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jan-janssen committed Sep 13, 2024
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2 changes: 1 addition & 1 deletion _sources/book/inverse-alloy-design.ipynb
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"metadata": {},
"source": [
"## Summary\n",
"This example highlights the application of generative models for materials science. While the three previous examples could also be addressed by computing the material properties for all unaries, store them in a database and provide them to the user when requested, this is no longer possible for the space of binary or even ternary alloys. Just like a student the LLM is capable to apply an abstract concept of linear interpolation to the prediction of the concentration related to a bulk modulus of 140GPa."
"This example highlights the application of generative models for materials science. While the three previous examples could also be addressed by computing the material properties for all unaries, store them in a database and provide them to the user when requested, this is no longer possible for the space of binary or even ternary alloys. Just like a student the LLM is capable to apply an abstract concept of linear interpolation to the prediction of the concentration related to a bulk modulus of 145GPa."
]
}
],
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2 changes: 1 addition & 1 deletion book/inverse-alloy-design.html
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Expand Up @@ -926,7 +926,7 @@ <h2>Dialog<a class="headerlink" href="#dialog" title="Link to this heading">#</a
</section>
<section id="summary">
<h2>Summary<a class="headerlink" href="#summary" title="Link to this heading">#</a></h2>
<p>This example highlights the application of generative models for materials science. While the three previous examples could also be addressed by computing the material properties for all unaries, store them in a database and provide them to the user when requested, this is no longer possible for the space of binary or even ternary alloys. Just like a student the LLM is capable to apply an abstract concept of linear interpolation to the prediction of the concentration related to a bulk modulus of 140GPa.</p>
<p>This example highlights the application of generative models for materials science. While the three previous examples could also be addressed by computing the material properties for all unaries, store them in a database and provide them to the user when requested, this is no longer possible for the space of binary or even ternary alloys. Just like a student the LLM is capable to apply an abstract concept of linear interpolation to the prediction of the concentration related to a bulk modulus of 145GPa.</p>
</section>
</section>

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2 changes: 1 addition & 1 deletion searchindex.js

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