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Field
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criteria: Technical competencies Strong knowledge of the national and international Medical Devices' research community. Knowledge of the Canadian innovation process, the structure of the Canadian research
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regulatory instruments for the hydrogen economy. These hypotheses will be tested both quantitatively, on the basis of experiments, and qualitatively, through semi-structured interviews. In developing
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scientific knowledge, such as physical laws, differential equations, and domain-specific constraints, to model, simulate, and understand complex systems. The project will explore modern SciML methods
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interface of method development and materials physics, as part of a research group passionate about tackling complex materials challenges for materials with real-world applications. The project offers
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advances in additive manufacturing and computational design. Architected lattice metamaterials—structures whose properties arise from geometry rather than composition—offer unprecedented opportunities
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of ecosystem services. Your duties and responsibilities include: Develop a Research Proposal and a Training and Supervision Plan, to structure the PhD trajectory Advancing conceptual thinking by linking farm
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-increasing demands of society, e.g. wireless data bandwidth, antenna and RF systems are exhibiting a higher degree of complexity in materials, geometries, and length scales. As a result, the design of
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pombe. We hypothesise that rapid adaptive responses involve post-translational modifications (PTMs) of cohesin, a complex essential for chromatin structuring. These PTMs could remodel chromatin
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combinations that support the creation of innovative and sustainable food products. Another example is using large language model (LLM) tools to automatically extract and structure fragmented information from
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construction of supporting infrastructure • implement pulse-to-pulse phase coherence PhD 2: • perform pulsed DNP experiments on macroscopic instrumentation • guide the development of the pulsed-DNP chip