C.I.N.E.S. Centre Informatique National de l’Enseignement Supérieur

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C.I.N.E.S. NATIONAL COMPUTING CENTRE FOR HIGHER EDUCATION

Category: Thematic Committees

CT4: Astronomy and Geophysics

The thematic comitee CT4 Astrophysique et Géophysique covering the following areas : Cosmology Formation of galaxies, stars and planetary systems Dynamics of gravitational systems Modeling of astrophysics objects Geophysical plasmas and planetary Internal Geophysics Soils hydrology Geomaterials.    

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CT5: Theoretical Physics, plasma physics

The Thematic Committee CT5 Physique théorique et physique des plasmas covering the following areas : Electromagnetism Lattice QCD Quantum chaos Electronic properties of materials Nuclear physics Interaction of electromagnetic waves with material Hot plasmas Sciences of inertial

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CT6: computer, algorithmic and mathematics

The Thematic Committee CT6 Informatique, Algorithmique et Mathématiques covering the following areas : Networks Middleware Algorithms for parallelism Linear algebra EDP Digital signal processing Storage and analysis of data Vizualisation.    

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CT7: molecular dynamics applied to biology

The Thematic Committee CT7 : Systèmes moléculaires organisés et de la Biologie covering the following areas : Structure and molecular dynamics Interaction of macromolecules and molecular building blocks Supramolecular chemistry Structure-function relations Biopolymers Interfaces Heterogeneous materials Self-assembling properties

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CT8: quantum chemistry and molecular modeling

The Thematic Committee CT8 : Chimie quantique et Modélisation moléculaire  covering the following areas : Electronic properties of molecules Structures. Reactivity ab initio computing semi-empiricals computing Quantum dynamics (Car-Parinello) quantum Monte-Carlo computing (Methods QMC) Liquid state, Solvation Molecular diffusion

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CT9: physics, chemistry and material properties

The Thematic Committee CT9 : Physique, de la Chimie et des Propriétés des matériaux covering the following areas : Models of cohesiveness of material adapt to atomic scale simulation (ab initio, tight-binding , empirical potentials). Simulation of classical and quantum by

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