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optimize hardware neural networks made of approximately one hundred magnetic tunnel junctions, with radio-frequency inputs, in order to classify RF signals directly in the physical domain. Chains of magnetic
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remains largely unexplored and represents a fascinating frontier for molecular computing. The development of new methods will be necessary to enable the manipulation of data within complex molecular
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the simulation of turbulent flows using a tensor network representation of the Navier–Stokes equations. Unlike recent approaches based on tensor networks, which simulate fluid flows in physical space using finite
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spectroscopy, the project seeks to access the complex charge susceptibility, collective excitations, and emergent many-body phenomena in programmable electronic systems. The long-term goal is to bridge
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electrophysiological complexity of the human gastrointestinal tract in order to investigate intestinal infectious diseases and host–pathogen interactions. Within this framework, the NCM (Nanobiointerfaces and Conductive
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, Militarism, and the Military-Industrial Complex: The increase in global military spending and the transformations in civil-military relations are giving rise to a renewed focus on research into militarization