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, express, purify, and study these to elucidate the relation between IBP structure and function and explore the application potential of IBPs as cryoprotectants. In this project you will combine computational
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numerical methods for the inverse design of nanophotonic structures enabling broadband, multiparameter sensing in fiber-based systems. The project is a collaboration between AMOLF, TU Eindhoven, and
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interpretation, and ensuring that methodological advances translate into facilitating biological discovery. Your home base will be the Jakobi Lab (https://cryoem.tudelft.nl ) at TU Delft | Kavli Institute
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behaviour of structures and systems, contribute to our courses in Dynamics, and build a strong research and education team within an internationally oriented academic environment. Job description As a Full
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models from research into the application of NAMs in the safety assessment of chemical substances to medicinal products and vice versa. Where to apply Website https://www.academictransfer.com/en/jobs
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builds on our recent works (https://www.nature.com/articles/s41467-025-65282-1 and https://www.nature.com/articles/nature20605 ). Join our team in the https://pomplunlab.com and https
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Circuits Project description: Neuronal synapses are remarkably heterogeneous and dynamic structures that vary widely in molecular composition, nanostructure, and signaling strength. This rich variety
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to create and maintain structure, even in a dynamic work environment Excellent social and communication skills Interest in learning to understand certain statistical analysis methods Excellent writing and
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relationships on specific indicators for these quantities, you will obtain a set of equations that describe ecosystem structure and functioning as a function of size and other relevant properties. You will test
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hidden patterns from them? Do you enjoy exploring mathematical models and working with network data? Join our team! Job description Complex systems are often modeled with networks, structures where