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MIDD approaches can advance the understanding of pharmacological activity, efficacy and safety Provide support in the development and application of state-of-the-art quantitative methodologies
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-disciplinary project teams, including developing experimental plans and communication of results Learn and apply state-of-the-art chemical biology technologies for target engagement and interactome mapping
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MIDD approaches can advance the understanding of pharmacological activity, efficacy and safety Provide support in the development and application of state-of-the-art quantitative methodologies
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projects In depth, hands-on knowledge of the state-of-the-art modeling and simulation software with (NONMEM, MATLAB, Monolix, Berkeley-Madonna, R or comparable applications) Ability to learn new areas
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belief that modeling and simulation can have a significant positive impact on research projects In depth, hands-on knowledge of the state-of-the-art modeling and simulation software with (NONMEM, MATLAB
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Remain current in the scientific literature and state of the art techniques. Qualifications Must-Have Candidate should have a PhD in virology and/or immunology with at least 6+ years of relevant experience
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conjunction with LCMS using high resolution and triple quadrupole MS and/or ligand binding assays (LBA). The successful applicant will join a state-of-the-art laboratory with deep expertise in protein
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for regulatory submissions. Knowledge of experimental design. Strong understanding of the state-of-the-art technologies to evaluate and leverage them for improved business processes. Aptitude to identify
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to execute and optimize routes to complex payloads and drug linkers Utilize state-of-the-art computational chemistry and structural biology to advance the design of ADC technology Effectively communicate and
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on multi-disciplinary project teams, including developing experimental plans and communication of results Learn and apply state-of-the-art chemical biology technologies for target engagement and interactome