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Field
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critical roles of ion channels—particularly the TRP superfamily—in physiological and pathological processes. Our interdisciplinary approach spans from foundational electrophysiology to translational models
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Experience in fluorescence microscopy and/or flow cytometry-based readouts of infection Experience with biochemical assays (e.g. Western blotting) Experience handling/processing samples in vivo infection
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designing and executing the synthesis of novel and innovative foldamer catalysts, and their application towards a variety of stereoselective processes, including organocatalytic and photocatalytic reactions
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of optics, imaging systems, digital holography, speckle metrology, Matlab and simulations, signal processing, the Fourier transform, machine learning, and classifiers such as SVM. Meriting qualifications
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National Aeronautics and Space Administration (NASA) | Pasadena, California | United States | 39 minutes ago
of these worlds. We are interested in how planetary-scale processes such as differentiation, thermal evolution and tidal dissipation affect water, rock and organic chemistry over time, as well as nutrient and
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include: the role of the Target Bodies in revealing the origin and evolution of the inner Solar System; investigations as windows into planetary differentiation processes; near-Earth asteroid
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scholar to perform research related to lung injury and resolution. The successful candidate will use cell-based and mouse cells/tissue to study macrophage signaling pathways that promote lung injury
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inflammatory diseases and exploring immunotherapy to treat them. This exciting project involves characterising samples from a recently completed Phase II clinical trial for amyotrophic lateral sclerosis (ALS
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level role but candidates who have submitted their thesis and are awaiting award of their PhDs will be considered. In these circumstances the appointment will be made at Grade 5, spine point 30 with
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the molecular mechanisms underlying genome-interacting processes using a highly multidisciplinary approach that combines advanced single-molecule fluorescence imaging with a range of biophysical, structural, and