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profiles using energy modelling tools • Build thermo-fluid dynamic models of HVAC and district cooling networks • Propose improved system architectures and network efficiency strategies • Design and validate
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Boudny, Ph.D. Topic title: Lymphoid microenvironment models and their use to study targeted therapy and resistance in B cell malignancies Annotation: Chronic lymphocytic leukemia (CLL) cells and indolent
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link: https://www.ncbi.nlm.nih.gov/myncbi/nathan.lawson.1/bibliography/public/ Send related inquiries to: Nathan D. Lawson, Ph.D. Professor Department of Molecular, Cell, and Cancer Biology University
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: 281099154 Postdoctoral Research Associate D-26-ENE-00008 | Research | Andlinger Center for Energy and the Environment The Energy Systems Analysis Group (https://acee.princeton.edu/research/energy-systems
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modeling, and energy-related equipment design. The industrial research agenda is centered on sustainable synthetic fuels, including e-SAF, green methanol, and e-ammonia. Key research activities include
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Model. Int. J. Hydrog. Energy 2014, 39 (9), 4516–4530. https://doi.org/10.1016/j.ijhydene.2014.01.036.  ; [3] Carral, C.; Mele, P. Modeling the Original and Cyclic Compression Behavior of Non-Woven
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engineering, physics, atmospheric sciences, or a closely related field. - Strong publication record and demonstrated experience in computational fluid dynamics, turbulence modeling, and wind energy
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materials to enhance the cell robustness. Work plan The work plan for the PhD thesis will be divided in three main steps: 1) A chemo-mechanical model will be built to predict the crack initiation and
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perovskite and organic top cell models. It will entail exchanges with theoretical collaborators as well as interaction with experimental teams within the IOTA research project. The preliminary contract
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subset of: (1) Use advanced energy modeling to analyze energy efficiency, demand flexibility, and electrification measures in the building stock. (2) Use advanced community scale energy models to analyze