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X-WR-CALNAME:Chimie ParisTech - PSL
X-ORIGINAL-URL:https://www.chimieparistech.psl.eu
X-WR-CALDESC:Évènements pour Chimie ParisTech - PSL
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TZID:Europe/Paris
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DTSTART:20230326T010000
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DTSTART:20231029T010000
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DTSTART:20241027T010000
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DTSTART:20251026T010000
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BEGIN:VEVENT
DTSTART;TZID=Europe/Paris:20240503T080000
DTEND;TZID=Europe/Paris:20240515T220000
DTSTAMP:20240516T113712Z
CREATED:20240327T161706Z
LAST-MODIFIED:20240516T113712Z
UID:25382-1714723200-1715810400@www.chimieparistech.psl.eu
SUMMARY:PSL’s internal application campaign is now open for the ICI master’s degree of PSL Gaduate Program in Chemistry!
DESCRIPTION:Applications for the Integrative Chemistry & Innovation (ICI) master’s degree are now open\, so don’t hesitate to apply! \nTo apply to the ICI Master\, download the application form here. \n  \nPlease save this form in PDF format\, then prepare a single PDF document including this form\, your CV (maximum 2 pages)\, and a motivation letter (maximum 2 pages).  \nLabel this document « LASTNAME_FIRSTNAME_MasterChimiePSL.pdf  » and return it\, before May 15\, 2024\, to the following address : candidaturespsl-masterchimie@psl.eu
URL:https://www.chimieparistech.psl.eu/evenement-agenda/registrations-are-now-open-for-ici-master/
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BEGIN:VEVENT
DTSTART;TZID=Europe/Paris:20240506T080000
DTEND;TZID=Europe/Paris:20240515T080000
DTSTAMP:20240516T114059Z
CREATED:20240129T101227Z
LAST-MODIFIED:20240516T114059Z
UID:25182-1714982400-1715760000@www.chimieparistech.psl.eu
SUMMARY:Formation continue Modélisation de procédés : inscriptions en ligne
DESCRIPTION:Chimie ParisTech-PSL vous propose une formation continue sur la modélisation des procédés\, initulée  : \n« MODÉLISATION DE PROCÉDÉS : 1D\, 2D\, STATIQUE OU DYNAMIQUE\nBASES & BONNES PRATIQUES » avec Frédéric Rousseau et Cédric Guyon. \nLa session est programmée du 14 au 16 mai 2024\, n’hésitez à vous inscrire en contactant : \nMariane Ighilahriz : mariane.ighilahriz@chimieparistech.psl.eu   \nTel : 0787134097 \nTous les détails sur cette formation continue de Simulation & Modélisation des procédés.
URL:https://www.chimieparistech.psl.eu/evenement-agenda/formation-continue-modelisation-de-procedes/
LOCATION:Chimie ParisTech – PSL\, 11\, rue Pierre et Marie Curie\, Paris\, 75005\, France
CATEGORIES:Evénement
END:VEVENT
BEGIN:VEVENT
DTSTART;TZID=Europe/Paris:20240513T080000
DTEND;TZID=Europe/Paris:20240516T170000
DTSTAMP:20240514T132147Z
CREATED:20240514T132051Z
LAST-MODIFIED:20240514T132147Z
UID:25548-1715587200-1715878800@www.chimieparistech.psl.eu
SUMMARY:Écrits Concours Commun Mines-Ponts 2024
DESCRIPTION:Tous les détails ici.
URL:https://www.chimieparistech.psl.eu/evenement-agenda/ecrits-ccmp-2024/
CATEGORIES:Evénement
END:VEVENT
BEGIN:VEVENT
DTSTART;TZID=Europe/Paris:20240514T100000
DTEND;TZID=Europe/Paris:20240514T170000
DTSTAMP:20240507T100450Z
CREATED:20240507T100450Z
LAST-MODIFIED:20240507T100450Z
UID:25539-1715680800-1715706000@www.chimieparistech.psl.eu
SUMMARY:EELISA : WP5 meeting
DESCRIPTION:
URL:https://www.chimieparistech.psl.eu/evenement-agenda/eelisa-wp5-meeting/
LOCATION:Chimie ParisTech – PSL\, 11\, rue Pierre et Marie Curie\, Paris\, 75005\, France
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BEGIN:VEVENT
DTSTART;TZID=Europe/Paris:20240522T080000
DTEND;TZID=Europe/Paris:20240604T170000
DTSTAMP:20240605T171911Z
CREATED:20240202T103612Z
LAST-MODIFIED:20240605T171911Z
UID:25214-1716364800-1717520400@www.chimieparistech.psl.eu
SUMMARY:Formation continue Calculs de spéciation en solution et aux interfaces : inscriptions en ligne
DESCRIPTION:Chimie ParisTech-PSL vous propose un stage de  formation continue\, intitulé : « Calculs de spéciation en solution et aux interfaces ».\n \nIntervenants :\n \nRomain Dagnelie (CEA\, Université Paris- Saclay)\, Annette Hofmann (Univ. Lille)\, Grégory Lefèvre (Chimie ParisTech -PSL / CNRS)\, Rémi Marsac (Univ. Rennes – CNRS). \nIl aura lieu du 3 au 6 juin 2024. \nFormation Continue ModélisationSpéciationParis2024 \nPour plus de renseignements\, contactez : \nGrégory Lefèvre : gregory.lefevre@chimieparistech.psl.eu
URL:https://www.chimieparistech.psl.eu/evenement-agenda/formation-continue-calculs-de-speciation-en-solution-et-aux-interfaces-inscriptions-en-ligne/
LOCATION:Chimie ParisTech – PSL\, 11\, rue Pierre et Marie Curie\, Paris\, 75005\, France
CATEGORIES:Evénement
