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on a recently awarded BBSRC Engineering Biology Mission Award. The aim of the project is to engineer Escherichia coli strains to express different high-value inner membrane proteins and determine the
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to work on a recently awarded BBSRC Engineering Biology Mission Award. The aim of the project is to engineer Escherichia coli strains to express different high-value inner membrane proteins and determine
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recently awarded BBSRC Engineering Biology Mission Award. The aim of the project is to engineer Escherichia coli strains to express different high value inner membrane proteins and determine the best
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particularly interested in receiving applications from individuals who can demonstrate research excellence focused on the molecular and cell biology of health and disease with a view to translating outcomes
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View All Vacancies Infrastructure & Sustainable Eng Location: Aston University Main Campus Salary: £32,332 to £34,980 per annum Grade: Grade 07 Contract Type: Fixed Term (07/10/2024) Basis: Full Time Closing Date: 23.59 hours BST on Monday 08 April 2024 Interview Date: To be...
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England (E3) Programme and will synergistically combine world-leading expertise in membrane biology and novel polymer chemistries to establish a first-of-its-kind institute, expanding our distinctive
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supported by a £10M grant from the Research England Expanding Excellence in England (E3) Programme and will synergistically combine world-leading expertise in membrane biology and novel polymer chemistries
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(E3) Programme and will synergistically combine world-leading expertise in membrane biology and novel polymer chemistries to establish a first-of-its-kind institute, expanding our distinctive excellence
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England (E3) Programme and will synergistically combine world-leading expertise in membrane biology and novel polymer chemistries to establish a first-of-its-kind institute, expanding our distinctive
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synergistically combine world-leading expertise in membrane biology and novel polymer chemistries to establish a first-of-its-kind institute, expanding our distinctive excellence in computational membrane science