471 structural-engineering-"https:"-"https:"-"https:"-"https:"-"https:"-"UCL"-"UCL" PhD positions in United Kingdom
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measurements of nuclear parameters via the hyperfine structure and isotope shift. The project is based at facilities where The University of Manchester and our national and international collaborators, from
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. This is a 3.5-year PhD position based in the Structured Light Lab, within the Department of Physics and Astronomy at the University of Exeter (Streatham campus, Exeter). The Structured Light Lab is led by
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the orientation of a crystal affects its response to dynamic high pressure such as that produced through impact and shock compression. Building upon earlier research into BCT structures, this project will
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-like structure. These mysterious signature properties are ubiquitous across science and engineering, with examples ranging from optical fibres to novel formulations of pharmaceutical drugs and beyond
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insole architectures to redistribute plantar pressure and improve comfort. To support continuous monitoring, sensing elements will be incorporated within the insole structure to capture changes that may
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Research theme: Chemical Engineering How to apply: uom.link/pgr-apply-2425 UK and EU This 3.5-year PhD project is fully funded by industry. Home and EU students are eligible to apply. International
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to improve mechanical performance in composite structures under extreme loads. Emphasis will be placed on the design of hybrid configurations capable of promoting controlled and progressive failure modes
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group with structured training and strong technical support. 2. Candidate profile This project is ideal for candidates from Mechanical, Electrical, Biomedical, Materials Engineering, or related
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, materials science, environmental engineering, or a related field - Strong laboratory skills and an interest in sustainable construction technologies - Experience with cementitious materials, durability
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embrittlement, leakage, and long-term material degradation raise critical reliability concerns for flight certification. Structural Health Monitoring (SHM) and Digital Twinning (DT) technologies can address the