Plasma parametersPlasma parameters define various characteristics of a plasma, an electrically conductive collection of charged particles that responds collectively to electromagnetic forces. Plasma typically takes the form of neutral gas-like clouds or charged ion beams, but may also include dust and grains. The behaviour of such particle systems can be studied statistically. All quantities are in Gaussian (cgs) units except energy and temperature which are in electronvolts.
Hydrodynamic stabilityIn fluid dynamics, hydrodynamic stability is the field which analyses the stability and the onset of instability of fluid flows. The study of hydrodynamic stability aims to find out if a given flow is stable or unstable, and if so, how these instabilities will cause the development of turbulence. The foundations of hydrodynamic stability, both theoretical and experimental, were laid most notably by Helmholtz, Kelvin, Rayleigh and Reynolds during the nineteenth century.
InstabilitéÉtat de déséquilibre dynamique ou thermique de l'atmosphère, qui détermine les mouvements verticaux ascendants.
Pression magnétiqueEn électromagnétisme, la pression magnétique désigne une quantité associée au champ magnétique, s'apparentant dans certaines situations à une force de pression, d'où son nom. La pression magnétique apparaît en magnétohydrodynamique, quand on écrit la version idoine de l'équation d'Euler, c'est-à-dire l'équivalent du principe fondamental de la dynamique appliqué à un élément de fluide soumis à un champ magnétique.
Éjection de masse coronale350px|vignette|droite|Éjection de masse coronale produite le 31 août 2012. Une éjection de masse coronale (en abrégé EMC ; en anglais coronal mass ejection, CME) est une bulle de plasma produite dans la couronne d'une étoile (par exemple la couronne solaire). Elle est souvent liée à une éruption solaire ou à l'apparition d'une protubérance solaire, mais ce n'est pas systématique. Les EMC sont des phénomènes à grande échelle : leur taille peut atteindre plusieurs dizaines de rayons solaires.
Simulation informatiquevignette|upright=1|Une simulation informatique, sur une étendue de , de l'évolution du typhon Mawar produite par le Modèle météorologique Weather Research and Forecasting La simulation informatique ou numérique est l'exécution d'un programme informatique sur un ordinateur ou réseau en vue de simuler un phénomène physique réel et complexe (par exemple : chute d’un corps sur un support mou, résistance d’une plateforme pétrolière à la houle, fatigue d’un matériau sous sollicitation vibratoire, usure d’un roulem
Electrical resistivity and conductivityElectrical resistivity (also called volume resistivity or specific electrical resistance) is a fundamental specific property of a material that measures its electrical resistance or how strongly it resists electric current. A low resistivity indicates a material that readily allows electric current. Resistivity is commonly represented by the Greek letter ρ (rho). The SI unit of electrical resistivity is the ohm-metre (Ω⋅m).
Business simulationBusiness simulation or corporate simulation is simulation used for business training, education or analysis. It can be scenario-based or numeric-based. Most business simulations are used for business acumen training and development. Learning objectives include: strategic thinking, decision making, problem solving, financial analysis, market analysis, operations, teamwork and leadership. The business gaming community seems lately to have adopted the term business simulation game instead of just gaming or just simulation.
Training simulationIn business, training simulation is a virtual medium through which various types of skills can be acquired. Training simulations can be used in a variety of genres; however they are most commonly used in corporate situations to improve business awareness and management skills. They are also common in academic environments as an integrated part of a business or management course. The word simulation implies an imitation of a real-life process, usually via a computer or other technological device, in order to provide a lifelike experience.
Plasma arc weldingPlasma arc welding (PAW) is an arc welding process similar to gas tungsten arc welding (GTAW). The electric arc is formed between an electrode (which is usually but not always made of sintered tungsten) and the workpiece. The key difference from GTAW is that in PAW, the electrode is positioned within the body of the torch, so the plasma arc is separated from the shielding gas envelope. The plasma is then forced through a fine-bore copper nozzle which constricts the arc and the plasma exits the orifice at high velocities (approaching the speed of sound) and a temperature approaching 28,000 °C (50,000 °F) or higher.