inverse transform technique - перевод на русский
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inverse transform technique - перевод на русский

INTEGRAL TRANSFORM USED IN VARIOUS BRANCHES OF MATHEMATICS
Abel Transform; Inverse Abel transform
  • A geometrical interpretation of the Abel transform in two dimensions. An observer (I) looks along a line parallel to the ''x'' axis a distance ''y'' above the origin. What the observer sees is the projection (i.e. the integral) of the circularly symmetric function ''f''(''r'') along the line of sight. The function ''f''(''r'') is represented in gray in this figure. The observer is assumed to be located infinitely far from the origin so that the limits of integration are ±∞.
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inverse transform technique      
метод обратного преобразования
inversion method         
  •  F_X(x)\geq y\}</math>.
  • Graph of the inversion technique from <math>x</math> to <math>F(x)</math>. On the bottom right we see the regular function and in the top left its inversion.
  • An animation of how inverse transform sampling generates normally distributed random values from uniformly distributed random values
  • Random numbers y<sub>i</sub> are generated from a uniform distribution between 0 and 1, i.e. Y ~ U(0, 1). They are sketched as colored points on the y-axis. Each of the points is mapped according to x=F<sup>−1</sup>(y), which is shown with gray arrows for two example points. In this example, we have used an exponential distribution. Hence, for x ≥ 0, the probability density is <math>\varrho_X(x) = \lambda e^{-\lambda \, x}</math> and the cumulative distribution function is <math>F(x) = 1 - e^{-\lambda \, x}</math>. Therefore, <math>x = F^{-1}(y) = - \frac{\ln(1-y)}{\lambda}</math>. We can see that using this method, many points end up close to 0 and only few points end up having high x-values - just as it is expected for an exponential distribution.
BASIC METHOD FOR PSEUDO-RANDOM NUMBER SAMPLING
Inversion method; Inverse transform sampling method; Inverse transform method; Inversetransform sampling method; Inversion sampling

общая лексика

метод инверсии

inverse transform method         
  •  F_X(x)\geq y\}</math>.
  • Graph of the inversion technique from <math>x</math> to <math>F(x)</math>. On the bottom right we see the regular function and in the top left its inversion.
  • An animation of how inverse transform sampling generates normally distributed random values from uniformly distributed random values
  • Random numbers y<sub>i</sub> are generated from a uniform distribution between 0 and 1, i.e. Y ~ U(0, 1). They are sketched as colored points on the y-axis. Each of the points is mapped according to x=F<sup>−1</sup>(y), which is shown with gray arrows for two example points. In this example, we have used an exponential distribution. Hence, for x ≥ 0, the probability density is <math>\varrho_X(x) = \lambda e^{-\lambda \, x}</math> and the cumulative distribution function is <math>F(x) = 1 - e^{-\lambda \, x}</math>. Therefore, <math>x = F^{-1}(y) = - \frac{\ln(1-y)}{\lambda}</math>. We can see that using this method, many points end up close to 0 and only few points end up having high x-values - just as it is expected for an exponential distribution.
BASIC METHOD FOR PSEUDO-RANDOM NUMBER SAMPLING
Inversion method; Inverse transform sampling method; Inverse transform method; Inversetransform sampling method; Inversion sampling
метод обратного преобразования
z-transformation         
MATHEMATICAL TRANSFORM WHICH CONVERTS SIGNALS FROM THE TIME DOMAIN TO THE FREQUENCY DOMAIN
Z transform; Laurent transform; Bilateral Z-transform; Bilateral z-transform; Z Transform; Z-domain; Z-transformation

математика

дискретное преобразование Лапласа

z-преобразование

transverse fault         
  • Down to down NEW
  • Spreading center and strips
  • Spreading centers constant
  • Spreading to Down NEW
  • Spreading to upper NEW
  • Upper to down NEW
  • Upper to upper
PLATE BOUNDARY WHERE THE MOTION IS PREDOMINANTLY HORIZONTAL
Transform-fault; Transform boundary; Transform fault boundary; Transform margin; Conservative plate boundaries; Conservative boundary; Transform faults; Transform Faults; Transform plate boundary; Transform plate; Transverse fault; Transform Margin; Transform Boundaries; Conservative plate boundary; Transform boundry; Transform Boundary; Strike-slip boundary

нефтегазовая промышленность

поперечный сброс

number-theoretic transform         
GENERALIZATION OF FOURIER TRANSFORM TO ANY RING
Number-theoretic transform; Number theoretic transform; Discrete weighted transform; Discrete Fourier transform (general)
теоретико-числовое преобразование
Laplace transform         
  • Pierre-Simon, marquis de Laplace
  • ''s''}}-domain equivalent circuits
THE INTEGRAL TRANSFORM ∫₀^∞ D𝑠 𝑓(𝑡)⁢EXP(−𝑠𝑡)
Laplace Transform; Laplace Transformation; S-plane; Laplace domain; Laplace transforms; S-domain; S domain; Laplace transformations; ℒ; Complex frequency; Complex frequency space; Fourier–Laplace transform; Fourier-Laplace transform; Partial fractions in Laplace transforms; Inverse Laplace transform of derivatives; S plane; Laplace transformation

