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motor learning is available immediately in the laboratory of Dr. Aaron Kerlin (www.kerlinlab.org). Successful applicants will use state-of-the-art equipment we have constructed for the in vivo measurement
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advance X-ray investigations of solar flares. Work entails both hardware-based and analysis-based studies of solar hard X-rays. Instrumentation work includes testing of X-ray detectors and telescope
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should be open to learning new techniques and have a strong interest in using next-generation sequencing-based techniques to study virus-host interactions. Specifically, Individuals will perform epigenetic
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specific areas identified for professional growth, relevant to the project work scope. This position is based on campus. Per UMN policy, work may be done remotely when appropriate and approved by your
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outcomes ●casual representation learning for real-world data ● deep learning interpretation, fairness and robustness ●Regularly conduct computational experiments to execute algorithms on various health and
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. The role offers exceptional opportunities for professional development, including learning the latest advancements in large language models, translating these innovations to genomic applications, and leading
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analyzing precision agriculture trials integrating UAV, multispectral, and hyperspectral imagery, and ground-based sensor data - A proven ability to develop and maintain effective working relationships and
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, immunofluorescence, PCR, qPCR, cell-based assays, fluorescence calcium imaging. • Perform data acquisition and analysis, grant and manuscript preparation, and presentation of findings at weekly lab meetings
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/Statistics, Medical/Health Informatics. Strong computational and programming skills with abilities to develop cutting-edge large-scale machine/deep learning algorithms using high-performance computing (HPC
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gene therapy. The project and work focus will be Gene Therapy Research using CRISPR-based platforms such as base and prime editors and CRISPR-associated transposases. 100% Gene Therapy Lab Research