Turing-completEn informatique et en logique, un système formel est dit complet au sens de Turing ou Turing-complet (par calque de l’anglais Turing-complete) s’il possède un pouvoir expressif au moins équivalent à celui des machines de Turing. Dans un tel système, il est donc possible de programmer n'importe quelle machine de Turing. Cette notion est rendue pertinente par la thèse de Church, qui postule l’existence d’une notion naturelle de calculabilité.
Power-flow studyIn power engineering, the power-flow study, or load-flow study, is a numerical analysis of the flow of electric power in an interconnected system. A power-flow study usually uses simplified notations such as a one-line diagram and per-unit system, and focuses on various aspects of AC power parameters, such as voltages, voltage angles, real power and reactive power. It analyzes the power systems in normal steady-state operation. Power-flow or load-flow studies are important for planning future expansion of power systems as well as in determining the best operation of existing systems.
Data-flow analysisData-flow analysis is a technique for gathering information about the possible set of values calculated at various points in a computer program. A program's control-flow graph (CFG) is used to determine those parts of a program to which a particular value assigned to a variable might propagate. The information gathered is often used by compilers when optimizing a program. A canonical example of a data-flow analysis is reaching definitions.