Sort by
Refine Your Search
-
Listed
-
Category
-
Country
-
Program
-
Employer
- Nicolaus Copernicus University
- University of Washington
- KU LEUVEN
- Rutgers University
- University of California
- University of Lund
- University of Michigan - Ann Arbor
- Brookdale Community College
- CCMAR – Centro de Ciências do Mar do Algarve
- CNRS
- Eindhoven University of Technology (TU/e)
- FEUP
- Helmholtz Zentrum München - Deutsches Forschungszentrum für Gesundheit und Umwelt
- Helmholtz-Zentrum Berlin für Materialien und Energie
- Heriot Watt University
- Indiana University
- KTH Royal Institute of Technology
- Lunds universitet
- Munster Technological University
- National Aeronautics and Space Administration (NASA)
- Politecnico di Milano
- The University of Arizona
- The University of North Carolina at Chapel Hill
- UNIVERSIDAD DE ZARAGOZA
- University of Antwerp
- University of Bristol
- University of California, San Diego
- University of Florida
- University of Kansas Medical Center
- University of Minnesota
- University of Nebraska Medical Center
- University of North Carolina at Chapel Hill
- University of Oslo
- University of Sheffield
- university of Rouen
- 25 more »
- « less
-
Field
-
eligibility, please visit: http://uhr.rutgers.edu/benefits/benefits-overview . Posting Summary The scientist will lead the Rutgers CryoEM & Nanoimaging Facility (RCNF), a regional core facility providing access
-
. Assessing fluid distribution in microgravity analogs. h. Techniques such as optical coherence tomography, fundus photography, cardiovascular monitoring, muscle and bone assessment to evaluate ocular health
-
of experimental data for the development of the new theory. Such methods include (but not limited to) optical tomography for 3D imaging of the polymer crystallisation process, high-resolution, real-time Atomic
-
Position overview Position title: Project Scientist Salary range: A reasonable salary range estimate for this position is $74,100 – $107,700. The posted UC academic salary scales (https
-
) technology. The approach relies on high-loss loopback couplers and polarization-resolved optical frequency domain reflectometry to sense beyond the optical repeaters on submarine telecommunication cables with