate>
			<guid>http://sobereva.com/wfnbbs/viewtopic.php?pid=4725#p4725</guid>
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			<title><![CDATA[Gaussian or ORCA includes SpinOrbitcoupling (SOC) at the grand state]]></title>
			<link>http://sobereva.com/wfnbbs/viewtopic.php?pid=4723#p4723</link>
			<description><![CDATA[<p>Dear Lu,<br />I am going to calculate SOC for molecules at the ground state. It should be quite straight forward.<br />For example, I am trying to use &quot;RESC&quot; keyword to include SOC effect. There are large energetic difference with and without &quot;RESC&quot; key. I guess, I am wrong enough. Could you help to setup input keywords for it using ORCA or GAUSSIAN? </p><p> <br />%chk=cw_gaussian.chk<br />#p B3LYP/LANL2DZ Integral(Grid=Ultrafine, RESC)</p><p>cw_gaussian B3LYP/LANL2DZ Integral(Grid=Ultrafine, RESC)</p><p>0 1<br /> C&#160; &#160; &#160; &#160; &#160; &#160; &#160; &#160; &#160;14.87243455&#160; &#160;12.47693543&#160; &#160;15.22325442<br /> C&#160; &#160; &#160; &#160; &#160; &#160; &#160; &#160; &#160;13.93310489&#160; &#160;13.06163521&#160; &#160;16.15796408<br /> C&#160; &#160; &#160; &#160; &#160; &#160; &#160; &#160; &#160;15.95330415&#160; &#160;13.18085517&#160; &#160;14.55020466<br /> C&#160; &#160; &#160; &#160; &#160; &#160; &#160; &#160; &#160;14.73431460&#160; &#160;11.08055594&#160; &#160;14.95313452<br /> C&#160; &#160; &#160; &#160; &#160; &#160; &#160; &#160; &#160;12.69428535&#160; &#160;12.39512546&#160; &#160;16.37120400<br /> C&#160; &#160; &#160; &#160; &#160; &#160; &#160; &#160; &#160;17.07347374&#160; &#160;12.40262545&#160; &#160;14.12555482<br /> C&#160; 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			<author><![CDATA[dummy@example.com (Ulughbeg)]]></author>
			<pubDate>Wed, 27 Nov 2024 19:21:48 +0000</pubDate>
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