curve shape - translation to russian
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curve shape - translation to russian

MATHEMATICAL FUNCTION HAVING A CHARACTERISTIC "S"-SHAPED CURVE OR SIGMOID CURVE
Sigmoid curve; Sigmoidal curve; Double sigmoid; S-shape curve; Double sigmoid curve; Sigmoids; S-shaped curve; Squashing function; S-curve (math); Sigmoid shaped; Sigmoid shape; S-shaped; Sigmoid-shape; Sigmoid-shaped; Sigmoidal function
  • Plot of the [[error function]]
  • Some sigmoid functions compared. In the drawing all functions are normalized in such a way that their slope at the origin is 1.
  • Inverted logistic S-curve to model the relation between wheat yield and soil salinity
  • The [[logistic curve]]

curve shape      

математика

форма кривой

knight's move         
IN GO, THE POSITIONAL QUALITIES OF A GROUP OF STONES
Good shape; Good shapes; Bad shape; Bad shapes; Bamboo joint; Knight's move
ход конём
knight's move         
IN GO, THE POSITIONAL QUALITIES OF A GROUP OF STONES
Good shape; Good shapes; Bad shape; Bad shapes; Bamboo joint; Knight's move

математика

ход конем

Definition

Bezier curve
<graphics> A type of curve defined by mathematical formulae, used in computer graphics. A curve with coordinates P(u), where u varies from 0 at one end of the curve to 1 at the other, is defined by a set of n+1 "control points" (X(i), Y(i), Z(i)) for i = 0 to n. P(u) = Sum i=0..n [(X(i), Y(i), Z(i)) * B(i, n, u)] B(i, n, u) = C(n, i) * u^i * (1-u)^(n-i) C(n, i) = n!/i!/(n-i)! A Bezier curve (or surface) is defined by its control points, which makes it invariant under any affine mapping (translation, rotation, parallel projection), and thus even under a change in the axis system. You need only to transform the control points and then compute the new curve. The control polygon defined by the points is itself affine invariant. Bezier curves also have the variation-diminishing property. This makes them easier to split compared to other types of curve such as Hermite or B-spline. Other important properties are multiple values, global and local control, versatility, and order of continuity. [What do these properties mean?] (1996-06-12)

Wikipedia

Sigmoid function

A sigmoid function is a mathematical function having a characteristic "S"-shaped curve or sigmoid curve.

A common example of a sigmoid function is the logistic function shown in the first figure and defined by the formula:

S ( x ) = 1 1 + e x = e x e x + 1 = 1 S ( x ) . {\displaystyle S(x)={\frac {1}{1+e^{-x}}}={\frac {e^{x}}{e^{x}+1}}=1-S(-x).}

Other standard sigmoid functions are given in the Examples section. In some fields, most notably in the context of artificial neural networks, the term "sigmoid function" is used as an alias for the logistic function.

Special cases of the sigmoid function include the Gompertz curve (used in modeling systems that saturate at large values of x) and the ogee curve (used in the spillway of some dams). Sigmoid functions have domain of all real numbers, with return (response) value commonly monotonically increasing but could be decreasing. Sigmoid functions most often show a return value (y axis) in the range 0 to 1. Another commonly used range is from −1 to 1.

A wide variety of sigmoid functions including the logistic and hyperbolic tangent functions have been used as the activation function of artificial neurons. Sigmoid curves are also common in statistics as cumulative distribution functions (which go from 0 to 1), such as the integrals of the logistic density, the normal density, and Student's t probability density functions. The logistic sigmoid function is invertible, and its inverse is the logit function.

What is the Russian for curve shape? Translation of &#39curve shape&#39 to Russian