Méthode itérativeEn analyse numérique, une méthode itérative est un procédé algorithmique utilisé pour résoudre un problème, par exemple la recherche d’une solution d’un système d'équations ou d’un problème d’optimisation. En débutant par le choix d’un point initial considéré comme une première ébauche de solution, la méthode procède par itérations au cours desquelles elle détermine une succession de solutions approximatives raffinées qui se rapprochent graduellement de la solution cherchée. Les points générés sont appelés des itérés.
Verreriethumb|300px|Vase au grillons de la verrerie Daum à Nancy vers 1900. La verrerie est l’art de la fabrication du verre. Elle désigne aussi l’atelier du verrier et l’ouvrage en verre. Depuis l’Égypte ancienne, le verre fascine par ses propriétés étranges. Translucide ou transparent, il se travaille au feu, un peu comme un métal. Fragile, il est aussi très dur une fois figé dans la forme qu’on lui a donnée.
Pooled varianceIn statistics, pooled variance (also known as combined variance, composite variance, or overall variance, and written ) is a method for estimating variance of several different populations when the mean of each population may be different, but one may assume that the variance of each population is the same. The numerical estimate resulting from the use of this method is also called the pooled variance. Under the assumption of equal population variances, the pooled sample variance provides a higher precision estimate of variance than the individual sample variances.
Madhava seriesIn mathematics, a Madhava series is one of the three Taylor series expansions for the sine, cosine, and arctangent functions discovered in 14th or 15th century Kerala by the mathematician and astronomer Madhava of Sangamagrama (c. 1350 – c. 1425) or his followers in the Kerala school of astronomy and mathematics. Using modern notation, these series are: All three series were later independently discovered in 17th century Europe.
PeeningIn metallurgy, peening is the process of working a metal's surface to improve its material properties, usually by mechanical means, such as hammer blows, by blasting with shot (shot peening), focusing light (laser peening), or in recent years, with water column impacts (water jet peening) and cavitation jets (cavitation peening). With the notable exception of laser peening, peening is normally a cold work process tending to expand the surface of the cold metal, thus inducing compressive stresses or relieving tensile stresses already present.
Glass coloring and color markingGlass coloring and color marking may be obtained in several ways. by the addition of coloring ions, by precipitation of nanometer-sized colloids (so-called striking glasses such as "gold ruby" or red "selenium ruby"), by colored inclusions (as in milk glass and smoked glass) by light scattering (as in phase separated glass) by dichroic coatings (see dichroic glass), or by colored coatings Ordinary soda-lime glass appears colorless to the naked eye when it is thin, although iron oxide impurities produce a green tint which can be viewed in thick pieces or with the aid of scientific instruments.