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of Cambridge, University of Oxford, Imperial College London, Hasselt University, and Princeton University. We welcome applications from motivated students with backgrounds in physics, chemistry, materials
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Terahertz (THz) is a rapidly expanding field with notable importance for a myriad of disciplines such as physics, chemistry and biology. In the context of material science, optical-pump terahertz
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subset of serotypes. Consequently, through a process called ‘serotype replacement’ previously infrequent serotypes have expanded in prevalence to become those most observed. Consequently, even in countries
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engineering or physics (preferably with first class honours or equivalent) and we expect the PhD candidate to develop the expertise required to lead an experimental research project, to train students
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easier to detect and measured experimentally. However, it is not well known yet how this process emerges and how one can control it. This PhD project will focus on developing the necessary theoretical
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related research strands, including: RAM Process Modelling: The development of advanced numerical models for RAM processes, incorporating complex phenomena such as chemically induced viscosity changes
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astrophysics, and reproducible research software development. Candidate Profile We welcome all applicants with a background in: • Physics, Astrophysics, Data Science, Applied Mathematics or a related field
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to fully entangle two or more molecules in plasmonic nanocavities. The PhD candidate should have completed (or about to complete) his/her undergraduate degree in Physics (preferably with first class honours
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habitat and connectivity as streams dry out is particularly important (Dugdale et al. 2022) for process hydrology, river ecology (e.g. refugia during drought, loss of physical in-channel habitat, loss
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for candidates with a background in meteorology, climatology, physics, engineering and any related discipline, and a strong interest in applying advanced physical and computational methods to real-world