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The University of British Columbia (UBC) | Vancouver UBC, British Columbia | Canada | about 15 hours ago
opportunities for growth in the field of clinical research. To learn more about the research program, please visit: https://www.limbnetwork.com/home RESPONSIBILITIES Reporting to Dr. Anthony Cooper
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Research Software Engineer. This multidisciplinary initiative has three Research thrusts: (a) Better design, evaluation, safety and understanding of large AI models (especially language models); (b
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institutional support services, is reminiscent of the Oxford-Cambridge model. The undergraduate colleges include Pomona College, Scripps College, Claremont McKenna College, Harvey Mudd College, and Pitzer College
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Your Job: We are looking for a PhD student to develop learning-based surrogate models for predicting stress fields in patient-specific arteries. Especially high stresses in plaque can lead to
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projects; knowledge of the English language. III. Work Plan: …………………………………………………………………………………………………………………. PT1 — Development and adjustment of specialized language models (LLMs) in the field of regional
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program “European Large Open Multi-Modal Foundation Models For Robust Generalization On Arbitrary Data Streams” (ELLIOT) (CUP: E93C24002710006) Where to apply Website https://www.unimore.it/ Requirements
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models, artificial intelligence, Bayesian models, data visualization, dynamic causal models, dynamic systems models, item response theory, large language models, machine learning, mixture models
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currents on plankton diversification. (S)he will study the connectivity of water masses using a lagrangian approach and design a population genetic model on the connectivity network. - Lagragian
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trauma, using advanced epidemiology, multi-sector data linkage, statistical modelling and risk factor estimation.’ The Fellow will also contribute (as a secondary aspect) to aligned programmes within
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modelling. MISSION You will actively contribute to the development and evaluation of new hybrid computational method to predict biological tissue deformation with subject-specific material properties