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a plus. Has relevant experience in the areas of Digital Signal Processing (DSP) design and implementation is a plus. Experience in electromagnetic simulation using CST Studio Suite and circuit
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electromagnetic theory/ quantum dynamics Background in one or more of the following topics: nanophotonics, metamaterials, ultrafast optics Have a track record of research experience in terms of publications
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or more of: the use of micro/nanofabrication and materials characterization tools; computational multi-physics/electromagnetics modelling and/or the application of machine learning algorithms; experimental
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to develop methodologies for real-time modeling and inversion of geophysical well logs, with a particular focus on borehole electromagnetic data during drilling. This includes the further development
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such as common mode noise, electromagnetic interference, filter design, etc. • Perform HIL/real-time simulation studies/experiments for various cases to demonstrate performance, challenges, and recommend
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electromagnetic data during drilling. This includes the further development and application of fast solvers for Maxwell’s equations and nonlinear inversion algorithms that we have already developed in a previous
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or more of: the use of micro/nanofabrication and materials characterization tools; computational multi-physics/electromagnetics modelling and/or the application of machine learning algorithms; experimental
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. Key responsibilities will include but are not limited to: Perform a literature review to assess existing test structure designs and methodologies for PIC parameter extraction Set up electromagnetic
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for linear and nonlinear electromagnetic and acoustic measurements of piezoelectric materials. Evaluate electromagnetic and acoustic properties of variable composition samples at frequencies from 100 kHz up
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established expertise in device fabrication and testing will be brought together to focus on creating more efficient and sustainable electromagnetic interference (EMI) based on Mxene materials and recycled wood