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  <description>Latest links in the Theory category</description>
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  <lastBuildDate>Sun, 24 May 2026 10:34:08 -0400</lastBuildDate>
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    <title>Distance geometry by T.Havel</title>
    <link>https://e-sygoing.link/link/5306633-distance-geometry-by-thavel</link>
    <description>Description of the distance geometry method used in biomolecular structure determination.</description>
    <pubDate>Sat, 28 Mar 2026 04:27:52 -0400</pubDate>
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    <title>Biomolecular structure determination by using solution NMR spectroscopy</title>
    <link>https://e-sygoing.link/link/5306627-biomolecular-structure-determination-by-using-solution-nmr-s</link>
    <description>Bibliography of G.M.Clore: Reviews and original papers on protein structure determination by solution NMR spectroscopy.  Some of the reviews are introductory and the others are intended for experts.</description>
    <pubDate>Mon, 28 Jul 2025 13:26:11 -0400</pubDate>
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    <title>NMR Spectroscopy</title>
    <link>https://e-sygoing.link/link/5306631-nmr-spectroscopy</link>
    <description>Very good description of chemical shift. A complete course from basics to descriptions of 2D experiments. By Angel de Dios</description>
    <pubDate>Mon, 18 Nov 2024 04:18:14 -0500</pubDate>
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    <title>2D NMR</title>
    <link>https://e-sygoing.link/link/5306629-2d-nmr</link>
    <description>Introduction to (high resolution) multidimensional solution NMR spectroscopy. Description of line-shapes, product operator formalism, phase-cycling, pulsed field gradients and relaxation. By James Keeler. Also contains the full text of &quot;EMBO Course: Il Ciocco&quot; lecture notes.</description>
    <pubDate>Sun, 01 Sep 2024 23:08:07 -0400</pubDate>
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    <title>Biomolecular structure determination by using solid state NMR spectroscopy</title>
    <link>https://e-sygoing.link/link/5306628-biomolecular-structure-determination-by-using-solid-state-nm</link>
    <description>Solid state NMR methodology for structure determination of uniformly labeled peptides.  Also, a new algorithm for structure determination that uses distance and angle constraints obtainable from NMR data.  From the Griffin lab at MIT.</description>
    <pubDate>Tue, 27 Feb 2024 16:09:39 -0500</pubDate>
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