binary approximation - определение. Что такое binary approximation
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Что (кто) такое binary approximation - определение

THEORY OF GETTING ACCEPTABLY CLOSE INEXACT MATHEMATICAL CALCULATIONS
Approximation theory/Proofs; Chebyshev approximation; Approximation theory/proofs; Tchebyscheff approximation; Approximation Theory

Binary clock         
  • LEDs]] to get six decimal digits. There are two columns each for hours, minutes and seconds.
  • Binary large-scale electronic clock to indicate the time of day on 3 lines in hours, minutes, seconds on the face of the main railway station in St. Gallen, Switzerland. Time indicated is 9 o'clock 25 minutes 46 seconds.
  • Time Technology's Samui Moon binary-coded sexagesimal wristwatch. This clock reads 3:25.
  • Both clocks read 12:15:45.
CLOCK THAT DISPLAYS THE TIME OF DAY IN A BINARY FORMAT
Binary Clock; Binary Watch; Binary clocks; Binary time
A binary clock is a clock that displays the time of day in a binary format. Originally, such clocks showed each decimal digit of sexagesimal time as a binary value, but presently binary clocks also exist which display hours, minutes, and seconds as binary numbers.
Binary opposition         
PAIR OF RELATED TERMS OR CONCEPTS THAT ARE OPPOSITE IN MEANING
Binary order; Binary thinking; Binary oppositions; Binary pair; Opposition theory
A binary opposition (also binary system) is a pair of related terms or concepts that are opposite in meaning. Binary opposition is the system of language and/or thought by which two theoretical opposites are strictly defined and set off against one another.
Two-stream approximation         
DISCRETE ORDINATE APPROXIMATION IN WHICH RADIATION PROPAGATING ALONG ONLY TWO DISCRETE DIRECTIONS IS CONSIDERED
Two stream approximation (radiative transfer); Two-stream approximation (radiative transfer); Two-Stream Approximation
In models of radiative transfer, the two-stream approximation is a discrete ordinate approximation in which radiation propagating along only two discrete directions is considered. It was first used by Arthur Schuster in 1905.

Википедия

Approximation theory

In mathematics, approximation theory is concerned with how functions can best be approximated with simpler functions, and with quantitatively characterizing the errors introduced thereby. Note that what is meant by best and simpler will depend on the application.

A closely related topic is the approximation of functions by generalized Fourier series, that is, approximations based upon summation of a series of terms based upon orthogonal polynomials.

One problem of particular interest is that of approximating a function in a computer mathematical library, using operations that can be performed on the computer or calculator (e.g. addition and multiplication), such that the result is as close to the actual function as possible. This is typically done with polynomial or rational (ratio of polynomials) approximations.

The objective is to make the approximation as close as possible to the actual function, typically with an accuracy close to that of the underlying computer's floating point arithmetic. This is accomplished by using a polynomial of high degree, and/or narrowing the domain over which the polynomial has to approximate the function. Narrowing the domain can often be done through the use of various addition or scaling formulas for the function being approximated. Modern mathematical libraries often reduce the domain into many tiny segments and use a low-degree polynomial for each segment.