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their website at https://www.naritalab.com/ Our laboratory investigates the biology of preneoplastic cell states, with particular interest in how changes in cell functional identity and plasticity are controlled
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, complement/immune pathways, or retinal imaging/assays is advantageous but not essential. LanguagesENGLISHLevelExcellent Research FieldNeurosciencesBiological sciences Additional Information Benefits gross
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AI and data science, particularly in dynamic settings where observations are collected sequentially and decisions influence future outcomes. This project will develop novel machine learning and
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no less than 5.5 in any band or equivalent). How to Apply Applicants should upload information via Birmingham’s Mechanical Engineering PhD portal here: https://www.birmingham.ac.uk/study/postgraduate
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Date 15th October 2026 Sponsor British Heart Foundation (https://www.bhf.org.uk/ ) Supervisors Dr Simon Bamforth https://www.ncl.ac.uk/medical-sciences/people/profile/simonbamforth.html Dr Helen Phillips
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This PhD project will develop mathematical models to investigate population dynamics in biological systems. Combining dynamical systems theory, mathematical modelling, and data-driven approaches
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. The post holder will work with the Bakshi Lab's single-cell phage infection platform (https://www.bakshilab.net/ ) and an interdisciplinary team spanning microbiology, engineering and quantitative
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numerical model using Abaqus Finite Element Modelling (FEM) software, validated through comparison with the centrifuge modelling data. Using the validated numerical model, conduct a comprehensive parametric
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imprint lithography. The candidate will be based in the Department of engineering working in Prof Michael De Volder's group (http://www.nanomanufacturing.eng.cam.ac.uk/ ), and will collaborate closely with
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, microelectronics, integrated-circuit design, computer engineering or a closely related discipline In addition for Research Associate A PhD in electrical or electronic engineering, microelectronics, integrated