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computing, and what the fundamental limits are. Your network and team You will work in the research group of Jukka Suomela . This is one of the leading research groups in the areas of theory of distributed
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work by further developing the code to include time dependent cohesive bonding between the ice blocks. Then you will use the code to model ice pile-up. The work will have a multi-scale component as you
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design Are you a researcher excited by complexity/systems theory and collective intelligence, and eager to do empirical work on how innovation systems can be reimagined for an age of systemic disruption
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functional theory studies of nanoparticles, surfaces, or bulk materials; Chemical reaction modeling and/or enhanced sampling (NEB, metadynamics, microkinetic modeling, etc.); Molecular dynamics simulations
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research in quantum algorithms and quantum information. You are expected to take an active role in advancing the MQS group’s research projects. Our recent work has focused on the theory and applications
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in advancing the MQS group’s research projects. Our recent work has focused on the theory and applications of quantum walk algorithms, variational quantum algorithms and their optimization, adiabatic
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or similar. Running social simulations with AI agents using platforms like Concordia or similar. Coding in Python or a similar language for simulation, visualization, and advanced statistical analysis (causal