Théorie de la percolationLa théorie de la percolation est une branche de la physique statistique et mathématique qui s'intéresse aux caractéristiques des milieux aléatoires, plus précisément aux ensembles de sommets connectés dans un graphe aléatoire. Cette théorie s'applique notamment en science des matériaux pour formaliser les propriétés d'écoulement dans les milieux poreux et pour la modélisation de phénomènes naturels, comme les incendies. L’histoire de la percolation prend ses racines dans l’industrie du charbon.
Échantillonnage stratifiévignette|Vous prenez un échantillon aléatoire stratifié en divisant d'abord la population en groupes homogènes (semblables en eux-mêmes) (strates) qui sont distincts les uns des autres, c'est-à-dire. Le groupe 1 est différent du groupe 2. Ensuite, choisissez un EAS (échantillon aléatoire simple) distinct dans chaque strate et combinez ces EAS pour former l'échantillon complet. L'échantillonnage aléatoire stratifié est utilisé pour produire des échantillons non biaisés.
Deformation (engineering)In engineering, deformation refers to the change in size or shape of an object. Displacements are the absolute change in position of a point on the object. Deflection is the relative change in external displacements on an object. Strain is the relative internal change in shape of an infinitesimally small cube of material and can be expressed as a non-dimensional change in length or angle of distortion of the cube. Strains are related to the forces acting on the cube, which are known as stress, by a stress-strain curve.
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.
Fibre de verreLa fibre de verre est un filament de verre. Par extension, les plastiques à renfort de verre sont aussi appelés fibre de verre. Les fibres de verre, constituent avec les verres creux, les verres plats et les verres cellulaires, les principales familles de verre. La fibre de verre a été brevetée en 1930. Ce n'est toutefois que récemment qu'elle a révolutionné l'industrie verrière, utilisée pour ses qualités mécaniques et optiques.
Specific strengthThe specific strength is a material's (or muscle's) strength (force per unit area at failure) divided by its density. It is also known as the strength-to-weight ratio or strength/weight ratio or strength-to-mass ratio. In fiber or textile applications, tenacity is the usual measure of specific strength. The SI unit for specific strength is Pa⋅m3/kg, or N⋅m/kg, which is dimensionally equivalent to m2/s2, though the latter form is rarely used.
Yield (engineering)In materials science and engineering, the yield point is the point on a stress-strain curve that indicates the limit of elastic behavior and the beginning of plastic behavior. Below the yield point, a material will deform elastically and will return to its original shape when the applied stress is removed. Once the yield point is passed, some fraction of the deformation will be permanent and non-reversible and is known as plastic deformation.
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.
Percolation critical exponentsIn the context of the physical and mathematical theory of percolation, a percolation transition is characterized by a set of universal critical exponents, which describe the fractal properties of the percolating medium at large scales and sufficiently close to the transition. The exponents are universal in the sense that they only depend on the type of percolation model and on the space dimension. They are expected to not depend on microscopic details such as the lattice structure, or whether site or bond percolation is considered.
Percolationvignette|Schéma de l'hydrosystème karstique : infiltrations dans le sol et la roche. La percolation (du latin percolare, « filtrer », « passer au travers ») désigne communément le passage d'un fluide à travers un milieu poreux ou fissuré plus ou moins perméable. Un exemple de la vie courante est celui de l'écoulement de l'eau au travers de la poudre de café moulu contenu dans le filtre d'une machine à café (d'où le nom de percolateur).