Likelihoodist statisticsLikelihoodist statistics or likelihoodism is an approach to statistics that exclusively or primarily uses the likelihood function. Likelihoodist statistics is a more minor school than the main approaches of Bayesian statistics and frequentist statistics, but has some adherents and applications. The central idea of likelihoodism is the likelihood principle: data are interpreted as evidence, and the strength of the evidence is measured by the likelihood function.
Spatial cognitionSpatial cognition is the acquisition, organization, utilization, and revision of knowledge about spatial environments. It is most about how animals including humans behave within space and the knowledge they built around it, rather than space itself. These capabilities enable individuals to manage basic and high-level cognitive tasks in everyday life. Numerous disciplines (such as cognitive psychology, neuroscience, artificial intelligence, geographic information science, cartography, etc.
Fonction de masse (probabilités)En théorie des probabilités, la fonction de masse est la fonction qui donne la probabilité de chaque issue ( résultat élémentaire) d'une expérience aléatoire. C'est souvent ainsi que l'on définit une loi de probabilité discrète. Elle se distingue de la fonction de densité, de la densité de probabilité, en ceci que les densités de probabilité ne sont définies que pour des variables aléatoires absolument continues, et que ce sont leurs intégrales sur des domaines qui ont valeurs de probabilités (et non leurs valeurs en des points).
Statistical model specificationIn statistics, model specification is part of the process of building a statistical model: specification consists of selecting an appropriate functional form for the model and choosing which variables to include. For example, given personal income together with years of schooling and on-the-job experience , we might specify a functional relationship as follows: where is the unexplained error term that is supposed to comprise independent and identically distributed Gaussian variables.
Power toolA power tool is a tool that is actuated by an additional power source and mechanism other than the solely manual labor used with hand tools. The most common types of power tools use electric motors. Internal combustion engines and compressed air are also commonly used. Tools directly driven by animal power are not generally considered power tools. Power tools are used in industry, in construction, in the garden, for housework tasks such as cooking, cleaning, and around the house for purposes of driving (fasteners), drilling, cutting, shaping, sanding, grinding, routing, polishing, painting, heating and more.
Multivariate t-distributionIn statistics, the multivariate t-distribution (or multivariate Student distribution) is a multivariate probability distribution. It is a generalization to random vectors of the Student's t-distribution, which is a distribution applicable to univariate random variables. While the case of a random matrix could be treated within this structure, the matrix t-distribution is distinct and makes particular use of the matrix structure.
Fonction de répartitionEn théorie des probabilités, la fonction de répartition, ou fonction de distribution cumulative, d'une variable aléatoire réelle X est la fonction F_X qui, à tout réel x, associe la probabilité d’obtenir une valeur inférieure ou égale : Cette fonction est caractéristique de la loi de probabilité de la variable aléatoire.
ParameterA parameter (), generally, is any characteristic that can help in defining or classifying a particular system (meaning an event, project, object, situation, etc.). That is, a parameter is an element of a system that is useful, or critical, when identifying the system, or when evaluating its performance, status, condition, etc. Parameter has more specific meanings within various disciplines, including mathematics, computer programming, engineering, statistics, logic, linguistics, and electronic musical composition.
Outilthumb|Une boîte à outils en bois des années 1950. Un outil est un objet physique utilisé par un être vivant directement, ou par l'intermédiaire d'une machine, afin d'exercer une action le plus souvent mécanique, ou thermique, sur un élément d'environnement à traiter (matière brute, objet fini ou semi-fini, être vivant, etc). Il améliore l'efficacité des actions entreprises ou donne accès à des actions impossibles autrement. Beaucoup procurent un avantage mécanique en fonctionnant selon le principe d'une machine simple, comme la pince-monseigneur, qui exploite le principe du levier.
Statistical assumptionStatistics, like all mathematical disciplines, does not infer valid conclusions from nothing. Inferring interesting conclusions about real statistical populations almost always requires some background assumptions. Those assumptions must be made carefully, because incorrect assumptions can generate wildly inaccurate conclusions. Here are some examples of statistical assumptions: Independence of observations from each other (this assumption is an especially common error). Independence of observational error from potential confounding effects.