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that continuously probe complex nucleic acids: that’s your challenge! Information Nanoswitch sensors are nanometer-scale constructs that change their configuration upon molecular binding and enable the continuous
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Molecular Biosensing and the Protein Engineering research groups at TU/e (see www.tue.nl/mbx and https://merkxlab.nl/ ). Their fields of expertise on continuous biosensing and protein engineering are
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Are you fascinated by the quantum dynamics of electrons? Do you want to contribute to the development of a novel theoretical framework for accurately simulating how electrons respond to external
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. To fill-in this gap, you will use hierarchical molecular simulations to produce high quality thermodynamic, transport, and kinetic data that can be used for multiscale model development. We will focus both
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the following criteria: an MSc in molecular biology, genetics, biotechnology, plant sciences, or a related field; experience in molecular biology techniques; the ability to communicate and organize work
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materials. This project aims to change this and advance our understanding of the static and dynamic behavior of spins on surfaces and surface spin arrays. These systems, which represent real molecular quantum
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-based nanoparticle formulations and/or coarse-grained molecular dynamic simulations is a plus TU Delft (Delft University of Technology) Working at TU Delft means contributing to solutions that really make
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and organ levels and cellular and molecular levels. The project will further develop a two-dimensional open source package for modeling plant tissues, called Virtual Leaf, which coupled a Hamiltonian
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innovative methods and automation into fungal research, advancing how we visualize, quantify, and interpret the hidden dynamics of mycorrhizal fungi. This enhances not only our mechanistic insights of fungal