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exposure, and thermal fluctuations. Key Objectives: - Develop and characterize low-carbon materials with multi-functional properties - Assess mechanical performance and long-term durability under simulated
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also have to develop the theoretical methods to describe the up-conversion mechanism, and design new types of cavities that enhance its efficiency. The PhD candidate should have completed (or about to
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Topological phases of matter have reshaped how we think about quantum systems. Unlike conventional phases (such as solids, liquids, or magnets), which are characterized by local order, topological
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with other changing environmental conditions. Lab experiments will move from association to mechanism. Methanotrophs will be enriched and isolated from lake water and sediment. Co-cultures will test
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Starting Date 1 Feb 2026 Is the job funded through the EU Research Framework Programme? Horizon 2020 Reference Number 101226717 Is the Job related to staff position within a Research Infrastructure? No Offer
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aims to design and study advanced porous solids, such as MOFs, COFs, zeolites, carbonaceous materials, etc., for: Selective CO₂ capture and separation from gas streams Adsorption-based cooling and heat
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Atmospheric rivers are narrow bands of strong vertically integrated water vapour transport (IVT), conjuring the image of a river in the sky. This phenomenon has been studied extensively in relation to extreme rainfall in the United States, where they closely relate to the warm conveyor belts of...
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or equivalent). The PhD candidate is expected to have keen interest on Quantum Mechanics, Quantum Optics and Electromagnetism and good mathematical skills. The project will take place in
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unspecific methyltransferases to produce methane from dimethylsulfide in Baltic Sea sediments’, Microbiome, 12, pp: 3. Macreadie et al. (2021) ’ Blue carbon as a natural climate solution’, Nature Reviews Earth
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mechanical anisotropy and compromise the durability of printed structures. Understanding these phenomena is critical for ensuring the reliability and scalability of 3D-printed concrete in real-world