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Dans cette catégorie :
Electronic States and Phases Induced by Electric or Optical Impacts. IMPACT 2024 |
Energy, information and Evolution in Biology - 2024 |
Summer school Structure & Mechanics of Soft Matter Systems: from fundamentals to Foods - 2024 |
Complex and glassy systems - 2024 |
Passive Imaging and Monitoring in Wave Physics: From Seismology to Ultrasound - 2024 |
Southern Ocean and its Central Role for Climate - 2024 |
Waves and sea state in the earth system (WISE) - 2024 |
Wave propagation and control in complex media - 2024 |
Biomedical Imaging School 2023 |
GDR-HEA Alliages hautes entropie - 2023 |
Quantum many-body systems out of equilibrium - 2023 |
International School of Oxide Electronics 2023 (ISOE 2023) |
Bridging Classical and Quantum Turbulence - 2023 |
2nd Advanced Summer School on Mathematical Fluids Dynamics - 2023 |
Interfreeze : Freezing and Interfaces - 2023 |
Wave Localization and Many-Body Localization in Quantum Information - 2022 |
Wave propagation and control in complex media - From spatial to temporal degrees of freedom 2022 |
Passive imaging and monitoring in wave physics: from seismology to ultrasound - 2022 |
Numerical Wildfire 2021 |
International School of Oxide Electronics 2021 (ISOE 2021) |
Les 60 (+1 an) de l'Institut d'Etudes Scientifiques de Cargèse - 2021 |
Clean and Desordered out of Equilibrium : Interplay Classical and Quantum Dynamics - 2020 |
Imaging in wave physics : multi-wave and large sensor network - 2019 |
Emergent phenomena in quantum matter - Epiqur2019 |
Structural studies of soft matter using small angle scattering - Annie Brulet | |
Chemistry of polymers networks including covalent adaptable networks and dynamic covalent chemistry - Christopher N. Bowman | |
Adhesion and fracture of soft dissipative materials - Matteo Ciccotti | |
Linear viscoelasticity + dynamics of unentangled polymers - Ralph Colby | |
Why is soft matter soft and why is ideal polymers is ideal ? - Alexander Grosberg | |
Comment on Flory-Huggins - Alexander Grosberg | |
What instead of virial expansion - Alexander Grosberg | |
Large Deformation Field Theory - Chung-Yen Hui | |
Structural analysis of polymers using microscopy : basics - Hiroschi Jinnai | |
Structural analysis of polymers using microscopy : Applications - Hiroschi Jinnai | |
Flow of dilute polymers solutions : rheology and microfluidics - Anke Lindner | |
Some Microfluidics examples - Anke Lindner | |
Concentrated systems, phase separation and phase diagrams - Tom Mc Leish | |
Fundamentals of controlled/living radical polymerization - Kris Matyjaszewski | |
Dynamics and Semidilute Polymer Solutions. Introduction of Microrheology - Tetsuharu Narita | |
Semidilute entangled solutions tube diameter - Tetsuharu Narita | |
Interfaces 1 : Surfaces energy - wetting - Frédéric Restagno | |
Interfaces 2 : Friction - Frédéric Restagno | |
Polymer physics Lecture 2 - Real Polymers chain - Michael Rubinstein | |
Contact Mechanics and Viscoelasticity - Kenneth R. Shull | |
Viscoelasticity : Continuum Theory - Kenneth R. Shull | |
Rheology of Colloid (bref introduction) - Dimitri Vlassopoulos |
Page mise à jour le 31/07/2023 par DOMINIQUE DONZELLA