difference table - перевод на русский
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difference table - перевод на русский

NUMERICAL METHODS FOR SOLVING DIFFERENTIAL EQUATIONS BY APPROXIMATING THEM WITH DIFFERENCE EQUATIONS
Finite Difference Method; Finite difference scheme; Finite difference schemes; Finite difference methods; Finite-difference approximation; Finite-difference method; Finite-difference methods
  • The Crank–Nicolson stencil.
  • stencil]] for the most common explicit method for the heat equation.
  • The finite difference method relies on discretizing a function on a grid.
  • The implicit method stencil.

difference table      

математика

таблица разностей

differential threshold         
AMOUNT THAT A STIMULUS MUST BE CHANGED TO BE DETECTED
Jnd; Differential threshold; Difference threshold; Just-noticable difference; Difference limen; Just noticeable difference; Just noticeable differences

общая лексика

дифференциальный [разностный] порог

порог различения

медицина

разностный порог

just noticeable difference         
AMOUNT THAT A STIMULUS MUST BE CHANGED TO BE DETECTED
Jnd; Differential threshold; Difference threshold; Just-noticable difference; Difference limen; Just noticeable difference; Just noticeable differences
[психол.] минимальная различаемая разница (между двумя стимулами)

Определение

multiplication table
¦ noun a list of multiples of a particular number, typically from 1 to 12.

Википедия

Finite difference method

In numerical analysis, finite-difference methods (FDM) are a class of numerical techniques for solving differential equations by approximating derivatives with finite differences. Both the spatial domain and time interval (if applicable) are discretized, or broken into a finite number of steps, and the value of the solution at these discrete points is approximated by solving algebraic equations containing finite differences and values from nearby points.

Finite difference methods convert ordinary differential equations (ODE) or partial differential equations (PDE), which may be nonlinear, into a system of linear equations that can be solved by matrix algebra techniques. Modern computers can perform these linear algebra computations efficiently which, along with their relative ease of implementation, has led to the widespread use of FDM in modern numerical analysis. Today, FDM are one of the most common approaches to the numerical solution of PDE, along with finite element methods.

Как переводится difference table на Русский язык