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Field
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theory, such as method of moment (MoM). • Experienced in computational algorithm on Finite Element Method (FEM) • Possess knowledge of electromagnetic theory, such as Dyadic Green’s function and
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Element Method) simulation software, e.g., Abaqus or ANSYS, is expected; knowledge of user subroutine implementation is an advantage Good analytical skills and enthusiasm for interdisciplinary project work
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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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that daily planning needs to accommodate new developments. Carry research utilising field-assisted sintering and continuous extrusion technologies. Undertake finite element modelling of thermomechanical
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field Strong expertise in composite materials, their deformation and failure, and finite element modelling relevant to aerospace or impact applications Experience with high‑rate experimental methods
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test systems, fixture design, CAD software (SolidWorks, AutoCAD, Inventor), drawing standards, steel design and weld detailing, component sizing, working design knowledge of fabrication methods and
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for admission to a PhD programme. Strong background in Computational Mechanics, Solid Mechanics and Numerical Methods. Knowledge of the Finite Element Method. Programming skills (Python & Fortran). Good written
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, or a related field • Strong expertise in composite materials, their deformation and failure, and finite element modelling relevant to aerospace or impact applications • Experience with high‑rate
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verified through simulated and/or laboratory-generated data. Responsibilities and qualifications Your primary responsibilities and tasks include: Development and advancement of multi-fidelity finite element
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designing, maintaining, and troubleshooting high-power electronics and magnetics, using standard lab test equipment. Proficiency in circuit simulation, mechanical CAD, PCB design tools, and finite element