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technology transfer and an insilico approach to the development of continuous processes based. The project will use as a baseline the mAb solutions platform process and standard downstream operations as
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particle size changes due to breakage and agglomeration. The rates are dependent on process parameters (e.g., impeller speed and operation) and material properties (e.g., hardness and flowability
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Department - Loughborough: Mechanical, Electrical and Manufacturing Engineering Secondary Department - Loughborough: Physics Closing date of advert: 5th July 2024 Start date: October 2024 Full-time
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the application process please contact the Faculty of Education HR team ([email protected] ) Please can you upload a letter of application indicating how you meet the person specification and
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involved in the process before it can be taken to industry. This PhD project will develop new understanding on the Joule bonding and debonding processes of such conductive epoxy nanocomposites used as self
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degree in Engineering, Mathematics or Physics. Please contact the main supervisor, Dr David Apsley, before you apply: [email protected]
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a strong background in Computer Science, Engineering, Maths or Physics, and preference would be given to those with a good understanding of computer vision and deep learning. It is essential to have a
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zero energy sector by 2050. However, challenging solid and liquid waste streams are produced as part of the energy generation process. Much of this legacy waste resides at the Sellafield site in
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led by Prof. David Flynn, and make leading contributions to the cybersecurity and resilience of federated (networked) digital twins. You will conduct cutting-edge research in cyber-physical security
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led by Prof. David Flynn, and make leading contributions to the cybersecurity and resilience of federated digital twins. You will conduct cutting-edge research in cyber-physical security, resilience and