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Field
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application of modeling and simulation (M&S) strategies to support: PK/PD analyses, Exposure–response characterization, Dose selection and optimization Evidence of scientific engagement and emerging thought
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development, optimization, and validation of in vitro mammalian cell based assays that are related to metabolic diseases (such us cell culture, RNA/protein extraction qPCR, western blotting and other metabolic
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hypothermia to inform the optimal dose to be used in future efficacy studies. The Clinical Research Fellow will be involved in all aspects of the study, including recruitment, neurological assessment
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to optimize the design and performance of floating breakwaters. Develop models for stability assessment, structural integrity, and dynamic response of floating systems. 3. Connector Design Design and analyze
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. Existing methods rely on fixed data and static models, which struggle to adapt to real-time changes and unpredictable conditions. This limits the ability to optimize energy storage use for critical
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limits the ability to optimize energy storage use for critical applications like emergency response, grid balancing, and off-grid power supply. The aim of this project is to develop a platform that will
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selection and optimization Evidence of scientific engagement and emerging thought leadership in Quantitative Clinical Pharmacology and Pharmacometrics. Quantitative Systems Pharmacology (QSP) Candidate PhD in
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years. Preferred skills: Demonstrated ability to publish research findings in peer-reviewed journals Experience in bioprocess optimization and scale-up Ability to research independently, troubleshoot
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colorectal cancer organoid culture integrated with perfused microvascular networks. The role will focus on optimizing and standardizing vascularized organoid workflows, executing drug-response and combination
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the team of the NAMIC Project for 3DP Ship Hull Design. The Research Engineer will play a critical role in the development, validation, and optimization of 3D-printed Ship Hull and Connector System