-
and graduate students each year, including many doctoral students, as well as postdoctoral researchers and visiting scientists. The laboratory covers a wider variety of topics than its name suggests and
-
will join a dynamic team and will be directly supervised by Fanny Cazettes (CNRS). He/she will benefit from the expertise of the entire research group and from collaborations with theorists for the more
-
implementing models that integrate ecological dynamics, species traits, phylogenetic trees, and economic discounting; ● Devising Bayesian or POMDP frameworks to handle uncertainty about species interactions
-
these fluorescent peptide biosensors to develop a platform for profiling several PK activities simultaneously in the synovial fluid of patients with arthritis. This project is part of the research topics developed by
-
, with a dynamic international exposure animated by regular seminars and meetings. The Laboratoire de Biochimie Théorique (LBT) is internationally recognized for developing and applying computational
-
which currently consists of 5 permanent researchers, 2 PhD students, 2 postdoctoral researchers. The PhD studies will be performed in the experimental rooms of the propulsion team at LPP in Palaiseau
-
PhD student (M/F) in Polymer Chemistry: Synthesis of cross-linkable, degradable and recyclable latex
. To support the transition to more sustainable polymers, the PhD student (m/f) will develop a new generation of dynamic polymer colloids: cross-linkable, degradable and recyclable. This is a challenge because
-
offering a postdoctoral position in multi-messenger astrophysics related to the KM3NeT, SVOM, and COLIBRI detectors. The main objective is to complete the development and optimization of the KM3NeT neutrino
-
photoexcitation or a 'probe' to study relaxation dynamics in excited states. The Multiscale Structure & Dynamics of Complex Molecules (DYNAMO) team at the Institut Lumiere Matiere in Lyon uses these XUV pulses
-
transfer learning to transpose the recurrent neural network (RNN) model available for supercritical CO2 power cycles to other cycles. Since thermodynamic conditions vary greatly depending on the fluid and