iterative procedure - translation to ρωσικά
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iterative procedure - translation to ρωσικά

NUMERICAL METHOD IN WHICH THE N-TH APPROXIMATION OF THE SOLUTION IS OBTAINED ON THE BASIS ON THE (N-1) PREVIOUS APPROXIMATIONS
Iterative methods; Krylov subspace methods; Krylov subspace method; Iterative approximation; Iteration scheme; Iterative algorithm; Iterative procedure; Iteration algorithm; Iteration methods; Iterative convergence; Iterative solver; Direct method (computational mathematics); Stationary iterative method; Iteration method

iterative procedure         

математика

итерационная процедура

iteration method         

общая лексика

метод итерации

iteration algorithm         

математика

итерационный алгоритм

Ορισμός

iterative deepening
<algorithm> A graph search algorithm that will find the shortest path with some given property, even when the graph contains cycles. When searching for a path through a graph, starting at a given initial node, where the path (or its end node) has some desired property, a depth-first search may never find a solution if it enters a cycle in the graph. Rather than avoiding cycles (i.e. never extend a path with a node it already contains), iterative deepening explores all paths up to length (or "depth") N, starting from N=0 and increasing N until a solution is found. (2004-01-26)

Βικιπαίδεια

Iterative method

In computational mathematics, an iterative method is a mathematical procedure that uses an initial value to generate a sequence of improving approximate solutions for a class of problems, in which the n-th approximation is derived from the previous ones. A specific implementation of an iterative method, including the termination criteria, is an algorithm of the iterative method. An iterative method is called convergent if the corresponding sequence converges for given initial approximations. A mathematically rigorous convergence analysis of an iterative method is usually performed; however, heuristic-based iterative methods are also common.

In contrast, direct methods attempt to solve the problem by a finite sequence of operations. In the absence of rounding errors, direct methods would deliver an exact solution (for example, solving a linear system of equations A x = b {\displaystyle A\mathbf {x} =\mathbf {b} } by Gaussian elimination). Iterative methods are often the only choice for nonlinear equations. However, iterative methods are often useful even for linear problems involving many variables (sometimes on the order of millions), where direct methods would be prohibitively expensive (and in some cases impossible) even with the best available computing power.

Μετάφραση του &#39iterative procedure&#39 σε Ρωσικά