Transition de phasevignette|droite|Noms exclusifs des transitions de phase en thermodynamique. En physique, une transition de phase est la transformation physique d'un système d'une phase vers une autre, induite par la variation d'un paramètre de contrôle externe (température, champ magnétique...). Une telle transition se produit lorsque ce paramètre externe atteint une valeur seuil (ou valeur « critique »). La transformation traduit généralement un changement des propriétés de symétrie du système.
DonnéeUne donnée est ce qui est connu et qui sert de point de départ à un raisonnement ayant pour objet la détermination d'une solution à un problème en relation avec cette donnée. Cela peut être une description élémentaire qui vise à objectiver une réalité, le résultat d'une comparaison entre deux événements du même ordre (mesure) soit en d'autres termes une observation ou une mesure. La donnée brute est dépourvue de tout raisonnement, supposition, constatation, probabilité.
Hurst exponentThe Hurst exponent is used as a measure of long-term memory of time series. It relates to the autocorrelations of the time series, and the rate at which these decrease as the lag between pairs of values increases. Studies involving the Hurst exponent were originally developed in hydrology for the practical matter of determining optimum dam sizing for the Nile river's volatile rain and drought conditions that had been observed over a long period of time.
Control volumeIn continuum mechanics and thermodynamics, a control volume (CV) is a mathematical abstraction employed in the process of creating mathematical models of physical processes. In an inertial frame of reference, it is a fictitious region of a given volume fixed in space or moving with constant flow velocity through which the continuum (gas, liquid or solid) flows. The closed surface enclosing the region is referred to as the control surface. At steady state, a control volume can be thought of as an arbitrary volume in which the mass of the continuum remains constant.
Brownian ratchetIn the philosophy of thermal and statistical physics, the Brownian ratchet or Feynman–Smoluchowski ratchet is an apparent perpetual motion machine of the second kind (converting thermal energy into mechanical work), first analysed in 1912 as a thought experiment by Polish physicist Marian Smoluchowski. It was popularised by American Nobel laureate physicist Richard Feynman in a physics lecture at the California Institute of Technology on May 11, 1962, during his Messenger Lectures series The Character of Physical Law in Cornell University in 1964 and in his text The Feynman Lectures on Physics as an illustration of the laws of thermodynamics.
Contact forceA contact force is any force that occurs as a result of two objects making contact with each other. Contact forces are ubiquitous and are responsible for most visible interactions between macroscopic collections of matter. Pushing a car or kicking a ball are some of the everyday examples where contact forces are at work. In the first case the force is continuously applied to the car by a person, while in the second case the force is delivered in a short impulse.
Onde sur une corde vibranteLa corde vibrante est le modèle physique permettant de représenter les mouvements d'oscillation d'un fil tendu. On supposera ici qu'il est tenu par ses deux extrémités, ce qui n'est pas toujours le cas (dans les pendules ou les fils à plomb, par exemple, l'extrémité du bas est libre). Étant tenue par ses deux extrémités, les vibrations se réfléchissent à chaque extrémité, il y a donc un phénomène d'onde stationnaire.
Undefined behaviorIn computer programming, undefined behavior (UB) is the result of executing a program whose behavior is prescribed to be unpredictable, in the language specification to which the computer code adheres. This is different from unspecified behavior, for which the language specification does not prescribe a result, and implementation-defined behavior that defers to the documentation of another component of the platform (such as the ABI or the translator documentation).
NanomotorA nanomotor is a molecular or nanoscale device capable of converting energy into movement. It can typically generate forces on the order of piconewtons. While nanoparticles have been utilized by artists for centuries, such as in the famous Lycurgus cup, scientific research into nanotechnology did not come about until recently. In 1959, Richard Feynman gave a famous talk entitled "There's Plenty of Room at the Bottom" at the American Physical Society's conference hosted at Caltech.