общая лексика

преобразование Лапласа

inverse function         
  • The inverse of this [[cubic function]] has three branches.
  • Example of '''right inverse''' with non-injective, surjective function
FUNCTION THAT "REVERSES" ANOTHER FUNCTION: IF THE FUNCTION F APPLIED TO AN INPUT X GIVES A RESULT OF Y, THEN APPLYING ITS INVERSE FUNCTION G TO Y GIVES THE RESULT X, AND VICE VERSA. I.E., F(X) = Y IF AND ONLY IF G(Y) = X
Inverse (function); Inverse map; Inverse operation; Inverse (functions); Invertible function; Inverse operator; Inverse mapping; Inverse functions; Functional inverse; Left inverse function; Function inverse; The Inverse Operation; Inverse process; Inv (function prefix); Compositional inverse; Composition inverse; Anti-function; Antifunction; General inverse function; Partial inverse; Right inverse function

общая лексика

обратная функция

математика

функция обратная

inverse operator         
  • The inverse of this [[cubic function]] has three branches.
  • Example of '''right inverse''' with non-injective, surjective function
FUNCTION THAT "REVERSES" ANOTHER FUNCTION: IF THE FUNCTION F APPLIED TO AN INPUT X GIVES A RESULT OF Y, THEN APPLYING ITS INVERSE FUNCTION G TO Y GIVES THE RESULT X, AND VICE VERSA. I.E., F(X) = Y IF AND ONLY IF G(Y) = X
Inverse (function); Inverse map; Inverse operation; Inverse (functions); Invertible function; Inverse operator; Inverse mapping; Inverse functions; Functional inverse; Left inverse function; Function inverse; The Inverse Operation; Inverse process; Inv (function prefix); Compositional inverse; Composition inverse; Anti-function; Antifunction; General inverse function; Partial inverse; Right inverse function

математика

обратный оператор

inverse process         
  • The inverse of this [[cubic function]] has three branches.
  • Example of '''right inverse''' with non-injective, surjective function
FUNCTION THAT "REVERSES" ANOTHER FUNCTION: IF THE FUNCTION F APPLIED TO AN INPUT X GIVES A RESULT OF Y, THEN APPLYING ITS INVERSE FUNCTION G TO Y GIVES THE RESULT X, AND VICE VERSA. I.E., F(X) = Y IF AND ONLY IF G(Y) = X
Inverse (function); Inverse map; Inverse operation; Inverse (functions); Invertible function; Inverse operator; Inverse mapping; Inverse functions; Functional inverse; Left inverse function; Function inverse; The Inverse Operation; Inverse process; Inv (function prefix); Compositional inverse; Composition inverse; Anti-function; Antifunction; General inverse function; Partial inverse; Right inverse function

общая лексика

обратный процесс

Определение

transform fault
¦ noun Geology a strike-slip fault occurring at the boundary between two plates of the earth's crust.

Википедия

Abel transform

In mathematics, the Abel transform, named for Niels Henrik Abel, is an integral transform often used in the analysis of spherically symmetric or axially symmetric functions. The Abel transform of a function f(r) is given by

F ( y ) = 2 y f ( r ) r r 2 y 2 d r . {\displaystyle F(y)=2\int _{y}^{\infty }{\frac {f(r)r}{\sqrt {r^{2}-y^{2}}}}\,dr.}

Assuming that f(r) drops to zero more quickly than 1/r, the inverse Abel transform is given by

f ( r ) = 1 π r d F d y d y y 2 r 2 . {\displaystyle f(r)=-{\frac {1}{\pi }}\int _{r}^{\infty }{\frac {dF}{dy}}\,{\frac {dy}{\sqrt {y^{2}-r^{2}}}}.}

In image analysis, the forward Abel transform is used to project an optically thin, axially symmetric emission function onto a plane, and the inverse Abel transform is used to calculate the emission function given a projection (i.e. a scan or a photograph) of that emission function.

In absorption spectroscopy of cylindrical flames or plumes, the forward Abel transform is the integrated absorbance along a ray with closest distance y from the center of the flame, while the inverse Abel transform gives the local absorption coefficient at a distance r from the center. Abel transform is limited to applications with axially symmetric geometries. For more general asymmetrical cases, more general-oriented reconstruction algorithms such as algebraic reconstruction technique (ART), maximum likelihood expectation maximization (MLEM), filtered back-projection (FBP) algorithms should be employed.

In recent years, the inverse Abel transform (and its variants) has become the cornerstone of data analysis in photofragment-ion imaging and photoelectron imaging. Among recent most notable extensions of inverse Abel transform are the "onion peeling" and "basis set expansion" (BASEX) methods of photoelectron and photoion image analysis.

Как переводится inverse transform technique на Русский язык