Carré thermodynamique de Bornvignette|Le carré thermodynamique est un moyen mnémotechnique pour retenir les relations entre les différents potentiels thermodynamiques. En thermodynamique, le carré thermodynamique de Born est un moyen mnémotechnique permettant de retrouver les relations de Maxwell. Les côtés du carré comportent les potentiels thermodynamiques et les coins opposent les variables conjuguées. Les variables situées sur le côté gauche du carré sont affectées d'un signe négatif.
Fundamental thermodynamic relationIn thermodynamics, the fundamental thermodynamic relation are four fundamental equations which demonstrate how four important thermodynamic quantities depend on variables that can be controlled and measured experimentally. Thus, they are essentially equations of state, and using the fundamental equations, experimental data can be used to determine sought-after quantities like G (Gibbs free energy) or H (enthalpy).
Thermodynamic free energyIn thermodynamics, the thermodynamic free energy is one of the state functions of a thermodynamic system (the others being internal energy, enthalpy, entropy, etc.). The change in the free energy is the maximum amount of work that the system can perform in a process at constant temperature, and its sign indicates whether the process is thermodynamically favorable or forbidden. Since free energy usually contains potential energy, it is not absolute but depends on the choice of a zero point.
Order and disorderIn physics, the terms order and disorder designate the presence or absence of some symmetry or correlation in a many-particle system. In condensed matter physics, systems typically are ordered at low temperatures; upon heating, they undergo one or several phase transitions into less ordered states. Examples for such an order-disorder transition are: the melting of ice: solid-liquid transition, loss of crystalline order; the demagnetization of iron by heating above the Curie temperature: ferromagnetic-paramagnetic transition, loss of magnetic order.
Métal de transitionUn métal de transition, ou élément de transition, est, selon la définition de l'IUPAC, « un élément chimique dont les atomes ont une sous-couche électronique d incomplète, ou qui peuvent former des cations dont la sous-couche électronique d est incomplète ». Cette définition correspond à des éléments partageant un ensemble de propriétés communes. Comme tous les métaux, ce sont de bons conducteurs de l'électricité. Ils sont solides dans les conditions normales de température et de pression, avec une masse volumique et une température de fusion élevées.
Hypothèse nulleEn statistiques et en économétrie, l'hypothèse nulle (symbole international : ) est une hypothèse postulant l'égalité entre des paramètres statistiques (généralement, la moyenne ou la variance) de deux échantillons dont elle fait l’hypothèse qu'ils sont pris sur des populations équivalentes. Elle est toujours testée contre une hypothèse alternative qui postule soit la différence des données (test bilatéral), soit une inégalité (plus petit que ou plus grand que) entre les données (test unilatéral).
Alternative hypothesisIn statistical hypothesis testing, the alternative hypothesis is one of the proposed proposition in the hypothesis test. In general the goal of hypothesis test is to demonstrate that in the given condition, there is sufficient evidence supporting the credibility of alternative hypothesis instead of the exclusive proposition in the test (null hypothesis). It is usually consistent with the research hypothesis because it is constructed from literature review, previous studies, etc.
Topological orderIn physics, topological order is a kind of order in the zero-temperature phase of matter (also known as quantum matter). Macroscopically, topological order is defined and described by robust ground state degeneracy and quantized non-Abelian geometric phases of degenerate ground states. Microscopically, topological orders correspond to patterns of long-range quantum entanglement. States with different topological orders (or different patterns of long range entanglements) cannot change into each other without a phase transition.
Lattice model (physics)In mathematical physics, a lattice model is a mathematical model of a physical system that is defined on a lattice, as opposed to a continuum, such as the continuum of space or spacetime. Lattice models originally occurred in the context of condensed matter physics, where the atoms of a crystal automatically form a lattice. Currently, lattice models are quite popular in theoretical physics, for many reasons. Some models are exactly solvable, and thus offer insight into physics beyond what can be learned from perturbation theory.
Statistical parameterIn statistics, as opposed to its general use in mathematics, a parameter is any measured quantity of a statistical population that summarises or describes an aspect of the population, such as a mean or a standard deviation. If a population exactly follows a known and defined distribution, for example the normal distribution, then a small set of parameters can be measured which completely describes the population, and can be considered to define a probability distribution for the purposes of extracting samples from this population.