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Numerical Methods
in Quantum Information Science

Summer School at the Mount Ida campus of University of Massachusetts Amherst
(a satellite campus on the outskirts of Boston)
August 12th (Mon) - 18th (Sun) ~~~

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  <a class="btn btn-primary btn-lg" href="https://qnumerics.org/registration" role="button"><i class="fas fa-user-plus"></i> Register (waitlist)</a>
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Target audience

~~~ Folks with QIS expertise and baseline programming skills searching to significantly expand them. @@ @@ @@row @@col-md,feature ~~~
Graduate Students, Postdocs, and Professionals
~~~ Graduate students, postdocs, and professionals in Quantum Information Science who want to supercharge their classical programming skills. @@ @@col-md,feature ~~~
Exceptional Undergraduates
~~~ Talented undergrads will be admitted on case-by-case basis after reviewing their applications. Free admission and travel grants will be available to undergraduates. @@ @@col-md,feature ~~~
Hackers
~~~ The summer school will end with a hackathon where participants are empowered to make their first contribution to an open source project, flesh out the first software steps necessary for a novel result in QIS, or design and control quantum hardware. @@ @@ @@ @@

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Curriculum

~~~ Providing significant breadth of skills in QIS. @@ @@

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    <h5>General software engineering practices and cluster computing tools</h5>
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    <h5>Advanced general scientific programming (ODEs, optimization, autodifferentiation)</h5>
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    <h5>GPU programming</h5>
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    <h5>Fast general purpose wavefunction simulation</h5>
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    <h5>Tensor networks for faster approximate quantum simulations</h5>
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    <h5>Stabilizer formalism for quantum ECC</h5>
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    <h5>Discrete event simulations (e.g. for networking)</h5>
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    <h5>Quantum chemistry</h5>
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    <h5>Symbolic computer algebra basics</h5>
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    <h5>Optimal control of quantum hardware</h5>
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    <h5>APIs for control of commercial quantum hardware</h5>
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    <h5></h5>
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Sponsors, Presenters, and Instructors from

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