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, qualification, and deployment of AI agents and models, Computational Fluid Dynamics (CFD) simulation codes, and Finite Element Method (FEM) based tools for nuclear energy (fission and fusion) applications
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at Durham University. We are seeking a highly motivated and ambitious researcher with a strong background and experience in biomechanics, finite element modelling (FEM), medical image processing, additive
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materials Finite Element Modelling (FEM) Impact Engineering High-Rate Experimental Mechanics
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Composite Materials 3D woven composite materials Finite Element Modelling (FEM) Impact Engineering High-Rate Experimental Mechanics Keywords are used by search engines. When people search for pages using
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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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skills, written and oral communication skills, and strong motivation. Preferred Qualifications: Demonstrated expertise in multi-physics simulations using Finite Element Methods (FEM) for part qualification
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, CFD/FSI modeling, or pump hydraulic testing Proficiency with engineering software such as CAD (e.g. SolidWorks), CFD solvers (e.g., CONVERGE, ANSYS Fluent, ABAQUS), and FEM/FSI tools Strong critical
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research activities including laboratory experiments, numerical modelling (FEM/CFD), and development of AI models to optimise drilling processes. Translate research into outcomes by building prototypes
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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