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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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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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microscopy and tomography systems for imaging thick and strongly scattering biological samples. The successful candidate will work in an interdisciplinary and international research environment, closely
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characterization using diffraction and microscopy techniques Use of advanced research infrastructure, including synchrotron and neutron facilities or high-magnetic field laboratories The PhD project includes
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technology, to explore genetic diversity. Additionally, X-ray microscopy will be employed to address taxonomic and systematic questions, analyzing specimens from both new and historical collections housed
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virtual screening approaches • validate inhibitors via biological assays, through hands-on cell biology experiments, genetics, and advanced light microscopy approaches to measure compound toxicity and
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measurements at cryogenic temperatures Structural and microstructural characterization using diffraction and microscopy techniques Use of advanced research infrastructure, including synchrotron and neutron
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electronic structure by means of surface‑sensitive spectroscopy and high-resolution electron microscopy testing of chemical looping oxidative coupling of methane in collaboration with SINTEF The content
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particular focus on biomechanical properties and cell migration. The Structures will be studied in-house using photoluminescence spectroscopy and using advanced light microscopy in collaboration with