Marché de l'électricitéL'expression « marché de l'électricité » désigne, de façon générale, les différentes formes d'organisation du secteur de la production et de la commercialisation de l'électricité apparus, principalement dans les années 1990, dans la plupart des pays industrialisés, dans le cadre des processus de déréglementation. De ses débuts (fin du ) à la fin du , le secteur électrique s'est organisé en monopoles territoriaux verticalement intégrés, de la production à la distribution de détail : en un point donné du territoire un client ne pouvait avoir qu'un seul fournisseur d'électricité.
Discrete time and continuous timeIn mathematical dynamics, discrete time and continuous time are two alternative frameworks within which variables that evolve over time are modeled. Discrete time views values of variables as occurring at distinct, separate "points in time", or equivalently as being unchanged throughout each non-zero region of time ("time period")—that is, time is viewed as a discrete variable. Thus a non-time variable jumps from one value to another as time moves from one time period to the next.
Security engineeringSecurity engineering is the process of incorporating security controls into an information system so that the controls become an integral part of the system’s operational capabilities. It is similar to other systems engineering activities in that its primary motivation is to support the delivery of engineering solutions that satisfy pre-defined functional and user requirements, but it has the added dimension of preventing misuse and malicious behavior. Those constraints and restrictions are often asserted as a security policy.
Dielectric lossIn electrical engineering, dielectric loss quantifies a dielectric material's inherent dissipation of electromagnetic energy (e.g. heat). It can be parameterized in terms of either the loss angle δ or the corresponding loss tangent tan(δ). Both refer to the phasor in the complex plane whose real and imaginary parts are the resistive (lossy) component of an electromagnetic field and its reactive (lossless) counterpart.
Rayonnement thermiqueLe rayonnement thermique est un rayonnement électromagnétique généré par l'agitation thermique de particules dans la matière quel que soit l'état de celle-ci : solide, liquide ou gaz. Le spectre de ce rayonnement s'étend du domaine micro-ondes à l'ultra-violet. L'expression est également utilisée pour des phénomènes beaucoup plus énergétiques tels que rencontrés dans les plasmas, qui sont la source de rayonnement X. Ce phénomène conduit au rayonnement du corps noir lorsque l'interaction matière - rayonnement est réversible et importante.
Power system operations and controlPower system operations is a term used in electricity generation to describe the process of decision-making on the timescale from one day (day-ahead operation) to minutes prior to the power delivery. The term power system control describes actions taken in response to unplanned disturbances (e.g., changes in demand or equipment failures) in order to provide reliable electric supply of acceptable quality. The corresponding engineering branch is called Power System Operations and Control.
Human genetic enhancementHuman genetic enhancement or human genetic engineering refers to human enhancement by means of a genetic modification. This could be done in order to cure diseases (gene therapy), prevent the possibility of getting a particular disease (similarly to vaccines), to improve athlete performance in sporting events (gene doping), or to change physical appearance, metabolism, and even improve physical capabilities and mental faculties such as memory and intelligence.
Augmentation de l'être humainvignette|Synthèse propulsée par l'énergie électrique, a été imaginée par des chercheurs de l'université de Tsukuba au Japon. L'augmentation de l'être humain (en Human enhancement technologies, HET) se réfère à des tentatives temporaires ou permanentes de surmonter les limites actuelles du corps humain avec des moyens naturels ou artificiels.
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).
Electrical resistance and conductanceThe electrical resistance of an object is a measure of its opposition to the flow of electric current. Its reciprocal quantity is , measuring the ease with which an electric current passes. Electrical resistance shares some conceptual parallels with mechanical friction. The SI unit of electrical resistance is the ohm (Ω), while electrical conductance is measured in siemens (S) (formerly called the 'mho' and then represented by ℧). The resistance of an object depends in large part on the material it is made of.