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The biblical book of Samuel-Kings was divided into two parts in the original Hebrew so it would fit conveniently onto ancient scrolls.When it was translated into Greek it expanded by a third (because Greek writing uses more letters per word in average than Hebrew writing), and so each part was divided in half, producing the books known today as 1 Samuel and 2 Samuel and 1 Kings and 2 Kings.
In mathematics (particularly multivariable calculus), a volume integral (∭) is an integral over a 3-dimensional domain; that is, it is a special case of multiple integrals. Volume integrals are especially important in physics for many applications, for example, to calculate flux densities, or to calculate mass from a corresponding density ...
Graph of = /. Gabriel's horn is formed by taking the graph of =, with the domain and rotating it in three dimensions about the x axis. The discovery was made using Cavalieri's principle before the invention of calculus, but today, calculus can be used to calculate the volume and surface area of the horn between x = 1 and x = a, where a > 1. [6]
According to Herbert G. May, chief editor of two classic Bible-related reference books, the bath may be archaeologically determined to have been about 22 liters (5.75 US gal) from a study of jar remains marked 'bath' and 'royal bath' from Tell Beit Mirsim. [38]
The Catholic Bible contains 73 books; the additional seven books are called the Apocrypha and are considered canonical by the Catholic Church, but not by other Christians. When citing the Latin Vulgate , chapter and verse are separated with a comma, for example "Ioannem 3,16"; in English Bibles chapter and verse are separated with a colon, for ...
Disc integration, also known in integral calculus as the disc method, is a method for calculating the volume of a solid of revolution of a solid-state material when integrating along an axis "parallel" to the axis of revolution. This method models the resulting three-dimensional shape as a stack of an infinite number of discs of varying radius ...
The finite volume method (FVM) is a method for representing and evaluating partial differential equations in the form of algebraic equations. [1] In the finite volume method, volume integrals in a partial differential equation that contain a divergence term are converted to surface integrals, using the divergence theorem. These terms are then ...