11 algorithms-"Multiple"-"University-of-Cambridge"-"St" positions at University of Washington
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electrode arrays - 20% data analysis with advanced methods such as multiple regression, fourier domain algorithms, modern statistical approaches - 5% paper preparation including writing text, making figures
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on multiple projects concurrently while meeting deadlines. You keep current of recent scientific, engineering, and technical advances and can translate these into your research. You will build out your
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the development of sound method and analytical approaches. You thrive in a collaborative work environment and can work on multiple projects concurrently while meeting deadlines. You keep current of recent
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, APIs, and SDKs by reading documentation • Excellent understanding of machine learning techniques and algorithms, such as k-NN, Naive Bayes, SVM, Decision Forests, etc. • Experience with common data
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-$15,500 monthly), along with great employment benefits and competitive total compensation incentives. The Positions: We have multiple openings available for exceptional talent who possess specialization in
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leading multiple major research studies in a lab dedicated to the study of HIV and other STI's Equivalent education and/or experience may substitute for minimum qualifications except when there are legal
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competency, and QA/QI. Oversee and consult in development of optimized laboratory utilization algorithms. Consult and collaborate with existing clinical research units to support ongoing laboratory projects
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Details Position Description The University of Washington, Department of Radiology, has openings for multiple postdoctoral scholar positions. The research projects will focus on advancing rapid
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data management sufficient to create, transform and integrate data in a variety of resolutions and formats. Analysis will include running machine learning algorithms (e.g., Random Forest, CART) and
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to achieve the following objectives: 1. Characterize 3-D Urban Structure and Change: Utilize data from multiple remote-sensing platforms and deep learning algorithms to generate high-resolution maps of 3-D