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develop phase-field and finite element models and work closely with experimental efforts at KAUST. Research areas include: Phase-field modeling of fracture Multiphysics coupling Finite element methods
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integration, finite-volume and finite-element methods, variational formulations, structure-preserving discretisations, optimal transport, and the numerical analysis of partial differential equations. The second
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structure-preserving methods for mathematical models of physical systems, including topics such as geometric numerical integration, finite-volume and finite-element methods, variational formulations
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. Experience with finite-element methods tools such as COMSOL is highly desirable. 4, Proficiency in scientific programming and data analysis using Python, MATLAB, C++, or related programming languages. 5
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element method (FEM). Implementation of the imaging system; and characterization of these systems in artificial and real tissue. Other duties as assigned. Adaptability, excellence, and passion are vital
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to demonstrate and translate these devices to practical medical applications. Core Responsibilities: Simulation and design of piezoelectric ultrasonic transducers using the finite element method (FEM)Conduct
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(photolithography, metal evaporation, etching) Experience with packaging schemes such as flip-chip bonding, anisotropic conductive film bonding and wire bonding Finite element Method (FEM) simulations (MEMS, Electro