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research group (CfAM) at the University of Nottingham. The student will work in world-class laboratory facilities in the CfAM engaging with interdisciplinary team with expertise in 3D printing, bio-printing
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of mechanical and robotic systems •Ability to use finite element modelling and to simulate complex mechatronics •Ability to implement control and kinematics with hardware-in-the–loop •Background with relevant
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release over a prolonged period, enabling a more stable and efficacious drug delivery over conventionally dosed medicine. This work integrates high data-density reaction/bioanalysis techniques, laboratory
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studies that are set to contribute to gaining a comprehensive scientific understanding of the building physics and enable us to deliver suitable, practical and effective building design and operation
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, Faculty of Engineering) Introduction Modern maintenance strategies rely heavily on condition monitoring to predict failures and improve system performance. However, a significant challenge lies in the vast
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scanning and photogrammetry, available for you to carry out your studies. You will work with me and a member of our research group, (i.e. Laura Hanks or Jonathan Hale) to be proposed by you and who is
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, professional and self-dependent work attitude is essential Experience of working within the industry will be an advantage The ability to produce high-quality presentations and written reports This is an
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to implement control and kinematics with hardware-in-the–loop ◾Background with relevant packages, (MATLAB, ROS/ OpenCV/ python, LabVIEW/C languages) ◾A driven, professional and self-dependent work attitude is
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@nottingham.ac.uk About the project We are recruiting applicants for a fully funded PhD studentship in the School of Chemistry at the University of Nottingham to work under the supervision of Dr Patrick Robertson
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-doctoral research fellows. The group has excellent facilities for experimental work including approximately 2500m2 of research space and a construction and testing capability up to 5MW. The successful