Offset binaryOffset binary, also referred to as excess-K, excess-N, excess-e, excess code or biased representation, is a method for signed number representation where a signed number n is represented by the bit pattern corresponding to the unsigned number n+K, K being the biasing value or offset. There is no standard for offset binary, but most often the K for an n-bit binary word is K = 2n−1 (for example, the offset for a four-digit binary number would be 23=8).
Densité de chargeLa densité de charge électrique désigne la quantité de charge électrique par unité d'espace. Selon que l'on considère un problème à 1, 2 ou 3 dimensions, c'est-à-dire une ligne, une surface ou un volume, on parlera de densité linéique, surfacique ou volumique de charge. Leurs unités sont respectivement le coulomb par mètre (), le coulomb par mètre carré () et le coulomb par mètre cube () dans le Système international. Comme il existe des charges négatives comme des charges positives, la densité de charge peut prendre des valeurs négatives.
Signed number representationsIn computing, signed number representations are required to encode negative numbers in binary number systems. In mathematics, negative numbers in any base are represented by prefixing them with a minus sign ("−"). However, in RAM or CPU registers, numbers are represented only as sequences of bits, without extra symbols. The four best-known methods of extending the binary numeral system to represent signed numbers are: sign–magnitude, ones' complement, two's complement, and offset binary.