END:VEVENT
BEGIN:VEVENT
DTSTART;TZID=Europe/Paris:20240523T140000
DTEND;TZID=Europe/Paris:20240523T160000
DTSTAMP:20240516T113224Z
CREATED:20240516T113224Z
LAST-MODIFIED:20240516T113224Z
UID:25560-1716472800-1716480000@www.chimieparistech.psl.eu
SUMMARY:Séminaire Programme Gradué Chimie PSL
DESCRIPTION:Crystallization of heavy fermions via epitaxial strain in spinel LiV2O4 thin film By Hidenori Takagi\, Max Planck Institute for Solid State Research\, Heisenbergstraße 1\, 70569 Stuttgart\, Germany. \n \nThe mixed-valent spinel LiV2O4 is known as the first oxide heavy-fermion system. There is a general consensus that a subtle interplay of charge\, spin\, and orbital degrees of freedom of correlated electrons plays a crucial role in the enhancement of quasi-particle mass\, but the specific mechanism has remained yet elusive. A charge-ordering (CO) instability of V3+ and V4+ ions that is geometrically frustrated by the V pyrochlore sublattice from forming a long-range CO down to T =0 K has been proposed as a prime candidate for the mechanism. In this talk\, we uncover the hidden CO instability by applying epitaxial strain on single-crystalline LiV2O4 thin films. We find a crystallization of heavy fermions in a LiV2O4 film on MgO\, where a charge-ordered insulator comprising of a stack of V3+ and V4+ layers along [001]\, the historical Verwey-type ordering\, is stabilized by the in-plane tensile and out-of-plane compressive strains from the substrate. Our discovery of the [001] Verwey type CO\, together with previous realizations of a distinct [111] CO\, evidence the close proximity of the heavy-fermion state to degenerate CO states mirroring the geometrical frustration of the V pyrochlore lattice\, which supports the CO instability scenario for the mechanism behind the heavy fermion formation. Our recent transport (Hall coefficient RH and thermopower S) studies on LiV2O4 single crystals at low temperatures below 2K points to a semimetallic ground state with almost equally heavy electrons and holes\, which we argue gives us a hint for the origin of CO instability in k-space. \n \nU. Niemann\, Y.-M. Wu\, R. Oka\, D. Hirai\, Y. Wanga\, Y. E. Suyolcua\, M. Kim\, P. A. van Aken\, and H. Takagi\, Proceedings of the National Academy of Sciences 120\, e2215722120 (2023).\n \nZoom link:  https://espci.zoom.us/j/84616913245?pwd=uM1ZYxoK74YmfzDY4jsB8T3fMLoZn2.1\nID: 846 1691 3245\nPasscode: PWBridgman\n\n 
URL:https://www.chimieparistech.psl.eu/evenement-agenda/seminaire-programme-gradue-chimie-psl-128/
LOCATION:évènement hybride
END:VEVENT
BEGIN:VEVENT
DTSTART;TZID=Europe/Paris:20240527T113000
DTEND;TZID=Europe/Paris:20240527T133000
DTSTAMP:20240523T162128Z
CREATED:20240523T162128Z
LAST-MODIFIED:20240523T162128Z
UID:25585-1716809400-1716816600@www.chimieparistech.psl.eu
SUMMARY:Séminaire Programme Gradué Chimie PSL
DESCRIPTION:« Integer Topological Defects in Confined Cell Monolayers Challenge the Standard Model of Active Matter« \,Masaki Sano (University ot Tokyo). \nMonday\, 27th of May at 11:30. This seminar will take place at the seminar room of Gulliver C1.62\, ESPCI Paris-PSL \nAbstract: Cell population dynamics in tissue is fascinating phenomenon as well as essential for morphogenesis. Cells in tissue are often elongated and aligned with each other\, exhibiting liquid crystal-like nematic order. Certain cells exhibit stochastic back-and-forth motion in the long axis direction\, exhibiting a collective motion similar to that of vibrated granular rods. Stem cells show no contact inhibition and move almost indefinitely\, making them an ideal model system for active nematics that exhibit both 2D and 3D morphogenesis. In particular\, neural stem (progenitor) cells (NPCs) are known to migrate long distances in dense environments in vivo\, passing neighboring cells in opposite directions. It has been shown some time ago that NPCs in vitro have nematic order and ±1/2 topological defects. Cells attracted to +1/2 defects forming 3D mounds while depleted from -1/2 defects. We manufactured microfabricated patterns to induce a one-parameter family of +1 topological defects (spiral\, and vortex) in the tissue of NPCs. Conventional theories of active nematics predict that when the tilt angle  is larger (smaller) than \, the core of +1 defect will be depleted (concentrated)\, because extensile (extensile) active force enhances (suppress) the bending deformation. Interestingly\, however\, cells are consistently attracted to the cores of all types of +1 defects. This result challenges the standard model of active nematics. We propose a particle model simulation and derived Boltzmann approach hydrodynamic equations that correctly predict the conditions for accumulation or depletion at +1 defects.
