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marine biology. Qualifications A Master’s degree (or an equivalent university degree) in Chemical Engineering or related disciplines with background in catalysis, materials engineering and electrochemistry
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) catalysis and electrochemistry that allow modification of carbohydrates in a site-selective manner without protecting groups. This PhD project aims to expand the repertoire of selective carbohydrate
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, molecular inorganic chemistry and molecular materials chemistry are embedded in the institute. The research programme is focused on synthesis, catalysis, functional materials, bio-organic chemistry/chemical
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on a broad range of topics, including synthetic organic chemistry, catalysis, chemical biology, molecular inorganic chemistry, systems chemistry and materials science. The institute fosters
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of topics, including synthetic organic chemistry, catalysis, chemical biology, molecular inorganic chemistry, systems chemistry and materials science. The institute fosters an interdisciplinary
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properties of catalysts together with statistical methods to derive predictive models for selective catalysis. In a data-driven approach, an initial set of reactions is analyzed and used to establish such a
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for selective catalysis. In a data-driven approach, an initial set of reactions is analyzed and used to establish such a model. A new set of catalysts can then be predicted and tested. Subsequently, the new data
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on a broad range of topics, including synthetic organic chemistry, catalysis, chemical biology, molecular inorganic chemistry, systems chemistry and materials science. The institute fosters
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to characterize the molecular properties of catalysts together with statistical methods to derive predictive models for selective catalysis. In a data-driven approach, an initial set of reactions is analyzed and
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embedded within the group of Dr. Fedor Miloserdov ( Homogeneous Catalysis and Biomimetic Synthesis - WUR ), located in the Laboratory of Organic Chemistry ( Organic Chemistry - WUR ), which is headed by Prof