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- [[File:SuZexD1mapT.png|400px|thumb| Fig.2. Map \(u\!+\!\mathrm i v=\mathrm{SuZex}(x\!+\!\mathrm i y)\)]] [[SuZex]] is [[superfunction]] of [[ArcLambertW]], denoted also as [[zex]], \(\math7 KB (1,076 words) - 18:25, 30 July 2019
- ...Fig.2.[[Complex map]] of function [[SuZex]]: \(~u\!+\!\mathrm i v= \mathrm{SuZex}(x_1+x\!+\!\mathrm i y)\)]] ...ght. Below, it is compared to similar maps for various approximations of [[SuZex]] with elementary functions. All the maps are supposed to be displayed in t14 KB (2,037 words) - 18:25, 30 July 2019
Page text matches
- [[SuZex]],25 KB (3,622 words) - 08:35, 3 May 2021
- «[[SuZex]]», «[[SuZex approximation]]»,18 KB (2,278 words) - 00:03, 29 February 2024
- Such a shortening is used in order to simplify creation of such names as [[SuZex]] ([[superfunction]] of zex) and [[AbelZex]] ([[Abel function]] of [[zex]]) [[SuZex]],8 KB (1,107 words) - 18:26, 30 July 2019
- | \(~ \mathrm{SuZex}(z)\) | [[Zex]], [[LambertW]], [[SuZex]], [[AuZex]]11 KB (1,565 words) - 18:26, 30 July 2019
- \(~T^n(z)\!=\! \mathrm{SuZex}\Big(n\!+\!\mathrm{AuZez}(z)\Big)~\) can be expressed through functions [[SuZex]] and [[AuZex]], which are, of course, [[superfunction]] and [[Abel functio14 KB (2,203 words) - 06:36, 20 July 2020
- ==[[SuZex]] and [[AuZex]]== ...treated as a [[transfer function]]. Its [[superfunction]] is denoted as [[SuZex]]. This function satisfies the [[transfer equation]]3 KB (499 words) - 18:25, 30 July 2019
- [[File:SuZexD1mapT.png|400px|thumb| Fig.2. Map \(u\!+\!\mathrm i v=\mathrm{SuZex}(x\!+\!\mathrm i y)\)]] [[SuZex]] is [[superfunction]] of [[ArcLambertW]], denoted also as [[zex]], \(\math7 KB (1,076 words) - 18:25, 30 July 2019
- // Coefficients of the Taylor expansion at zero of function [[SuZex]]. [[SuZex]], [[C++]], [[Superfunction]], [[zex]], [[LambertW]]3 KB (107 words) - 15:01, 20 June 2013
- ...Fig.2.[[Complex map]] of function [[SuZex]]: \(~u\!+\!\mathrm i v= \mathrm{SuZex}(x_1+x\!+\!\mathrm i y)\)]] ...ght. Below, it is compared to similar maps for various approximations of [[SuZex]] with elementary functions. All the maps are supposed to be displayed in t14 KB (2,037 words) - 18:25, 30 July 2019
- // Coefficients in the expansion of [[SuZex]] at large values of the argument, // SuZex(z-x_1)=a[0][0]/z + (a[1][0]+a[1][1]L)/z^2 + (a[2][0]+a[2][1] L + a[2][2]L^26 KB (180 words) - 15:01, 20 June 2013
- ...n \(Q_{20}\), used for the [[complex double]] implementation of function [[SuZex]]. [[Category:SuZex]]3 KB (139 words) - 18:47, 30 July 2019
- // [[SuZex.cin]] is the [[C++]] implementation of function [[SuZex]] <br> // See [[SuZex approximation]] for the details. <br>12 KB (682 words) - 07:06, 1 December 2018
- ...tation in [[C++]] of function [[AuZex]], with is [[inverse function]] of [[SuZex]] and the [[Abel function]] of function [[LambertW]]; the [[AuZex approxima // #include "SuZex.cin"3 KB (274 words) - 15:01, 20 June 2013
- [[Auzex]] is inverse function of [[SuZex]]; \(\mathrm{AuZex} = \mathrm{SuZex}^{-1}\) [[AuZex]] is [[Inverse function]] of [[SuZex]], so, in wide ranges of values of \(z\), the relations6 KB (899 words) - 18:44, 30 July 2019
- [[SuZex]] and [[AuZex]] of the [[superfunction]] and the [[Abel function]] of trans Asymptotically, SuZex behaves like a linear function while the real part of the argument is negat9 KB (1,320 words) - 11:38, 20 July 2020
- (6) \(~ ~ ~ \mathrm{SuTra}(z)=\ln\Big( \mathrm{SuZex}(z)\Big)\) functions [[SuZex]] and [[AuZex]], which are [[superfunction]] and the [[Abel function]] for9 KB (1,285 words) - 18:25, 30 July 2019
- ...is used also for many other [[superfunction]]s, including [[tetration]], [[SuZex]] function, [[Tania function]] and [[Shoka function]]. [[SuZex]]6 KB (1,009 words) - 18:48, 30 July 2019
- #include "SuZex.cin" z_type sutra0(z_type z){ return log(suzex(z));}1 KB (197 words) - 15:03, 20 June 2013
- ...sutra.cin]], that evaluates the same function [[SuTra]] through function [[SuZex]] // #include "SuZex.cin"3 KB (351 words) - 18:48, 30 July 2019
- [[SuZex]],15 KB (2,166 words) - 20:33, 16 July 2023