15 applied-physic-"https:"-"https:"-"https:"-"https:"-"https:" PhD positions at University of Birmingham
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vacuum, charged-particle optics, laser cooling, ion trapping, precision laser spectroscopy, quantum logic and atomic-clock technology. It sits at the interface between atomic physics, quantum technology
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form of energy–e.g. electrical, magnetic, acoustic, or chemical–into mechanical motion. These swimmers are expanding the frontiers of micro-engineering and can be used in tasks such as chemical analysis
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Join us! Are you a curiosity-driven scientist with a background in physics, engineering, or a related discipline, who wants to lead work at the intersection of robotics and metamaterials? Join us
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Applications are sought for a fully funded PhD 3-year studentship position in the School of Chemistry at the University of Birmingham (UoB) in collaboration with the Defence Science and Technology
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the supervision of Professor Rosemary Dyson, in the School of Mathematics (in the College of Engineering and Physical Sciences), and interface with the SUM4Products Network. Background The formulated product sector
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engineering, applied physics, or a closely related subject. You should be comfortable with hands-on experimental work and willing to learn laboratory biology. Experience with MEMS, actuators, COMSOL, or cell
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, applied physics, or a closely related subject. You should enjoy building things and be prepared to work across mechanics, materials and electronics. Experience with microfabrication, finite element analysis
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or upper second-class honours degree (or international equivalent) in Materials Science, Chemistry, Chemical Engineering, Metallurgy, Physics, Electrochemistry, or a related discipline. Experience in
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interface of method development and materials physics, as part of a research group passionate about tackling complex materials challenges for materials with real-world applications. The project offers
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Gram negative bacteria such as E. coli use two main mechanisms to survive in the presence of a range of toxic molecules such as antibiotics, biocides, and solvents. First, their envelope prevents