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Field
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, microscopy imaging, systems engineering, and biophotonics. We are committed to providing all members of our group a collaborative, supportive, and motivating academic environment with abundant opportunities
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will be characterized using structural techniques (XRD, BET), electron microscopy (TEM, SEM), UV-Vis absorption spectroscopy, and photo- and radio-luminescence. This thesis will be conducted in close
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Science, Chemistry, Chemical Engineering, or relevant field. Experience morphological/structural techniques for materials characterization. Experience in characterization techniques such as electron
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organisms. You will have access to brand new, state-of-the-art imaging and microscopy facilities, as well as a stimulating, interdisciplinary working environment. Good working knowledge of experimental
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of mammalian gametes or embryos Extensive experience with in vitro fertilization experiments Molecular biology techniques (RNA isolation from limited cells, RT-qPCR) Fluorescence microscopy or confocal laser
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, synchronization, and control electronics; establish measurement workflows, benchmark detection range, depth resolution, field of view, frame rate, robustness under background light; perform optical/system
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focus on one of these research areas, using advanced microscopy, image analysis, genetic and optical perturbations, and biophysical approaches. You will also collaborate closely with theoreticians
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For further information about the position, please contact Associate Professor Brage Håheim: email: Brage.haheim@uit.no phone: 99 54 53 23 Jon Terje Hellren Hansen via Unsplash Jon Terje Hellren Hansen
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in the Phi_Lab, led by Dr. Azeem Ahmad, and will focus on the development of advanced reconstruction algorithms and next-generation quantitative optical microscopy and tomography systems for imaging
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gene editing, single cell RNA sequencing, bioinformatics, genetic engineering in mice, intravital microscopy and other imaging modalities, and a number of cell and molecular techniques. For more