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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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biochemical cues. Our recent findings show that MEC-2 stomatin, a protein involved force transmission during the sense of touch, undergoes a viscoelastic phase transition upon binding to UNC-89, a neuronal titn
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(polymer) materials, including the rheology of viscoelastic materials, statistical analysis and interpretation of research results, and preparation of scientific publications in journals indexed in the JCR
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, viscoelastic, and damage-informed formulations) under complex thermo-mechanical loading. Implementing and validating models using computational tools (e.g., numerical solvers, finite element frameworks
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provides insights into disease mechanisms, ranging from neurodegeneration to cancer. Statement Below are examples of our recent research contributions. Please visit our lab website at https
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to enable collaborative work between the two strategic research areas eSSENCE and NanoLund (https://www.essenceofescience.se/ and https://www.nano.lu.se/ ), which means that the postdoc will benefit from
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of physical principles, such as thermodynamic consistency, equilibrium, and history dependence. This postdoctoral project focuses on dissipative material behaviors such as plasticity, viscoelasticity, and
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ultrasound imaging sequences. You will design, fabricate, and characterize viscoelastic capillary phantoms with controlled sizes and configurations using hydrogel-based materials and cleanroom microfabrication