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Yicheng Wang [email protected] 301.975.4278 Description The Fundamental Electrical Measurements (FEM) group has opportunities for engineers and physicists interested in precision measurements based
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-mechanical processing. Some of these modeling tools include density functional theory (DFT), CALPHAD-based models, phase-field models, and finite-element models (FEM) to predict as-built microsegregation
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Prestressed Concrete Structures (or equivalent courses), have successfully defended a Master's thesis in the field of structural engineering, demonstrate knowledge of computer programs (CAD, FEM), demonstrate
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reimbursements, requisitions, EPARs, FEM/FCW processes, and asset inventory. Manage purchasing responsibilities, including PCard transactions, reconciliation, and occasional requisitions; coordinate maintenance
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(FEM), including cryo-FEM, for internal and external users, and prepare and send analysis reports to external users. Operate an atomic force microscope (AFM) and prepare and send analysis reports
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Expertise in FEM software (ABAQUS, ANSYS, SAP2000) and coding (Python/MATLAB). Professional engineering licensure (HKIE/CEng) or eligibility is a plus. Candidates for Professor or above should have
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element Method (FEM) simulations (piezoelectrics and acoustics) Discrete electronic design (Analog and digital design using COTS, schematic and layout design, microcontroller programming, PCB prototyping
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using both classical and finite element methods (FEM). Review detailed part or assembly definition prior to production release. Examine structural or material discrepancies and create associated
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without expensive die tryouts and new model development costs. In addition, CP-FEM (crystal plasticity-finite element method) modeling allows development of constitutive laws for new materials based