Sort by
Refine Your Search
-
Listed
-
Category
-
Country
-
Program
-
Field
-
Application deadline: 31/07/2026 Research theme: Laser Physics How to apply: https://uom.link/pgr-apply-2425 This 3.5-year PhD project is fully funded; students who are eligible to pay tuition fees
-
materials in the Mechanical or Civil shop labs. Duties/Responsibilities: Build several “kid-size” Bridge-in-a-Bag kits (watch an example here: https://youtu.be/R-DjvW_PI9s?si=CpLGrgMQgnRRPBRQ ) Cut and
-
, integration and experimental testing of microwave and antenna hardware. Develop and experimentally demonstrate antenna functions including reconfigurability, shape morphing and two-dimensional beam steering
-
, including regional campuses in Peoria, Quad Cities, Rockford, Springfield, and Urbana. UI Health is dedicated to the pursuit of health equity. Learn more: https://hospital.uillinois.edu/about-ui-health
-
and enabling in-situ beam size and shape control for ion beam figuring (IBF); (2) research & development of Atmospheric Pressure Plasma Jet/Figuring (APPJ/APPF) for efficient figuring and smoothing; and
-
of Excellence in Neutron-Star Physics 2026-2033 (https://neutronstars.fi/ ), funded by the Research Council of Finland. The Centre of Excellence status provides us with long-term funding, strong connections
-
physics, Unstable nuclei, RI beam, Ion optics For more information, please refer to the following webpage: https://www.nishina.riken.jp/labo/exope_e.html * details of the business RIKEN is Japan's largest
-
] Nuclear-physics experiments,RI beams,Nuclear structure,Gamma-ray spectroscopy,Radiation measurement,Nuclear magic numbers Please visit the following webpage for more details: https://www.nishina.riken.jp
-
cycling. A range of techniques will be used to deposit encapsulation layers, including e-beam evaporation, powder-coating and spray-coating. As part of the project, various demonstrator devices will be
-
TEM/STEM experiments using nanometer-sized electron beams. Development of correlative protocols for ePDF and fluctuation microscopy (FM) data acquisition and analysis, focusing on middle-range order