Sort by
Refine Your Search
-
Listed
-
Category
-
Country
- United States
- France
- Germany
- Sweden
- Spain
- Poland
- Netherlands
- Portugal
- United Kingdom
- Singapore
- Italy
- Morocco
- Austria
- Switzerland
- Czech
- Denmark
- Luxembourg
- Saudi Arabia
- Belgium
- Canada
- Finland
- Japan
- Norway
- Australia
- Brazil
- China
- Estonia
- India
- Ireland
- Latvia
- Romania
- Slovakia
- South Africa
- 23 more »
- « less
-
Program
-
Field
-
materials engineering, plastics and metals present complementary strengths and challenges. Metals offer strength, conductivity, and wear resistance while polymers enable complex geometries and lightweight
-
-on experience in at least one relevant area, such as materials characterization, electrochemistry, polymer materials, electrode processing, or battery-related experimental work. Applicants who do not yet have the
-
, or radar signal processing are of particular interest and thus are strongly encouraged to apply. Detailed Position Information The Department of Electrical and Computer Engineering (ECE: https
-
are of particular interest and thus are strongly encouraged to apply. Detailed Position Information The Department of Electrical and Computer Engineering (ECE: https://ece.eng.ua.edu/) and the Styslinger College
-
experience in different aspects of Cybersecurity are invited to apply. Detailed Position Information The Department of Computer Science (CS: https://cs.ua.edu/) and the Lee J. Styslinger Jr. College
-
, or radar signal processing are of particular interest and thus are strongly encouraged to apply. Detailed Position Information The Department of Electrical and Computer Engineering (ECE: https
-
various methods to different types of contaminated coatings. Treatments may include: wet chemical processing and corrosive acid etchants, oxygen/ozone exposure, plasma treatment, or polymer film application
-
extracellular polymers, bacteria growing in biofilms survive antibiotic concentrations orders of magnitude above those that eradicate the same strain in suspension. The matrix limits penetration, internal
-
of carbonaceous, composite covalent anode materials in SIBs, and multifunctional ion-conductive polymers in rechargeable aqueous ZIBs, is expected. Operando experiments will be compared with ex-situ TEM analysis
-
spread over panels 0.5 m to 2.44 m tall). To date, these tools have been used to characterize synthetic polymers and copolymers, fiber-reinforced composite materials, porous polymer foams, and natural- and