Sort by
Refine Your Search
-
Listed
-
Category
-
Country
- United States
- France
- United Kingdom
- Spain
- Singapore
- Netherlands
- Portugal
- Sweden
- Denmark
- Italy
- Belgium
- Germany
- Poland
- Norway
- Morocco
- Australia
- Canada
- Japan
- Hong Kong
- Austria
- Finland
- Bulgaria
- Greece
- Czech
- Guinea
- India
- Ireland
- Latvia
- Lithuania
- Luxembourg
- Mexico
- Saudi Arabia
- Serbia
- Slovakia
- Switzerland
- United Arab Emirates
- 26 more »
- « less
-
Program
-
Field
-
or October 2026. The supervisors will be Ben Craps (https://inspirehep.net/authors/1012842 ) and Vijay Balasubramanian (https://inspirehep.net/authors/1017572 ). An overview of the composition and research
-
mass-transfer properties influence adsorption performance, pressure drop, thermal management, and cyclic stability under humid process conditions. The project will further involve scale-up, process
-
designs. Combining these classes raises issues around recyclability, interfacial adhesion, and mismatched thermal expansion that can induce stresses and affect lifetime performance. We invite a motivated
-
conduct experiments on vitrimer synthesis, fiber-reinforced composite fabrication, and RF-enabled manufacturing processes, including sample preparation, thermal and mechanical testing, and spectroscopic
-
analytical techniques to quantify well-defined polymeric materials and their tacticity (IR, NMR, GPC, thermal analysis, etc.). The candidate will also contribute to studies linking precursor stereochemistry
-
will receive training to support world-class analytical facilities, including mass spectrometry, NMR, thermal analysis and elemental analysis, while also developing skills in the University's specialist
-
platforms and 1,600 partner companies. For more information: https://www.imt-mines-ales.fr You will be affiliated with the Center for Research and Teaching in Environment and Risks (CREER) at IMT Mines Alès
-
substrates and biodegradable PLH bioplastic substrates, supporting the preparation, treatment, and characterisation of printed metallic films and circuits comparing chemical sintering with conventional thermal
-
modules from thermal and RGB drone imagery, leveraging existing public datasets and data collected from real installations. Integration of the drone inspection tool with an existing continuous monitoring
-
freezers, microscopes, centrifuges, gel electrophoresis, electroporators, qPCR thermal cyclers, and computers. Physical Demands and Work Environment Be capable of working in a biosafety cabinet for several