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Field
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conductivity requires the use of ceramic-based conductors. On the other hand, a material with low charge transfer resistance at the solid electrode-electrolyte interface needs a soft material such as a polymer
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to the viscoelastic behavior of polymeric foams under large deformations dynamic loadings. The objective is to simulate, using the finite element method, the response of these porous microstructures under complex
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polymer fused filament fabrication (FFF) AM, cold spray repair technologies, and additive friction stir deposition. This position will assist other researchers in understanding the material science issues
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-healing capacities —a new class referred to as self-healing polymers— can enable NextGen surgical phantoms that realistically simulate the biomechanics of their biological counter parts, have integrated
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SEM, circular dichroism, FTIR and molecular dynamics simulations. Synthesis and characterization of nanostructures such as nanoparticles, nanofibers and hydrogels based on biopolymers, polymers and
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on simulating nanoalloy structures to create a database for materials characterization. The main tasks include running molecular dynamics and Monte Carlo simulations to model nanoalloys under various
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- including powder bed, directed energy deposition, machining, polymer, and convergent manufacturing systems – used to produce critical components from advanced materials. These systems are instrumented and
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drug candidates SDL4 - Polymers for materials science and biological applications SDL5 - Formulations for pharmaceuticals, consumer products, and coatings SDL6 - Biocompatibility with organoids / organ
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candidates SDL4 - Polymers for materials science and biological applications SDL5 - Formulations for pharmaceuticals, consumer products, and coatings SDL6 - Biocompatibility with organoids / organ-on-a-chip
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Associate position at Epwin Window Systems offers a chance to enhance simulation capabilities in uPVC compound blending operations. You will implement Discrete Element Method (DEM) simulations to optimise