In this paper, we introduce a new trigonometric family of continuous distributions called the sine Kumaraswamy-G family of distributions. It can be presented as a natural extension of the well-established sine-G family of distributions, with new perspectives in terms of applicability. We investigate the main mathematical properties of the sine Kumaraswamy-G family of distributions, including asymptotes, quantile function, linear representations of the cumulative distribution and probability density functions, moments, skewness, kurtosis, incomplete moments, weighted moments and order statistics. Then, we focus our attention on a special member of this family called the sine Kumaraswamy exponential distribution. The statistical inference for...
A generalized Laplace distribution using the Kumaraswamy distribution is introduced. Different struc...
<p>In this paper, a new generalization of the Kumaraswamy distribution namely, the Kumaraswamy Marsh...
In this paper, we introduce a new class of (probability) distributions, based on a cosine-sine trans...
In this paper, we introduce a new trigonometric family of continuous distributions called the sine K...
In this paper, we introduce a new family of univariate continuous distributions called the Gamma Kum...
Recent studies have highlighted the statistical relevance and applicability of trigonometric distrib...
This paper is devoted to the study of a new family of distributions based on a sine transformation. ...
In recent years, the trigonometric families of continuous distributions have found a place of choice...
Finding the best fitted distribution for data set becomes practically an important problem in world ...
Although there are many continuous distributions in the literature, only a handful take advantage of...
A new family of continuous probability distributions is proposed by using Kumaraswamy-G distribution...
This paper introduces a new family of continuous distributions called a Garhy generated family of di...
In this paper, we develop the new extended Kumaraswamy generated (NEKwG) family of distributions. It...
Copyright © 2014 El-Sayed A. El-Sherpieny, Mohamed A. Ahmed. This is an open access article distribu...
We introduce a new family of continuous distributions called the Kumaraswamy Marshal-Olkin generaliz...
A generalized Laplace distribution using the Kumaraswamy distribution is introduced. Different struc...
<p>In this paper, a new generalization of the Kumaraswamy distribution namely, the Kumaraswamy Marsh...
In this paper, we introduce a new class of (probability) distributions, based on a cosine-sine trans...
In this paper, we introduce a new trigonometric family of continuous distributions called the sine K...
In this paper, we introduce a new family of univariate continuous distributions called the Gamma Kum...
Recent studies have highlighted the statistical relevance and applicability of trigonometric distrib...
This paper is devoted to the study of a new family of distributions based on a sine transformation. ...
In recent years, the trigonometric families of continuous distributions have found a place of choice...
Finding the best fitted distribution for data set becomes practically an important problem in world ...
Although there are many continuous distributions in the literature, only a handful take advantage of...
A new family of continuous probability distributions is proposed by using Kumaraswamy-G distribution...
This paper introduces a new family of continuous distributions called a Garhy generated family of di...
In this paper, we develop the new extended Kumaraswamy generated (NEKwG) family of distributions. It...
Copyright © 2014 El-Sayed A. El-Sherpieny, Mohamed A. Ahmed. This is an open access article distribu...
We introduce a new family of continuous distributions called the Kumaraswamy Marshal-Olkin generaliz...
A generalized Laplace distribution using the Kumaraswamy distribution is introduced. Different struc...
<p>In this paper, a new generalization of the Kumaraswamy distribution namely, the Kumaraswamy Marsh...
In this paper, we introduce a new class of (probability) distributions, based on a cosine-sine trans...