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’ ph.d programme . The PhD programme comprises a training component corresponding to 30 ECTS, which corresponds to one semester. The remaining six months will be allocated to this formal training
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component corresponding to 30 ECTS, which corresponds to one semester. The remaining six months will be allocated to this formal training. Qualifications and personal qualities: The applicant must hold a
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or cryogenic electron microscopy (cryo-EM) Determination of protein ligand binding using biophysical methods (SPR, ITC, or related methods) Experience in the following areas is an advantage: Structure-based drug
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. The candidate will work with state-of-the-art analytical instrumentation, generate extensive experimental data sets and analyze them using advanced bioinformatics methods. The work tasks include to: Generate and
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comprises a training component corresponding to 30 ECTS, which correspondsto one semester. Qualifications and personal qualities: The applicant must hold a Norwegian master’s degree or an equivalent foreign
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will be allocated to formal training. As a PhD candidate, you must participate in the Faculty of Humanities’ educational programme . The PhD programme comprises a training component corresponding to 30
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: The overall research goal of the Brenk lab is to improve methods used for structure-based drug design and to apply these methods to design inhibitors for enzymes with biological relevance. A key point in our
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participate in the Faculty of Humanities’ ph.d program program . The PhD programme comprises a training component corresponding to 30 ECTS. Qualifications and personal qualities The applicant must hold a
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component corresponding to 30 ECTS, which corresponds to one semester. Qualifications and personal qualities: The applicant must hold a Norwegian master’s degree or an equivalent foreign degree in digital
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these to produce compound libraries for further evaluation in various assays. An important element in the synthesis strategies will be flexibility. We plan to use the departments laboratory for automated chemistry