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approaches for constructing 2D heterostructures for DFT calculations Develop, implement, and apply new approaches for constructing 2D heterostructures; compare the results obtained with reference methods
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selectivity and permeability and ultrahigh water permeability combined with high salt rejection. The objective of this work is to construct atomistic models of MOFs/Polymers and Artificial Water-Channel
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charge/discharge cycles. The aim is to provide a unique tool to better understand the structure and evolution of interfaces/interphases in batteries, and thus, guide the design of more efficient and
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spectroscopy of rare earth orthoferrites and hexaferrites will determine both the electronic band structure and the dynamics of the photoinduced charge current. The associated spin dynamics will be studied by
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to the causal abstraction research direction, which aims to build rigorous benchmark for evaluating AI interpretability using the framework of causal abstraction and develop new interpretability methods
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on social decision making, a fascinating field that explores how individuals make decisions in interaction with others, influenced by social and emotional factors. By joining this dynamic team, you will have
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understanding its internal structure. Interpreting these geophysical data to model planetary structure and dynamics depends on understanding the physical properties of materials under relevant pressure and
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the evolutionary and comparative history of these three protein systems - Perform phylogenetic analyses on CBC enzymes - Analyze the evolution of genome structure in a microalgae population during an experimental
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. The cosmology and astroparticle team (https://astrocosmolapth.com ) conducts research on cosmic large-scale structure, cosmic microwave and infrared backgrounds, cross-correlations between cosmological datasets
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key materials—generally nickel-based superalloys—that make up turbine blades with ceramic matrix composites (CMCs). These composites combine lightness, thermomechanical strength and damage tolerance