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interdisciplinary consortium while collaborating closely with a second PhD researcher focused on reactor modelling and safety analysis. Job description TU Delft is part of a consortium led by Allseas that is
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structural glycoproteomics. For development and translational research we make use of patient samples and models with defined genetic and/or biochemical defects that require structural glycoproteomics
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23 Jun 2026 Job Information Organisation/Company Delft University of Technology (TU Delft) Research Field Biological sciences » Biology Computer science » Informatics Computer science » Modelling
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will then develop XR applications that provide real-time guidance through visual, auditory, or haptic feedback in everyday situations. Using wearable devices, machine learning, and cognitive models you
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the labs are located. What you do Humins, unavoidable by-products of acid-catalyzed carbohydrate conversion in biorefineries, are typically burned for energy. This project valorizes humins by developing
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coupled-cluster (EOM-CC) theory with periodic DFT (pbcEOM-CC). To quantify spin-phonon couplings of spins on surfaces—the bottleneck to modeling spin relaxation—we will develop a new approach using pbcEOM
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enables patterning the smallest, smartest, and most energy-efficient features on chips. The required 13.5-nm radiation is generated from plasma that is produced from tiny tin droplets that are heated by
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, including high-throughput bioreactor cultivations, multi-meta-omics (metagenomics and metaproteomics), and mathematical modelling. You will work in a highly interdisciplinary environment at the interface
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clinical, sequencing data, and circulating biomarkers, the project aims to: Develop and validate advanced machine learning models for the stratification and diagnosis of ANOCA; Provide cell-type–resolved and
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(NL), where the labs are located. What you do Humins, unavoidable by-products of acid-catalyzed carbohydrate conversion in biorefineries, are typically burned for energy. This project valorizes humins