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dynamics and statistical physics. The BBGK equation is the governing equation for hypersonic, rarefied flow problems in aerospace and microfluidics, where the continuum and equilibrium assumptions of Navier
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structural and biophysical analysis with in vivo studies, including the generation of targeted mutants using state-of-the-art genome editing and advanced quantitative light microscopy. Students will have the
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with Cross Laminated Timber (CLT) panels is a logical step to reduce the embodied carbon and sequester carbon within the structure itself. To demonstrate the performance of this technology at full-scale
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to symmetry breaks in the patterning process. A hybrid modelling approach integrating the dynamics of a core network while utilising a virtual template from experiments for cellular growth and division will be
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student. We require that applicants are under no restrictions regarding how long they can stay in the UK. Cranfield Doctoral Network Research students at Cranfield benefit from being part of a dynamic
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(DT) communication protocols for interfacing with different types of systems and data sources. Using the DR research to create guidelines for the development of the ontological structure for the DT
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will build upon state-of-the-art techniques to address the key challenges from our industrial partners in a structured manner, for example: What type and severity of fault and attack can be tolerated and
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conferences. Cranfield operates a substantial Doctoral Researchers Core Development programme (DRCD) for its research students. This programme provides a generic structured training programme which is
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of work as a case study, this PhD will contribute new knowledge to the fields of archival and performance research, generating a model of practice that can be utilised by other artists. Structured over
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will take place: July Section 2 - Studentship (Funding) Details: Name of Funder: The London NERC DTP Structure: Stipend plus Tuition Fees Duration: 42 Months (3.5 Years) Eligibility: Home Applicants