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replication and transcription. Using C. elegans genetics, advanced RNA biology techniques, and industrial biochemistry training with Inspiralis Ltd., the student will investigate how RNAs and their
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training in: Biocatalysis and enzyme screening. Natural product derivatization and purification. Analytical chemistry (NMR, LC-MS, HPLC) Mammalian cell-based pharmacology. Multidisciplinary collaboration
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observations and modelling of the physics and biogeochemistry of Antarctic shelf seas. You will gain experience in computer coding, statistics for environmental science, working with and piloting autonomous
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excellent training in molecular biology, environmental microbiology and bioremediation science. The combination of transferrable, technical skills associated with the project will make the successful
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. Entry requirements At least UK equivalence Bachelors (Honours) 2:1. English Language requirement (Faculty of Science equivalent: IELTS 6.5 overall, 6 in each category). Acceptable first degree: A degree
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their host plant. Use cutting-edge molecular biology and genomics, we will try to solve a decades-old mystery in plant pathology. Many plant disease-causing fungi lose their ability to cause disease
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will receive hands-on training in spatial data analysis, while developing conceptual understanding and critical thinking in movement ecology, marine science and conservation. You will build strong
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across different imaging devices, including future sensors with unknown spectral sensitivities. Training The student will be based at the Colour & Imaging Lab at the School of Computing Sciences which has
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We seek an enthusiastic and inquisitive individual with a background in a subject aligned with the Biological Sciences, Molecular Biology, Microbiology, or Genetics. Entry Requirements At least UK
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the laboratory of Dr. Phil Carella, located in the Department of Cell and Developmental Biology at the John Innes Centre. It provides an exciting opportunity to explore disease resistance in the emerging model