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primary regenerative braking. EMBs are highly sensitive to EV harsh operating conditions. This project addresses this challenge by developing AI-based EMB clamping force estimators and robust control
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for an enthusiastic student with a first-class or 2.1 Bachelors, or Masters degree in physical science or engineering disciplines and a strong interest in computational materials modelling. Experience with molecular
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of full-time study. Eligibility: This studentship is available to home students only. The candidate should have a good 2.1 Bachelors, or Masters degree in Engineering, Computational or Physical Sciences
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. The candidate should have a good 2.1 Bachelors, or Masters degree in Engineering, Computational or Physical Sciences, or Physiology/Medical Sciences. This project will suit those with a keen interest in
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PhD Studentship: Advancing solid-state battery electrolyte manufacturing with terahertz spectroscopy
Bachelors, or Masters degree in Electronic, Chemical Engineering, Applied Physics, Physical Sciences or equivalent. Experience in more than one of the following topics will be a plus: Working knowledge of
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. This project intentionally moves beyond that paradigm. The research will focus on kHz–MHz eddy current sensing frameworks in which electrical conductivity is the primary sensing mechanism. This enables
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) and/or postgraduate masters’ qualification (MSc) in a science and technology field such as Mechanical Engineering, Chemical Engineering, Materials Science and Engineering, Manufacturing, Physics
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Sponsor/ Supporting Company: WMG – affiliated with Faraday Institution Eligibility: 2:1 or equivalent undergraduate in STEM (Masters Degree desirable) Start Date: Oct 2026 – intake The Battery
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at the prevailing UKRI rate for3.5 years of full-time study. The standard UKRI stipend payment for academic year 2025 is £20,780. Eligibility: The candidate should have a good 2.1 Bachelors or Masters degree in