URL:https://www.chimieparistech.psl.eu/evenement-agenda/seminaire-programme-gradue-chimie-psl-130/
LOCATION:ESPCI Paris\, 10 Rue Vauquelin\, Paris\, 75005\, France
CATEGORIES:Séminaire
END:VEVENT
BEGIN:VEVENT
DTSTART;TZID=Europe/Paris:20240529T143000
DTEND;TZID=Europe/Paris:20240529T163000
DTSTAMP:20240517T125557Z
CREATED:20240517T125526Z
LAST-MODIFIED:20240517T125557Z
UID:25565-1716993000-1717000200@www.chimieparistech.psl.eu
SUMMARY:Séminaire Programme Gradué Chimie PSL
DESCRIPTION:Le Professeur Andrea Pucci de l’Université de Pise\, Italie\, donnera une conférence intitulée « Light exploitation by polymers: examples in optical sensors and solar collectors » le mercredi 29/05 à 14h30 dans l’amphithéâtre Charpak de l’ESPCI Paris-PSL. 
URL:https://www.chimieparistech.psl.eu/evenement-agenda/seminaire-programme-gradue-chimie-psl-129/
LOCATION:ESPCI Paris\, 10 Rue Vauquelin\, Paris\, 75005\, France
CATEGORIES:Conférence
END:VEVENT
BEGIN:VEVENT
DTSTART;TZID=Europe/Paris:20240530T140000
DTEND;TZID=Europe/Paris:20240530T170000
DTSTAMP:20240524T115701Z
CREATED:20240524T115701Z
LAST-MODIFIED:20240524T115701Z
UID:25587-1717077600-1717088400@www.chimieparistech.psl.eu
SUMMARY:Séminaire Programme Gradué Chimie PSL
DESCRIPTION:Strange Metals for Correlated Topology and Amplified Entanglement\nBy Qimiao Si\, Department of Physics and Astronomy\, Center for Quantum Materials\, Rice University\, Houston\, USA.\n\nThursday May 30 at 2:00 pm (Paris time)\, Room Boreau\, at LPEM in hybrid format\, ESPCI Paris-PSL\n\n \nThe field of correlation physics continuously expands its horizons. As a primary objective of the field\, we aim to determine the organization of the many billions of billions of electrons in the quantum universe of a solid\, taking into account both the electrons’ quantum mechanical nature and their electrostatic repulsive interaction. In the standard description\, quasiparticle is a central concept. It acts as the adiabatic continuation of a bare electron in the presence of interactions\, and is resilient when the interactions are treated perturbatively.\n \nIn this talk\, I will describe how quasiparticles can break apart in the presence of strong correlations\, leading to strange metal behavior. As exemplary settings\, heavy fermion metals [1] will be considered and flat band systems will be touched upon [2]. I will also discuss how strange metallicity nucleates topology without quasiparticles [3] and amplifies quantum entanglement [4].\n \n[1] H. Hu et al.\, arXiv:2210.14183; S. Paschen & Q. Si\, Nat. Rev. Phys. 3\, 9 (2021); S. Kirchner et al\, Rev. Mod. Phys. 92\, 011002 (2020); Q. Si et al.\, Nature 413\, 804 (2001).\n[2] L. Chen et al. arXiv:2307.09431; H. Hu and Q. Si\, Sci. Adv. 9\, eadg0028 (2023).\n[3] H. Hu et al.\, arXiv:2110.06182; L. Chen et al.\, Nat. Phys. 18\, 1341 (2022).\n[4] Y. Fang et al.\, arXiv:2402.18552.\n\nZoom link: https://espci.zoom.us/j/86186041236?pwd=bmN2bv6DuLMNstXnmqjt599RDvZNt2.1\nID: 861 8604 1236\nPasscode: H.Weyl
URL:https://www.chimieparistech.psl.eu/evenement-agenda/seminaire-programme-gradue-chimie-psl-131/
LOCATION:évènement hybride
CATEGORIES:Séminaire
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