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Field
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Laboratory. You will be responsible for: Advancing numerical modelling methodologies for 3D woven composites Designing and conducting high‑rate and impact experiments on 3D woven composite architectures
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Confidential Computing and Secure Multi-tenancy. The candidate will be able to make research contributions in areas of system software architectures to support secure computing enclaves on large scale HPC and
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at the intersection of structural engineering, architecture, robotics, and computation? As part of an EU-funded research project, we are establishing an interdisciplinary research team, in partnership with leading
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Laboratory. You will be responsible for: • Advancing numerical modelling methodologies for 3D woven composites • Designing and conducting high‑rate and impact experiments on 3D woven composite architectures
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stationary and mobile energy storage systems with focus on battery degradation and cell-to-cell variations Analyzing the impact of battery chemistry, aging history, operational profiles, and pack architecture
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implementing CRISPR-based genetic and pharmacologic screening approaches. Exploring enhancer biology and three-dimensional genome architecture through advanced genomic technologies. Conducting molecular analyses
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such as quantum and analog computational models. You will explore how compilers, runtimes, and AI-driven agents can co-optimize complex architectures, reasoning across conventional processors (CPUs/GPUs
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to 3D transistor architectures and stacked, hybrid-bonded devices, it becomes important to study the initiation and propagation of defects due to thermal and electrical phenomena (e.g., dielectric
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to 3D transistor architectures and stacked, hybrid-bonded devices, non-destructive, high-resolution 3D imaging is becoming a necessity. Unfortunately, current 3D X-ray nanoimaging methods
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to 3D transistor architectures and stacked, hybrid-bonded devices, it becomes important to study the initiation and propagation of defects due to thermal and electrical phenomena (e.g., dielectric