Energy systemAn energy system is a system primarily designed to supply energy-services to end-users. The intent behind energy systems is to minimise energy losses to a negligible level, as well as to ensure the efficient use of energy. The IPCC Fifth Assessment Report defines an energy system as "all components related to the production, conversion, delivery, and use of energy". The first two definitions allow for demand-side measures, including daylighting, retrofitted building insulation, and passive solar building design, as well as socio-economic factors, such as aspects of energy demand management and remote work, while the third does not.
Nuclear energy policyNuclear energy policy is a national and international policy concerning some or all aspects of nuclear energy and the nuclear fuel cycle, such as uranium mining, ore concentration, conversion, enrichment for nuclear fuel, generating electricity by nuclear power, storing and reprocessing spent nuclear fuel, and disposal of radioactive waste. Nuclear energy policies often include the regulation of energy use and standards relating to the nuclear fuel cycle.
Ressource non renouvelableUne ressource naturelle est qualifiée de non renouvelable ou épuisable lorsque sa vitesse de destruction dépasse, largement ou non, sa vitesse de création. Le sol se forme en quelques siècles à plusieurs millénaires suivant les conditions chimiques, physiques et biologiques et est actuellement détruit dans certaines régions en quelques dizaines d'années, voire quelques années. On peut aussi rapprocher l'actuelle destruction accélérée des espèces d'une ressource .
Cost-effectiveness analysisCost-effectiveness analysis (CEA) is a form of economic analysis that compares the relative costs and outcomes (effects) of different courses of action. Cost-effectiveness analysis is distinct from cost–benefit analysis, which assigns a monetary value to the measure of effect. Cost-effectiveness analysis is often used in the field of health services, where it may be inappropriate to monetize health effect.
Potentiel d'actionvignette|Le déplacement d'un potentiel d'action le long d'un axone, modifie la polarité de la membrane cellulaire. Les canaux ioniques sodium Na+ et potassium K+ voltage-dépendants s'ouvrent puis se ferment quand la membrane atteint le potentiel seuil, en réponse à un signal en provenance d'un autre neurone. À l'initiation du potentiel d'action, le canal Na+ s'ouvre et le Na+ extracellulaire rentre dans l'axone, provoquant une dépolarisation. Ensuite la repolarisation se produit lorsque le canal K+ s'ouvre et le K+ intracellulaire sort de l'axone.