In electrical engineering, electrical elements are conceptual abstractions representing idealized electrical components, such as resistors, capacitors, and inductors, used in the analysis of electrical networks. All electrical networks can be analyzed as multiple electrical elements interconnected by wires. Where the elements roughly correspond to real components, the representation can be in the form of a schematic diagram or circuit diagram. This is called a lumped-element circuit model.
In electronics engineering, frequency compensation is a technique used in amplifiers, and especially in amplifiers employing negative feedback. It usually has two primary goals: To avoid the unintentional creation of positive feedback, which will cause the amplifier to oscillate, and to control overshoot and ringing in the amplifier's step response. It is also used extensively to improve the bandwidth of single pole systems.
The input impedance of an electrical network is the measure of the opposition to current (impedance), both static (resistance) and dynamic (reactance), into a load network that is external to the electrical source network. The input admittance (the reciprocal of impedance) is a measure of the load network's propensity to draw current. The source network is the portion of the network that transmits power, and the load network is the portion of the network that consumes power.
Lamour est un fort sentiment d'affection et d'attachement envers un être vivant ou une chose, assez intense pour pousser ceux qui le ressentent à rechercher une proximité physique, intellectuelle ou même imaginaire avec l'objet de cet amour. L'amour éprouvé pour une autre personne peut conduire à adopter un comportement particulier et aboutir à une relation amoureuse si cet amour est partagé. En tant que concept général, l'amour renvoie la plupart du temps à un profond sentiment de tendresse et d'empathie envers une personne.