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electromagnetic and thermal simulations. This work will include detailed tissue segmentation from medical images, integration of automatic and semi-automatic segmentation algorithms, refinement of anatomical
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system level simulation studies • Propose and innovate solutions for operational challenges in hardware such as common mode noise, electromagnetic interference, filter design, etc for better motor and
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metasurfaces using electromagnetic simulation tools (FDTD/FEM) to establish optoelectronic eigenvectors. • Nanofabrication: Fabricate multi-pixel sensor arrays and integrate pre-synthesized chiral 2D HOIP
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may include electromagnetic ISAC channel modelling, waveform and transceiver design, sensing signal processing, AI/ML-enabled radio interfaces, MIMO beamforming and channel estimation, interference
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may include electromagnetic ISAC channel modelling, waveform and transceiver design, sensing signal processing, AI/ML-enabled radio interfaces, MIMO beamforming and channel estimation, interference
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of the external grids Establish a stochastic differential algebraic equation (SDAE) based analytic framework for interdependent electromechanical and electromagnetic dynamics modelling and analysis Design data
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detectors, and nanofabrication. 3. Strong mathematical and theoretical knowledge of electromagnetic theory, waveguide optics, nonlinear optics, second-harmonic generation, spontaneous parametric down
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, electromagnetic modelling, and system-level performance analysis. The successful candidate will lead simulation activities using tools such as COMSOL, ANSYS, or equivalent, and support laboratory-based testing
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) to join the Schnepp Research Group on an industry funded project. The project will involve the synthesis and characterization of carbon/iron carbide materials for applications in electromagnetic attenuation
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structures.; • Design and optimize, through full-wave electromagnetic simulations, a transparent unit cell operating in the FR3 frequency band.; • Investigate the integration of memristive switching devices