Sort by
Refine Your Search
-
Category
-
Country
-
Program
-
Field
-
of studying and optimizing the microstructural and mechanical properties of granular materials bonded by a solidified foam, within the framework of the ANR project BONDINGFOAM. This mission is structured around
-
The project will be carried out primarily at the CLLE laboratory (UMR 5263) at University of Toulouse – Jean Jaurès (UT2J), in collaboration with the Institut de Recherche en Informatique de Toulouse (IRIT
-
Sciences of the University of Strasbourg. Close collaborations with the various project partners are also planned throughout the PhD. A dedicated computer equipped with high-performance GPU cards will be
-
project aims to develop digital polymers capable of storing binary information at the molecular level. To achieve this, we will synthesize sequence-controlled polymers using a multi-step solid-phase
-
a postdoctoral researcher (M/F) to contribute to the PT-Revival project (ANR PRC), coordinated by Arnaud Brayard (Biogeosciences, Dijon). The candidate will join an interdisciplinary team aiming, in
-
the present project, magnonics is of interest for engineering static and dynamic magnetic fields, with potential applications in magnetic resonance involving individual spins. The position aims to develop
-
Description Postdoctoral research position on the ANR OrDOTime project, which aims to understand the origins, development, and specificity of ordinal representations of time. The recruited researcher will be
-
The successful candidate will contribute to the development of a new generation of 3D-printed biomimetic materials designed to model the human intestine in vitro, as part of the BAM-INT project. The project aims
-
developed a unique nanoelectromechanical resonator (NEMS), consisting of a silicon nitride drum capacitively coupled to an Al drum resonator, so called double-drum resonator. Its unique device design gives
-
. This is precisely the ambition of the ANR FIBERBOND project (2024–2028) around the objective of drastically improving the ultimate strength and strain of wet-formed cellulose fiber mats, by enhancing