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) - Thesis “Optimization of CRISPR (Clustered Regularly Interspaced Short Palindromic Repeats) Reactions on Microarrays” Duration: 6 months We are looking for a talented and motivated student specializing in
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or functions (e.g., by phages) – to optimize microbiome composition and function Improvement of our current tool for microbiome modelling Your profile Masters, Diploma or equivalent degree in Bioinformatics
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master's degree in agricultural or environmental economics, applied mathematics, or a related field Good background in bio-economic modelling, CGE modelling, and optimization techniques Experience with
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include create a N model ensemble of at least 4 process-based models (DayCent, LDNDC, Daisy, Candy) model within-field N-fluxes (e.g., N2O-losses, NO3-leaching, N-mineralization) for optimized N
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to contribute to our groundbreaking research. The project focuses on enhancing RNA detection on microarrays through the development and optimization of novel biochemical strategies. Key Responsibilities: Conduct
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optimize and ex-ante evaluate different components of an architecture for improving global public good provision that is sketched here . The architecture consists of two components, tax clubs and reward
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figures Further development of the IOM's controlling instruments Preparation of target/actual comparisons and variance analyses, identification of optimization potentials Monitoring of separate financial
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superparamagnetic and ferromagnetic nanoparticles suitable for biomedical use. Modify nanoparticle surfaces for compatibility with hydrogels and biological components. Optimize magnetothermal properties
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under small temperature gradients (ΔT ≤ 30 K). Design and Optimize novel fabrication techniques to achieve high packing densities in thermoelectric generators (TEGs) for powering IoT sensor networks
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these proteins in probiotic bacteria and experimentally test their activity Optimize protein designs based on experimental results Develop bacterial biosensors of intra- and extra-cellular analytes Active