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<oembed><version>1.0</version><provider_name>Quantum Monte Carlo</provider_name><provider_url>https://vallico.net/casinoqmc</provider_url><title>Anharmonic vibrational properties of solids - Quantum Monte Carlo</title><type>rich</type><width>600</width><height>338</height><html>&lt;blockquote class="wp-embedded-content" data-secret="K3bC4zEcft"&gt;&lt;a href="https://vallico.net/casinoqmc/anharmonic-vibrational-properties-of-solids/"&gt;Anharmonic vibrational properties of solids&lt;/a&gt;&lt;/blockquote&gt;&lt;iframe sandbox="allow-scripts" security="restricted" src="https://vallico.net/casinoqmc/anharmonic-vibrational-properties-of-solids/embed/#?secret=K3bC4zEcft" width="600" height="338" title="&#x201C;Anharmonic vibrational properties of solids&#x201D; &#x2014; Quantum Monte Carlo" data-secret="K3bC4zEcft" frameborder="0" marginwidth="0" marginheight="0" scrolling="no" class="wp-embedded-content"&gt;&lt;/iframe&gt;&lt;script&gt;
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</html><description>Bartomeu Monserrat, Neil Drummond, Richard Needs The vibrational properties of solids are usually studied within the harmonic approximation, which is valid when the motion of the atomic nuclei is restricted to the neighbourhood of their equilibrium positions. This approximation is usually very good when investigating standard solids under normal conditions. However, for the lighter nuclei &hellip; Continue reading &rarr;</description><thumbnail_url>https://vallico.net/casinoqmc/wp-content/uploads/2014/05/165-150x150.jpg</thumbnail_url></oembed>
