Automatic transmissionAn automatic transmission (sometimes abbreviated AT) is a multi-speed transmission used in motor vehicles that does not require any input from the driver to change forward gears under normal driving conditions. The most common type of automatic transmission is the hydraulic automatic, which uses a planetary gearset, hydraulic controls, and a torque converter. Other types of automatic transmissions include continuously variable transmissions (CVT), automated manual transmissions (AMT), and dual-clutch transmissions (DCT).
Double-clad fiberDouble-clad fiber (DCF) is a class of optical fiber with a structure consisting of three layers of optical material instead of the usual two. The inner-most layer is called the core. It is surrounded by the inner cladding, which is surrounded by the outer cladding. The three layers are made of materials with different refractive indices. There are two different kinds of double-clad fibers. The first was developed early in optical fiber history with the purpose of engineering the dispersion of optical fibers.
Transmission (mécanique)Une transmission est un dispositif mécanique permettant de transmettre, ou convertir, un mouvement d'une pièce à une autre. Cet élément de la chaîne d'énergie a pour fonction l'adaptation du couple et de la vitesse entre l'organe moteur et l'organe entraîné. La transmission du mouvement est l'une des fonctions les plus courantes des éléments de la mécanique générale, c'est-à-dire des dispositifs mécaniques destinés à remplacer la main de l'homme.
Class-D amplifierA class-D amplifier or switching amplifier is an electronic amplifier in which the amplifying devices (transistors, usually MOSFETs) operate as electronic switches, and not as linear gain devices as in other amplifiers. They operate by rapidly switching back and forth between the supply rails, using pulse-width modulation, pulse-density modulation, or related techniques to produce a pulse train output. This passes through a simple low-pass filter which blocks the high-frequency pulses and provides analog output current and voltage.
Rotational transitionIn quantum mechanics, a rotational transition is an abrupt change in angular momentum. Like all other properties of a quantum particle, angular momentum is quantized, meaning it can only equal certain discrete values, which correspond to different rotational energy states. When a particle loses angular momentum, it is said to have transitioned to a lower rotational energy state. Likewise, when a particle gains angular momentum, a positive rotational transition is said to have occurred.
Laserthumb|250px|Lasers rouges (660 & ), verts (532 & ) et bleus (445 & ). thumb|250px|Rayon laser à travers un dispositif optique. thumb|250px|Démonstration de laser hélium-néon au laboratoire Kastler-Brossel à l'Université Pierre-et-Marie-Curie. Un laser (acronyme issu de l'anglais light amplification by stimulated emission of radiation qui signifie « amplification de la lumière par émission stimulée de radiation ») est un système photonique.
Audio mixing (recorded music)In sound recording and reproduction, audio mixing is the process of optimizing and combining multitrack recordings into a final mono, stereo or surround sound product. In the process of combining the separate tracks, their relative levels are adjusted and balanced and various processes such as equalization and compression are commonly applied to individual tracks, groups of tracks, and the overall mix. In stereo and surround sound mixing, the placement of the tracks within the stereo (or surround) field are adjusted and balanced.
Variateur de vitesse mécaniqueUn variateur de vitesse mécanique ou transmission à variation continue est un dispositif mécanique permettant de faire varier continûment le rapport de démultiplication d'un arbre moteur à un arbre mené. Il est utilisé en remplacement d'une boîte de vitesses. Dans le monde automobile, il est connu sous son acronyme anglais : CVT (pour Continuously Variable Transmission ou Continuously Variable Torque).
Raman amplificationRaman amplification ˈrɑːmən is based on the stimulated Raman scattering (SRS) phenomenon, when a lower frequency 'signal' photon induces the inelastic scattering of a higher-frequency 'pump' photon in an optical medium in the nonlinear regime. As a result of this, another 'signal' photon is produced, with the surplus energy resonantly passed to the vibrational states of the medium. This process, as with other stimulated emission processes, allows all-optical amplification.
Spectroscopie rotationnelleLa spectroscopie rotationnelle, de rotation ou micro-onde étudie l'absorption et l'émission d'une onde électromagnétique (habituellement dans la région micro-onde du spectre électromagnétique) par des molécules associées aux modifications correspondantes du nombre quantique de rotation de la molécule. L'utilisation de micro-ondes en spectroscopie a été rendue possible en raison principalement du développement de la technologie associée pour le radar durant la Seconde Guerre mondiale.