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equation via the Cole–Hopf transformation and the associated linear problem; • quantum circuit simulation of the dynamics associated with a classical Hamiltonian via the Koopman–von Neumann (KvN
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part of this initiative, the successful candidate will develop and conduct linear optics-based quantum information and quantum computing experiments using photons as well as precision tests
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research and development in the areas of gauge field generation, linear and eigen-solvers, or novel analysis methods. This position will reside in the Advanced Computing for Nuclear, Particle and
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fields. Based upon available funding, this position may have a teaching load of up to 3 courses per year, which range from standard subjects like calculus or linear algebra, to other more advanced subjects
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researcher at TU Delft, you will develop and lead analytical and numerical research on the quantum dynamics of mechanical systems and their interactions with complex environments. Building on these models, you
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across 50+ departments and programs in the humanities, natural sciences, and social sciences, CAS is a dynamic and interdisciplinary academic community. Our faculty and advisors work closely with students
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research and development spanning areas such as optimization, Fourier analysis, numerical linear algebra, statistics, machine learning, and high-performance computing for one or more of the following: (1
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for this position: differential equations, operator spectral theory, linear vector spaces, differential geometry, boundary-value problems, Green's functions, variational techniques, and complex analysis
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Understanding - Face / Body Tracking, 3D Avatars - Non-Linear Optimization - Media Forensics / Fake News Detection How to Apply: Follow the instructions on our application platform: https