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give rise to it. To achieve this, the project combines numerical simulations and experimental investigations to establish a unified framework linking grain-scale geometry, force networks, and macroscopic
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give rise to it. To achieve this, the project combines numerical simulations and experimental investigations to establish a unified framework linking grain-scale geometry, force networks, and macroscopic
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will be considered. Priority will be given to applicants in Algebraic Combinatorics, Analytic Number Theory, Geometric Group Theory, Geometric Topology, Geometry and Probability. In addition, preference
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are included for certain types of crimes that were reported to have occurred on-campus, or in other University affiliated locations. This report is available online at: https://mankato.mnsu.edu/safety/ . You may
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, and support its mission to advance excellence in teaching, research, and service. Preference will be given to the applicants who best complement existing strengths in Algebra, Analysis, Geometry
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Python with PyTorch (or equivalent deep learning framework). Experience with computer vision workflows (e.g., pose estimation, segmentation, tracking, multi-view geometry, 3D vision). Strong software
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Doctoral student in development of nanowire devices for photonic neuromorphic computing (PA2026/472)
on optoelectronic architecture, sensor geometries and algorithms and integration with advanced waveguiding platforms. Work duties You will primarily devote yourself to your doctoral education, which mainly consists
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The Hamburg Centre for Ultrafast Imaging (CUI), Cluster of Excellence | Hamburg, Hamburg | Germany | 2 months ago
project of the groups of Prof. Dr. Markus Drescher and Prof. Dr. Klaus Sengstock. The project involves generating ultracold rubidium atoms arranged in arbitrary geometries using optical tweezer technology
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Infrastructure? No Offer Description This project is part of the European ERC Synergy project Karst https://erc-karst.eu/ , which aims to develop a predictive flow model for an entire karst network. We will
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Innovative electrical interfaces for solid-state electrocaloric cooling using ferroelectric ceramics
into heat flux. The objective of the project is to propose innovative, gas-free approaches for cooling device. The project encompasses 1) the material and geometry tailoring for enhancing thermal