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properties using advanced testing techniques. The materials will be evaluated using in vitro cell culture and will be tested for biofilm prevention, aiming to improve wound closure, device safety, and
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) that is used in flight test environment and is a true representative of a defence C2 system. Specifically, the project aims to test C2 operations that involve differential pressure scanner (e.g., P10-D) by
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metascintillator prototypes towards clinical application. The research will combine experimental surface engineering, advanced materials characterisation (SEM, XRD, spectroscopy), and performance testing alongside
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mechanical fatigue—individually and sequentially, followed by electrical breakdown testing to assess their impact on the dielectric performance of the material subsystems. The target is to develop a
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Electrical Capacitance Tomography (ECT) to study the combustion processes of hybrid propellant propulsion systems. To perform inflight tests using the ECT as hardware in the loop to control O/F ratios in a
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metabolomics, as well as imaging mass cytometry, and test the effect of AZ clinical compounds on the immune-metabolic landscape of our PanIN-to-PDAC models. Dr Koulman will provide training and support with
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Deadline: 31 August 2025 A fully funded 3.5 year PhD position is available to work on the project titled “Scalable benchmarking for digital quantum computers based on blind testing”. This position
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pertinent measured or calculated parameters, conduct surveys and undertake and record the outcomes of physical and numerical tests. You will work under general supervision, and you should have the ability
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applications that focus on intergenerational approaches to community sport to examine its capacity to help build stronger, more inclusive communities that thrive across generations in Manchester – with the aim
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at higher risk offered PSA blood tests which are not definitive. Our research aims to develop an image-based approach to screening, combining PSA testing with MRI to better identify aggressive cancers