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questions we seek to address include: Feedback between mechanics, cell fate dynamics, and geometry driving tissue patterning. How 3D topological meshworks are shaped, constrained, and canalized. How nuclear
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waveguide excitation significantly reduces laser damage to sensitive samples. 5. The chip geometry is stable; no free-space parts. Project Description The PhD project involves photonics device simulation and
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The School of Mathematics & Statistics combines world-leading research expertise in pure and applied mathematics and statistics in areas such as mathematical biology, fluid dynamics, geometry and
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their entire life cycle due to the variations arising from geometry, material properties and loads during the long-term operation. This leads to a growing need in model identification, calibration, and
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-diversity.htm and also our award-winning work in Disability Inclusive Science Careers https://disc.hw.ac.uk/ . Use our total rewards calculator: https://www.hw.ac.uk/about/work/total-rewards-calculator.htm
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to adapt to the modified geometry to model such phenomenon. The aim of this project is to utilise the Lattice-Boltzmann method, which does not require a computational grid to resolve the flow field in order