Convenience samplingConvenience sampling (also known as grab sampling, accidental sampling, or opportunity sampling) is a type of non-probability sampling that involves the sample being drawn from that part of the population that is close to hand. This type of sampling is most useful for pilot testing. Convenience sampling is not often recommended for research due to the possibility of sampling error and lack of representation of the population. But it can be handy depending on the situation. In some situations, convenience sampling is the only possible option.
Sampling errorIn statistics, sampling errors are incurred when the statistical characteristics of a population are estimated from a subset, or sample, of that population. It can produced biased results. Since the sample does not include all members of the population, statistics of the sample (often known as estimators), such as means and quartiles, generally differ from the statistics of the entire population (known as parameters). The difference between the sample statistic and population parameter is considered the sampling error.
Genetic variationGenetic variation is the difference in DNA among individuals or the differences between populations among the same species. The multiple sources of genetic variation include mutation and genetic recombination. Mutations are the ultimate sources of genetic variation, but other mechanisms, such as genetic drift, contribute to it, as well. Genetic variation can be identified at many levels. Identifying genetic variation is possible from observations of phenotypic variation in either quantitative traits (traits that vary continuously and are coded for by many genes (e.
Analyse factorielleL'analyse factorielle est un terme qui désigne aujourd'hui plusieurs méthodes d'analyses de grands tableaux rectangulaires de données, visant à déterminer et à hiérarchiser des facteurs corrélés aux données placées en colonnes. Au sens anglo-saxon du terme, l'analyse factorielle (factor analysis) désigne une méthode de la famille de la statistique multivariée, utilisée pour décrire un ensemble de variables observées, au moyen de variables latentes (non observées).
Fonction d'erreurthumb|right|upright=1.4|Construction de la fonction d'erreur réelle. En mathématiques, la fonction d'erreur (aussi appelée fonction d'erreur de Gauss) est une fonction entière utilisée en analyse. Cette fonction se note erf et fait partie des fonctions spéciales. Elle est définie par : La fonction erf intervient régulièrement dans le domaine des probabilités et statistiques, ainsi que dans les problèmes de diffusion (de la chaleur ou de la matière).
Cluster samplingIn statistics, cluster sampling is a sampling plan used when mutually homogeneous yet internally heterogeneous groupings are evident in a statistical population. It is often used in marketing research. In this sampling plan, the total population is divided into these groups (known as clusters) and a simple random sample of the groups is selected. The elements in each cluster are then sampled. If all elements in each sampled cluster are sampled, then this is referred to as a "one-stage" cluster sampling plan.
Convolutional codeIn telecommunication, a convolutional code is a type of error-correcting code that generates parity symbols via the sliding application of a boolean polynomial function to a data stream. The sliding application represents the 'convolution' of the encoder over the data, which gives rise to the term 'convolutional coding'. The sliding nature of the convolutional codes facilitates trellis decoding using a time-invariant trellis. Time invariant trellis decoding allows convolutional codes to be maximum-likelihood soft-decision decoded with reasonable complexity.
Paradigm shiftA paradigm shift is a fundamental change in the basic concepts and experimental practices of a . It is a concept in the philosophy of science that was introduced and brought into the common lexicon by the American physicist and philosopher Thomas Kuhn. Even though Kuhn restricted the use of the term to the natural sciences, the concept of a paradigm shift has also been used in numerous non-scientific contexts to describe a profound change in a fundamental model or perception of events.
Code cycliqueEn mathématiques et en informatique, un code cyclique est un code correcteur linéaire. Ce type de code possède non seulement la capacité de détecter les erreurs, mais aussi de les corriger sous réserve d'altérations modérées. Les mathématiques sous-jacentes se fondent sur la théorie des corps finis, et en particulier les extensions de Galois ainsi que les polynômes. Les codes cycliques, encore appelés contrôles de redondance cyclique (CRC), correspondent à une large famille de codes, on peut citer par exemple le code de Hamming, les codes BCH ou le code de Reed-Solomon.
Mathématiques discrètesLes mathématiques discrètes, parfois appelées mathématiques finies, sont l'étude des structures mathématiques fondamentalement discrètes, par opposition aux structures continues. Contrairement aux nombres réels, qui ont la propriété de varier "en douceur", les objets étudiés en mathématiques discrètes (tels que les entiers relatifs, les graphes simples et les énoncés en logique) ne varient pas de cette façon, mais ont des valeurs distinctes séparées.