VagueUne vague () est une déformation de la surface d'une masse d'eau le plus souvent sous l'effet du vent. À l'interface des deux fluides principaux de la Terre, le vent crée des vagues sur les océans, mers et lacs. Ces mouvements irréguliers se dispersent à la surface de l'eau et sont collectivement appelés état de la mer. D'autres phénomènes, moins fréquents, sont aussi la source de vagues. Ainsi, les séismes majeurs, éruptions volcaniques ou chutes de météorites créent également des vagues appelées tsunamis ou raz-de-marée.
Microscopic scaleThe microscopic scale () is the scale of objects and events smaller than those that can easily be seen by the naked eye, requiring a lens or microscope to see them clearly. In physics, the microscopic scale is sometimes regarded as the scale between the macroscopic scale and the quantum scale. Microscopic units and measurements are used to classify and describe very small objects. One common microscopic length scale unit is the micrometre (also called a micron) (symbol: μm), which is one millionth of a metre.
Microscopic traffic flow modelMicroscopic traffic flow models are a class of scientific models of vehicular traffic dynamics. In contrast, to macroscopic models, microscopic traffic flow models simulate single vehicle-driver units, so the dynamic variables of the models represent microscopic properties like the position and velocity of single vehicles. Also known as time-continuous models, all car-following models have in common that they are defined by ordinary differential equations describing the complete dynamics of the vehicles' positions and velocities .
Capillary waveA capillary wave is a wave traveling along the phase boundary of a fluid, whose dynamics and phase velocity are dominated by the effects of surface tension. Capillary waves are common in nature, and are often referred to as ripples. The wavelength of capillary waves on water is typically less than a few centimeters, with a phase speed in excess of 0.2–0.3 meter/second. A longer wavelength on a fluid interface will result in gravity–capillary waves which are influenced by both the effects of surface tension and gravity, as well as by fluid inertia.
Wave heightIn fluid dynamics, the wave height of a surface wave is the difference between the elevations of a crest and a neighboring trough. Wave height is a term used by mariners, as well as in coastal, ocean and naval engineering. At sea, the term significant wave height is used as a means to introduce a well-defined and standardized statistic to denote the characteristic height of the random waves in a sea state, including wind sea and swell. It is defined in such a way that it more or less corresponds to what a mariner observes when estimating visually the average wave height.
Vague scélératevignette|300px|droite|Vague scélérate vue d’un navire marchand (1940, golfe de Gascogne, ligne de sonde des ). Les vagues scélérates sont des vagues océaniques très hautes, soudaines, considérées comme très rares. Cette rareté est relative, les observations ne concernant qu'une très faible partie d'entre elles, compte tenu de l'étendue des océans et de la rapidité avec laquelle les vagues se forment et se défont au sein des trains de vagues où elles se propagent.
Embouteillage (route)vignette|Embouteillage à Los Angeles en 1953. Un embouteillage (« bouchon » ou « file » en Europe, « congestion » au Canada) est un encombrement de la circulation, généralement automobile, réduisant fortement la vitesse de circulation des véhicules sur la voie. right|thumb|Les départs ou les retours de vacances sont une des sources d'embouteillage (Algarve, Portugal, été 2005). Les mots embouteillage, bouchon et congestion (également utilisé en anglais) sont utilisés par analogie, tous ces mots étant auparavant employés dans d'autres domaines.
Ondevignette|Propagation d'une onde. Une onde est la propagation d'une perturbation produisant sur son passage une variation réversible des propriétés physiques locales du milieu. Elle se déplace avec une vitesse déterminée qui dépend des caractéristiques du milieu de propagation. vignette|Une vague s'écrasant sur le rivage. Il existe trois principaux types d'ondes : les ondes mécaniques se propagent à travers une matière physique dont la substance se déforme. Les forces de restauration inversent alors la déformation.
Traffic flowIn mathematics and transportation engineering, traffic flow is the study of interactions between travellers (including pedestrians, cyclists, drivers, and their vehicles) and infrastructure (including highways, signage, and traffic control devices), with the aim of understanding and developing an optimal transport network with efficient movement of traffic and minimal traffic congestion problems.
Macroscopic quantum phenomenaMacroscopic quantum phenomena are processes showing quantum behavior at the macroscopic scale, rather than at the atomic scale where quantum effects are prevalent. The best-known examples of macroscopic quantum phenomena are superfluidity and superconductivity; other examples include the quantum Hall effect and topological order. Since 2000 there has been extensive experimental work on quantum gases, particularly Bose–Einstein condensates. Between 1996 and 2016 six Nobel Prizes were given for work related to macroscopic quantum phenomena.