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Objectives: The candidate will use molecular dynamics to model the thermal transport in novel types of 2D materials and how it is affected due to material quality and size. Additionally, the candidate will use
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, enabling time-resolved characterization of detonation and energy release dynamics under aerospace-relevant conditions. More than 100 tests will be performed on representative EM systems, including sucrose
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Tasks and responsibilities: The PhD position is framed within the MAIAMI project. The student will work on DFT and molecular dynamics simulations, generating structural and electronic descriptors
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tool that can simulate indoor radon level dynamics and the effect of energy-efficient measures and different mitigation methods, combining the results of Computational Fluid Dynamics (CFD) simulations
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dynamics and interactions at the cell membrane, with the possibility to take part in experiments such as single-particle tracking and super-resolution microscopy. The student will join an interdisciplinary
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Modelling Tumour Dynamics and Radiotherapy Response: Towards Sustainable and Energy-Efficient Cancer Treatments A PhD position is available in the Department of Physics at the Universitat Autònoma de
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nonequilibrium conditions at different length and time scales. Complementary, the candidate will be involved in the comparison between experiments and molecular dynamics simulations of the atomistic dynamics
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magnetoacoustic dynamics using optical techniques MA-wave The candidate will perform experiments in magnetic devices where acoustic signals can be triggered (hybrid piezoelectric/magnetic devices). MOKE microspcopy
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pohonons and orbital magnetization dynamics in nanodevices ChiPhonOrb The candidate will perform experiments in nanodevices where acoustic signals can be triggered. MOKE microscopy, ac-dc magnetoresistance
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Grant/funding reference: PID2022-139832NB-I00 Job title: Multibody system dynamics methods for backlash detection and monitoring in industrial machinery Research line / Scientific-technical services