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of roots, nodules, and tubers, using reference genotypes and by manipulating abiotic factors (e.g. temperature, water, N). You will conduct molecular and cellular analyses using histology, microscopy, single
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at NIOZ (e.g. confocal laser scanning microscopy laser ablation-ICP-MS,) you will investigate ion uptake mechanism and crystallization dynamics: this will help predicting future marine calcification rates
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. Conventional experimental techniques such as dilatometry, optical and electron microscopy, electron backscatter diffraction and x-ray diffraction with Rietveld refinement are available at the lab and can be used
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state-of-the-art magnetic imaging with advanced electron microscopy techniques. You will generate high-quality experimental datasets that form the basis for data-driven micromagnetic modelling developed
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using advanced analytical techniques, including TED-GC/MS (Thermal Extraction Desorption–Gas Chromatography Mass Spectrometry) to quantify microplastic mass, SEM-EDX (Scanning Electron Microscopy with
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/science/biology . Selection criteria Candidates should have an MSc degree with a strong background in microbiology, molecular genetics, microscopy and/or biochemistry and an excellent grade list Candidates
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that are acoustically transparent. We will characterize the flow characteristics and the biological characteristics using (live) microscopy of relevant cell characteristics. Building on this first-generation model, we
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culture and cell separation. Skills in flow cytometry, microscopy, genetics or protein structure analysis are considered an advantage. Strong understanding of cellular processes – Knowledge of cell
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multidisciplinary team of neuroscientists, engineers, and clinicians. Where to apply Website https://www.academictransfer.com/en/jobs/357110/phd-position-project-synergy-me… Requirements Specific Requirements
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characterization using cryo-electron tomography (cryo-ET), and complementary light microscopy methods. Specific objectives are: Setting up cryo-ET FIB SEM workflow for reconstituted synapses Visualize nanoscale