Network analysis (electrical circuits)In electrical engineering and electronics, a network is a collection of interconnected components. Network analysis is the process of finding the voltages across, and the currents through, all network components. There are many techniques for calculating these values; however, for the most part, the techniques assume linear components. Except where stated, the methods described in this article are applicable only to linear network analysis.
LeadershipLe leadership ou primauté est l' politique, psychologique, sociale, etc. d'un individu sur un groupe d'individus ou d'un groupe d'individus sur un autre groupe. Le leader a des compétences personnelles qui lui confèrent une différence et qui lui permettent d'être écouté et suivi par un groupe de personnes. Leadership vient de l'anglais leader, le meneur et non le chef, désigné par ses pairs, d'un parti politique en Grande-Bretagne, et du suffixe -ship. D'une manière générale, il peut être défini comme .
Equivalent circuitIn electrical engineering, an equivalent circuit refers to a theoretical circuit that retains all of the electrical characteristics of a given circuit. Often, an equivalent circuit is sought that simplifies calculation, and more broadly, that is a simplest form of a more complex circuit in order to aid analysis. In its most common form, an equivalent circuit is made up of linear, passive elements. However, more complex equivalent circuits are used that approximate the nonlinear behavior of the original circuit as well.
Linear circuitA linear circuit is an electronic circuit which obeys the superposition principle. This means that the output of the circuit F(x) when a linear combination of signals ax1(t) + bx2(t) is applied to it is equal to the linear combination of the outputs due to the signals x1(t) and x2(t) applied separately: It is called a linear circuit because the output voltage and current of such a circuit are linear functions of its input voltage and current. This kind of linearity is not the same as that of straight-line graphs.
Leadership studiesLeadership studies is a multidisciplinary academic field of study that focuses on leadership in organizational contexts and in human life. Leadership studies has origins in the social sciences (e.g., sociology, anthropology, psychology), in humanities (e.g., history and philosophy), as well as in professional and applied fields of study (e.g., management and education). The field of leadership studies is closely linked to the field of organizational studies.
Leadership styleA leadership style is a leader's method of providing direction, implementing plans, and motivating people. Various authors have proposed identifying many different leadership styles as exhibited by leaders in the political, business or other fields. Studies on leadership style are conducted in the military field, expressing an approach that stresses a holistic view of leadership, including how a leader's physical presence determines how others perceive that leader.
Electrical elementIn 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.
Trait leadershipTrait leadership is defined as integrated patterns of personal characteristics that reflect a range of individual differences and foster consistent leader effectiveness across a variety of group and organizational situations (Zaccaro, Kemp, & Bader, 2004; Zaccaro 2007). The theory of trait leadership is developed from early leadership research which focused primarily on finding a group of heritable attributes that differentiate leaders from nonleaders.
Switching circuit theorySwitching circuit theory is the mathematical study of the properties of networks of idealized switches. Such networks may be strictly combinational logic, in which their output state is only a function of the present state of their inputs; or may also contain sequential elements, where the present state depends on the present state and past states; in that sense, sequential circuits are said to include "memory" of past states. An important class of sequential circuits are state machines.
Circuit complexityIn theoretical computer science, circuit complexity is a branch of computational complexity theory in which Boolean functions are classified according to the size or depth of the Boolean circuits that compute them. A related notion is the circuit complexity of a recursive language that is decided by a uniform family of circuits (see below). Proving lower bounds on size of Boolean circuits computing explicit Boolean functions is a popular approach to separating complexity classes.
Circuit (computer science)In theoretical computer science, a circuit is a model of computation in which input values proceed through a sequence of gates, each of which computes a function. Circuits of this kind provide a generalization of Boolean circuits and a mathematical model for digital logic circuits. Circuits are defined by the gates they contain and the values the gates can produce. For example, the values in a Boolean circuit are boolean values, and the circuit includes conjunction, disjunction, and negation gates.
Circuit magnétiqueUn circuit magnétique est un circuit généralement réalisé en matériau ferromagnétique au travers duquel circule un flux de champ magnétique. Le champ magnétique est généralement créé soit par des enroulements enserrant le circuit magnétique et traversés par des courants, soit par des aimants contenus dans le circuit magnétique. Lorsque plusieurs circuits électriques sont bobinés autour d'un même circuit magnétique, ils constituent des circuits magnétiquement couplés. Il est constitué d'un assemblage de pièces en matériaux ferromagnétiques.
Circuit électriquevignette|Circuit électrique à Calcutta, Inde. Un circuit électrique au sens matériel est un ensemble simple ou complexe de composants électriques ou électroniques, y compris des simples conducteurs, parcourus par un courant électrique. Au sens de la théorie des circuits, un circuit électrique est une abstraction des configurations matérielles, un agencement d'éléments définis par des relations mathématiques, reliés par des conducteurs idéaux. L'étude électrocinétique d'un circuit électrique consiste à déterminer, à chaque endroit, l'intensité du courant et la tension.
Transformational leadershipTransformational leadership is a theory of leadership where a leader works with teams or followers beyond their immediate self-interests to identify needed change, creating a vision to guide the change through influence, inspiration, and executing the change in tandem with committed members of a group; This change in self-interests elevates the follower's levels of maturity and ideals, as well as their concerns for the achievement. it is an integral part of the Full Range Leadership Model.
Circuit booléenvignette|Exemple circuit booléen à deux entrées et une sortie. Le circuit contient 3 portes logique. En théorie de la complexité, un circuit booléen est un modèle de calcul constitué de portes logiques (fonctions logiques) reliées entre elles. C'est une façon de représenter une fonction booléenne. Un circuit booléen peut être utilisé pour reconnaître un langage formel, c'est-à-dire décider si un mot appartient ou non à un langage particulier. Les caractéristiques des circuits qui reconnaissent un langage permettent de définir (ou redéfinir) des classes de complexité.