Sort by
Refine Your Search
-
. Direct access to dedicated synthesis and fabrication facilities (CVD, glove box) and to LEM's dense network of collaborations (legacy of the Graphene Flagship, GDR HOWDI) will be crucial to provide
-
of the fabricated fibers within optical networks. - Design of innovative hollow-core fiber structures using the finite element method. - Fabrication of specific optical fibers on a fiber drawing tower. - Linear
-
of volcanism, position of microblocks already implemented in GPlates software by our team and will integrate novel results of SUBUTTEC project. The postdoc is thus expected to have a strong experience with the
-
impact on regulated exocytosis. We will focus in particular on the role of storage-activated calcium channels (SOCs) and the lipid transfer mechanisms that define these exocytosis sites. • Functional
-
and guidance system for these micro-swimmers, interacting with real-time optical visualization in a microfluidic network. • Study of the fidelity of the movement of micro-swimmers to the set trajectory
-
describe the neuronal and behavioral changes associated with pharmacological manipulations, through the development of scripts using software such as Python or Matlab. 1) Conduct electrophysiology
-
of quantum information science, tensor network theory, and generative modeling (transformers, diffusion models, etc.). - Conduct cutting-edge research at the intersection of quantum information, machine
-
they interact in a bipartite network and with abiotic environmental changes - mathematical developments - coding - tests with simulations - data analyses - paper writing - presenting results
-
of ethical and regulatory files. • Contribution to the collaborative development of neurofeedback software (user interface, usability feedback). • Participation in team meetings and regular exchanges with
-
resins, in accordance with specific requirements defined by the industrial partner. The targeted applications concern rocket nozzles developed by ArianeGroup, which are subjected to intense aerothermal