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Programme length: Four years (full‑time) Start date: 2026/27 academic year Keywords: biogenic supply chains, sustainable materials, biobased binders, road construction About the Net2Zero Centre for Doctoral
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up to a £5k/annum research training support grant for the full duration of the 4-year programme. Metal-ligand multiple bonding is a burgeoning area for making chemically novel structural motifs
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quantification and mapping of the high-dimensional correlation structure across multiple traits, quantification of trait variation that arises from new mutations, development and applications of analysis methods
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“monolithic” (solid‑state) HPCR concepts, fuel and structural functions are integrated within a compact core that embeds heat pipes directly. This architecture can reduce reliance on pumped primary coolant
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of calculations on a hardware architecture that matches the inherent nature of quantum chemistry electronic structure calculations and with it the opportunity to capture some of the inherent physics, albeit with
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that verifies and reproduces candidate issues, capturing minimal but sufficient evidence (inputs, states, clips, logs); and a Reporter agent that produces structured bug reports suitable for triage. A key novelty
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Background: Functional, topologically complex organic molecules are rising stars in modern materials science due to their biocompatibility, structural variability, and wealth of physico-chemical
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As the aerospace sector pushes the boundaries of aircraft performance – and sustainable operations – with highly flexible primary structures (such as high-aspect-ratio and morphing wings
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not reflect the systems commonly used in catalysis. Advancing truly orthogonal and complementary chalcogen bonding catalysts therefore requires a deeper understanding of how catalyst structure
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binders, road construction About the Net2Zero Centre for Doctoral Training The EPSRC and BBSRC CDT in Negative Emission Technologies for Net Zero (Net2Zero) is a partnership between Aston University (lead