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DTSTART:20120325T010000
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DTSTART:20121028T010000
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DTSTART;TZID=Europe/Paris:20120103T103000
DTEND;TZID=Europe/Paris:20120103T113000
DTSTAMP:20260406T050550
CREATED:20120103T093000Z
LAST-MODIFIED:20211104T091745Z
UID:8051-1325586600-1325590200@www.math.ens.psl.eu
SUMMARY:Construction de solutions périodiques des équations de Navier-Stokes par une approche directionnelle
DESCRIPTION:
URL:https://www.math.ens.psl.eu/evenement/construction-de-solutions-periodiques-des-equations-de-navier-stokes-par-une-approche-directionnelle/
LOCATION:IHP salle 201
CATEGORIES:Séminaire Analyse non linéaire et EDP
END:VEVENT
BEGIN:VEVENT
DTSTART;TZID=Europe/Paris:20120103T113000
DTEND;TZID=Europe/Paris:20120103T123000
DTSTAMP:20260406T050550
CREATED:20120103T103000Z
LAST-MODIFIED:20211104T091746Z
UID:8052-1325590200-1325593800@www.math.ens.psl.eu
SUMMARY:A free boundary problem for thin films
DESCRIPTION:The lubrication approximation leads to a fourth order degenerate equation modeling the evolution of small viscous droplets on a solid support (the thin film equation). Along the contact line (the free boundary)\, the solution must satisfy a gradient condition (contact angle condition).While many existence and regularity results are known for solutions with zero contact angle\, the only existence result with non-zero contact angle is due to F. Otto and only holds in some particular framework (Hele-Shaw cell). We consider a singular perturbation approach to generalize Otto’s result.
URL:https://www.math.ens.psl.eu/evenement/a-free-boundary-problem-for-thin-films/
LOCATION:IHP salle 201
CATEGORIES:Séminaire Analyse non linéaire et EDP
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