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The GDR MFA leads, with the help of the "Groupe de Travail Sciences de la Matière" of the CNES, the research program in microgravity in the field of Material Sciences and Engineering Sciences.

The HAL collection of the GDR MFA (GDR n°2799) offers a showcase and an access to the scientific production resulting from the GDR and deposited in the HAL open archive.

Researchers can deposit in the HAL open archive the bibliographic references of their work and, within the framework set by the Law for a Digital Republic of October 7, 2016 (Article 30) and by the policies of publishers, the full text of their publications.

The HAL open archive aims to :

  • improve the international visibility and consultation of publications

  • enhance the value of the production of researchers, laboratories and institutions by ensuring a very wide dissemination, towards the academic world (researchers and students), the general public and the economic sector (civil society);

  • to guarantee a permanent and public conservation and access to publications;

  • to support the Open Access movement and Open Science.

Last update : October 2022.

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Binary liquids Microstructure Microgravité Foams Droplet Electrohydrodynamics Capillarity Cellular instabilities Dielectrophoretic force Boiling crisis Evaporation Aerosol Holographic interferometry Pattern formation Wall friction X-ray radiography Microgravity Alloys Experiment Fluid Dynamics Columnar to equiaxed transition Pulsating heat pipe Bubble dynamics Microstructures Évaporation In situ experiments Binary coalescence Magnetorheology Topical Issue Thermal non-equilibrium phenomena in multi-component fluids Suspension Physiological materials Granular matter Microscopy Soret effect Heterogeneous matter statistical distribution Blood Bubble Magnetic field Haemodynamics Aerosol combustion Blood flow in cardiovascular system Capillary waves Buoyancy Flow boiling Jamming Boiling Porous medium Emulsion Phase change Flows in ducts and channels Soot Poiseuille flow Fluids Solidification Oscillation Flame propagation Vibration Instability Thermodiffusion Spray flame Discontinuous shear thickening Numerical methods Combustion Two-phase flow Vesicles Foam Simulation Columnar-to-Equiaxed Transition Vaporization Hemodynamics Liquid films Suspensions Directional solidification Stokes flow Dissolution Gypsum Rheology Carbon dioxide CHF Convection Two-phase combustion Aérosol Droplet combustion Al-Cu alloy Bubble growth Capsule/cell dynamics Red blood cell Instabilities Droplets Clogging Diffusion Colloids Vesicle Yield stress Natural convection Phase separation Heat transfer Granular gas Microfluidics Two-phase

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