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mechanical modelling, such as finite element analysis (FEA). experience of working with healthcare professionals and patients. strong knowledge of statistical methods, including non-parametric methods
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emphasis on standard and non standard finite element methods with applications to wave propagation problems and nonlinear reaction-diffusion problems. Further information about our research area and about
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analytical and numerical models of nonlinear vibration systems. The successful candidate will investigate stochastic resonance and noise-assisted dynamics, perform finite element modeling of coupled mechanical
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experience in: Design of integrated photonic devices Linear and nonlinear photonic device testing Finite element analysis (FEA) Micro- and nano-fabrication Knowledge in quantum optics/physics is a strong plus
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translate these devices to practical medical applications. Core Responsibilities: Simulation and design of optical imaging systems and piezoelectric ultrasonic transducers using ray tracing and the finite
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modeling and simulation • Development in Finite element and alternative discretization methods (e.g. Lattice Boltzmann methods) • High-dimensional algorithms and high-performance computing
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QUALIFICATIONS: • PhD in Electrical and Computer Engineering, Mechanical Engineering, Physics, or a closely related field. • Demonstrated expertise in MEMS/NEMS design and modeling, including finite element
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related field in hand by May 2026. Preferred Qualifications: Experience in Thermal Spray Materials/Processes/Characterization/Modeling. Experience in Solid Mechanics/Thermomechanics/Finite Element Analysis
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related field in hand by May 2026. Preferred Qualifications: Experience in Thermal Spray Materials/Processes/Characterization/Modeling. Experience in Solid Mechanics/Thermomechanics/Finite Element Analysis
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-domain, finite element, or method of moments, and you use these tools to translate ideas into robust antenna concepts. It is natural for you to work with advanced antenna architectures, for example