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well as numerical methods for partial differential equations, especially finite element methods, both theory and implementation. A successful candidate will work in the topics of interests, which include: (1) solid
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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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, Mechanical Engineering, or a related field. You have experience in finite element and constitutive modelling applied to geotechnical engineering, structural engineering, or construction materials. You have a
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Mesoscale and Multiphysics finite element modelling Good communicative skills and proficiency in English both in writing and speaking,as it is required in the daily work. Teamwork competence and collaborative
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well as the physical and numerical modelling including the finite element modelling, confirmed by publications. Experience, confirmed by publications in conducting laboratory experiments and testing, including design of
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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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related field. Experience with finite element simulations and developing constitutive models. Knowledge of high temperature creep crack growth. Knowledge of engineering design codes such as the ASME Boiler
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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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ambitious researcher with a strong background and experience in biomechanics, finite element modelling (FEM), medical image processing, additive manufacturing (AM). The project will be carried out in close
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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