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approaches to elucidate how signaling variability at the single-cell level contributes to cancer progression and to tackle challenges in cancer treatments. About Our Lab: Our lab uses mass cytometry to profile
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response to stimuli, allowing them to transduce signals to the cell interior. Dynein-2 lies at the heart of these processes, as it is the molecular motor responsible for all retrograde transport from the tip
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response to stimuli, allowing them to transduce signals to the cell interior. Dynein-2 lies at the heart of these processes, as it is the molecular motor responsible for all retrograde transport from the tip
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includes analysing the economic feasibility of the proposed processes (WP1-5) using the Techno-Economic Assessment (TEA). Outcomes will be assessed through a sensitivity analysis as well as a risk analysis
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commercial scale. The focus of the postdoctoral researcher’s work will be predominantly (but not exclusively) on Work Package 6, which includes analysing the economic feasibility of the proposed processes (WP1
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Polytechnic University aspires to leave its mark nationally, continentally, and globally. Job Description: The Chemical and Biochemical Sciences-Green Process Engineering (CBS) at the University of Mohammed VI
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and pathophysiology of limbal stem cell deficiency. The role of Wnt signal transduction pathway in human limbal stem/progenitor cells is under investigation and small molecules that modulate Wnt
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acquisition and processing of associated signals and data. Essential Qualifications: Candidates must hold a Ph.D.; have the ability to work independently within a team environment; and have excellent
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electrical activity with high resolution in space and time. We study information processing in the brains of awake, behaving mice and zebrafish. We also work on electrical signaling in other tissues
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that the candidates have strong knowledge in at least one of the following research directions: 1) array signal processing 2) Radio channel sounding, estimation, and modeling 3) Integration design of SDR-based RF