Sort by
Refine Your Search
-
Listed
-
Country
-
Employer
-
Field
-
investigates the thermodynamic modelling of chloride migration in concrete exposed to accelerated chloride ingress conditions, with particular focus on replicating and predicting the results of the NT Build 492
-
Processes (https://simap.grenoble-inp.fr ) - is a multidisciplinary laboratory with more than 200 participants from chemistry, physics, materials and fluid mechanics. It is one of the leading laboratories in
-
, stability. While interfacial thermodynamics and mechanics are usually probed at macroscopic or mesoscopic scales, they are assumed to depend on microscopic interfacial structure (chemical composition
-
? Not funded by a EU programme Is the Job related to staff position within a Research Infrastructure? No Offer Description The PhD work will be carried out within the EMPRe team (https://dcm.univ-grenoble
-
understanding of energy-conversion systems, thermodynamics, electrical engineering, heat and mass transfer, electrochemistry, or control engineering. The ability to conduct independent, systematic, and
-
, applied physics or a closely related discipline. Specific Requirements We are looking for candidates with: A strong foundation in thermodynamics, fluid mechanics, heat transfer and combustion. Motivation
-
computing environment. A fundamental understanding of energy-conversion systems, thermodynamics, electrical engineering, heat and mass transfer, electrochemistry, or control engineering. The ability
-
be considered if you can document that you are particularly suitable for a PhD education. You must meet the requirements for admission to the NV faculty's Doctoral Programme . (https://www.ntnu.edu/nv
-
other analytical services, with the managers and the administrative manager, as well as with users from outside the laboratory. Metal activity in magmatic oceans We propose to develop a thermodynamic
-
various aspects of the process—such as thermodynamics, dissolution/growth kinetics, growth interface dynamics, and the generation and elimination of defects—through a multiscale and multiphysics approach