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is close. Our cohesive campuses make it easy to meet, work together and exchange knowledge, which promotes a dynamic and open culture. The ongoing societal transformation and large green investments in
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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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focus on the molecular design, formulation, fabrication, and optical optimization of one-way transparent films. You will work with reactive liquid crystal mesogens, chiral dopants, photo-alignment methods
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application. It is part of activities in ARCNL’s Source Department. The research activities of the Source Department aim at an atomic- and molecular-level understanding of the fundamental dynamics in
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proliferating stem cells to differentiated and polyploid tissues. We investigate how DNA replication is dynamically regulated to preserve genome integrity while supporting development, tissue homeostasis and
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, cryo-electron microscopy (cryo-EM), cryo-EM-based polyclonal serology (cryo-EMPEM), molecular dynamics simulations, machine learning, and structural biology to define epitopes and engineer improved
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PhD Candidate: Modulating plant-based nutrition to enhance the sensory aspects and nutritional value
Centre in Venlo. The research facilities include dietary intervention facilities, clinical intervention laboratories, an exercise physiology lab, analytical facilities, a molecular biology lab and cell
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on ultrafast chirality and attosecond electron dynamics, aiming to develop new methods for probing and controlling chiral light–matter interactions with applications in photonics, biosensing, and materials
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to molecular hydration. The student will develop experimental methodologies and combine these with state-of-the-art characterization techniques, including Magnetic Resonance Imaging (MRI), Nuclear Magnetic
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Chlamydomonas reinhardtii. The project will investigate how genome dynamics and environmental conditions interact to shape the evolutionary success of polyploids using: Experimental evolution approaches