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transcriptomics and bioimaging to study human liver biopsies and advanced, preclinical models. A combination of wet-lab and computational biology, close ties to the clinic, and a wonderful team of early career
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to uncover new regulatory pathways and decipher underlying mechanisms. Postdoc candidate(s) with experience in wet laboratory work will perform wet laboratory experiments involving cultured mammalian cells
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or petroleum chemistry Gas diffusion electrode (GDE) and membrane electrode assembly (MEA) preparation, characterization and postmortem analysis Wet (precious) metal chemistry Record of article reviews
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to explore new analysis methods using deep learning. Depending on the interest, it is also possible to be involved in the wet lab. Professor Tiwari also leads the Center for Integrated Multiomics in Precision
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transcriptomics and bioimaging to study human liver biopsies and advanced, preclinical models. A combination of wet-lab and computational biology, close ties to the clinic, and a wonderful team of early career
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to explore new analysis methods using deep learning. Depending on the interest, it is also possible to be involved in the wet lab. Professor Tiwari also leads the Center for Integrated Multiomics in Precision
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experimental techniques. As a formal qualification, you must hold a PhD degree (or equivalent). You must have: Documented expertise in either computational protein design or wet lab techniques, with a
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, such as bioinformatics, biochemistry, molecular biology, biotechnology, or a related discipline. You must have: Expertise in either computational protein design or wet lab techniques for protein
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. Experience with wet lab work is highly advantageous. Although not essential, familiarity with renal physiology and kidney disease mechanisms is considered a strong asset. As a person, you have good
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degree (or equivalent). More specifically, you are expected to have documented experience in one or more of the following: Wet-lab chemistry methodology. Metal-organic framework synthesis and