48 embedded-system "https:" "https:" "https:" "https:" "St" "St" research jobs at Villanova University
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Posting Type Student Hours/week: 10 Eligibility: Work Study ONLY Semester 2025 Summer Location St. Augustine Center Detailed Work Schedule Number of positions: 1 Department: 131-Assoc Dean - Science Contact
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to Applicants: All applicants must apply online at https://jobs.villanova.edu and complete a faculty profile. The review of applications begins immediately and will continue until the position is filled
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application materials will be collected online, at https://jobs.villanova.edu . Review of completed applications will begin as soon as the job is posted. The deadline for application review is January 30, 2026
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& the Environment. The Fellows program is designed to enhance the College’s teaching of science to non-science majors through the Mendel Science Experience program and to foster the professional development of recent
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Researcher Position Type: Temp/Intern Location: Villanova, PA Work Schedule: temporary Approximate Number of Hours per Week 10-20 Hours per Week Department: 960-Center for Resilient Water Systems Position
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physics scale with the component-level scale to simulate the thermomechanical response of the full first wall/blanket structures during fusion reactor operation. Villanova is a Catholic university sponsored
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-party waste heat consumers. Villanova is a Catholic university sponsored by the Augustinian Order. The University is an equal opportunity employer and seeks candidates who understand, respect and can
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object variability or the aforementioned methodologies are also encouraged to apply. The Villanova Physics Department is dedicated to excellence in teaching and research, and we recognize the importance
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: Why work at Villanova? Join a mission-driven organization. Since Villanova University’s founding in 1842, we have been inspired by the values of truth, unity, and love, and are a community dedicated to
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Position Summary: The postdoctoral researcher will be part of a research team working on the design of energy and exergy flow systems at district scale to assess their efficiency and resilience under heat