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complete lab-on-a-chip integration for point-of-care devices. One of the Group's main objectives is to apply the nanobiosensor devices in real clinical diagnostics and environmental control. The Job is
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cellular biology techniques (essential). Knowledge in stress response pathways, sirtuin biology, and proteomic/genomic approaches (desirable). Excellent communication and organizational skills. Good command
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Ability to work independently and as part of a team Strong organizational skills Scientific integrity and rigor A good command (spoken & written) of English language LanguagesENGLISHLevelGood Research
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valued but it is not essential. Familiarity with revision control software. High Performance Computing. Experience with High Throughput Calculations will be valued but it is not essential. Previous
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characterization of low-symmetry 2D material samples and for implementing strain engineering strategies to control symmetry breaking on demand. These approaches are expected to drive the emergence of non-linear
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clinically relevant flow rates and pressures. Development of mechanical and fluidic systems, including rotor–stator configurations, ferrofluid handling, and pulsatile pumping control. Integration of pump
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application. The working language of the Institute is English. Full command of the English language is required in all positions. WHAT YOU WILL FIND AT IMDEA: Stimulating environment where you can grow
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using the available gas and liquid sample holders to study dynamic processes in real-time, under controlled environmental conditions relevant to catalysis and PEC operation. • Work closely with national
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of proteins in mammalian tissue culture cells. The candidate should have a solid background in cell biology, with a special interest in trafficking and quality control of proteins for secretion outside
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will be experimental, focusing on the control and characterization of the light sources integrated into the sensor. Characteristics of the contract: Expected duration: until 31/10/2027, always linked