. , 178 7.2 Ferrofluide à base de DMSO : champ magnétique perpendiculaire, p.178

. , 2.3.1 Validation en l'absence de nanoparticules magnétiques, p.183

.. .. Mesures,

%. .. , Origine du phénomène irréversible à ? = 1, p.186

. .. Coefficient-seebeck-stationnaire, , p.186

.. .. Mesures,

. .. Constantes-de-temps,

. .. Ff-tbua, Ferrofluides aqueux : champs magnétiques parallèle et perpendiculaire 189 7.3.1

F. .. ,

.. .. Méthode-de-monte-carlo,

, Ensemble de densités de charge constantes, p.223

. , Ensemble de potentiel constant

. Température and . .. Recuit-parallèle, , p.224

. .. Électrodes,

E. +. ,

.. .. Potentiel-de-lennard-jones,

. .. Méthode-de-calcul,

.. .. Méthode-d'ewald,

.. .. Méthode-de-lekner-sperb,

. .. Méthode-de-calcul,

.. .. Calcul-de-l'énergie-d'une-configuration,

. .. Intermoléculaires,

.. .. Mémoire-partagée,

.. .. Mémoire-distribuée,

. .. , Déroulement d'une simulation, p.233

. Recalages and .. .. Recuit-parallèle,

, SIMULATION DE L'INTERFACE PT/EMIMBF4, CHAPITRE 9

.. .. État-d'équilibre,

. Résultats and . .. Discussions,

. .. Densité-de-charge-Électrique, , p.241

. , Influence de la différence de potentiel

.. .. Capacité-différentielle,

. .. ,

. .. Densité-de-charge-Électrique, , p.248

. , Influence de la différence de potentiel

.. .. Capacité-différentielle, , p.251

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