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-based and UV-curable inks. Implement FEM simulations linking chemistry, processing, and performance. Integrate experimental data from the experimental PhD’s for model validation. Collaborate with
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, and behavioural simulation within a digital twin infrastructure. UrbanAIR develops innovative methods to assess how policy interventions influence urban mobility patterns, air pollution exposure, and
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of the following: electronic packaging, heterogeneous integration, thermal management, reliability, multi-physics and multiscale simulation. Demonstrated publication record in high-quality
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corporation Trudo Performing computer simulations (e.g., using EnergyPlus and Radiance) to evaluate the potential impact of the photochromic films across various contexts and seasons. Project partner ClimAd
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and in the MAKEWAVES project. In both projects, experiments were conducted in very large flumes at HR Wallingford (UK) using a pneumatic tsunami simulator that is globally unique in its capacity
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applicant will have: A PhD in Materials Science, Applied Physics, Electrical Engineering, Chemistry or a closely related discipline. Strong background in modeling and simulation of thermal/energy systems
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. Copies of diplomas and associated grades. Copy of PhD degree (or letter of promotor indicating when the dissertation will be finished). Research proposal of 4-5 pages. Information about applying When
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(recommendation letters highly encouraged). List of publications. Research proposal of 4-5 pages. Copy of PhD degree (or letter of promotor indicating when the dissertation will be finished). Copies of diplomas and
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development using ROS and/or ROS 2. Experience with simulation environments, digital twins, or physics-based robotic simulators, such as Isaac Sim, Newton, MuJoCo, PyBullet, or similar platforms. A demonstrated
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closely related discipline. Strong background in modeling and simulation of thermal/energy systems, preferably including PV/T or hybrid solar systems. Hands-on experience with thin-film deposition