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A Novel Probabilistic Approach Based on Trigonometric Function: Model, Theory with Practical Applications
by
Odhah, Omalsad Hamood
, El-Bagoury, Abd Al-Aziz Hosni
, Alshanbari, Huda M.
, Ahmad, Zubair
, Khan, Faridoon
in
Asymmetry
/ Estimators
/ Kurtosis
/ Monte Carlo method
/ Monte Carlo simulation
/ Probability distribution
/ Random variables
/ Skewness
/ Software
/ Statistical analysis
/ Trigonometric functions
/ Weibull distribution
2023
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A Novel Probabilistic Approach Based on Trigonometric Function: Model, Theory with Practical Applications
by
Odhah, Omalsad Hamood
, El-Bagoury, Abd Al-Aziz Hosni
, Alshanbari, Huda M.
, Ahmad, Zubair
, Khan, Faridoon
in
Asymmetry
/ Estimators
/ Kurtosis
/ Monte Carlo method
/ Monte Carlo simulation
/ Probability distribution
/ Random variables
/ Skewness
/ Software
/ Statistical analysis
/ Trigonometric functions
/ Weibull distribution
2023
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Do you wish to request the book?
A Novel Probabilistic Approach Based on Trigonometric Function: Model, Theory with Practical Applications
by
Odhah, Omalsad Hamood
, El-Bagoury, Abd Al-Aziz Hosni
, Alshanbari, Huda M.
, Ahmad, Zubair
, Khan, Faridoon
in
Asymmetry
/ Estimators
/ Kurtosis
/ Monte Carlo method
/ Monte Carlo simulation
/ Probability distribution
/ Random variables
/ Skewness
/ Software
/ Statistical analysis
/ Trigonometric functions
/ Weibull distribution
2023
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A Novel Probabilistic Approach Based on Trigonometric Function: Model, Theory with Practical Applications
Journal Article
A Novel Probabilistic Approach Based on Trigonometric Function: Model, Theory with Practical Applications
2023
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Overview
Proposing new families of probability models for data modeling in applied sectors is a prominent research topic. This paper also proposes a new method based on the trigonometric function to derive the updated form of the existing probability models. The proposed family is called the cotangent trigonometric-G family of distributions. Based on the cotangent trigonometric-G method, a new version of the Weibull model, namely, the cotangent trigonometric Weibull distribution, is studied. Certain mathematical properties of the cotangent trigonometric-G family are derived. The estimators of the cotangent trigonometric-G distributions are obtained via the maximum likelihood method. The Monte Carlo simulation study is conducted to assess the performances of the estimators. Finally, two applications from the health sector are considered to illustrate the cotangent trigonometric-G method. Based on seven evaluating criteria, it is observed that the cotangent trigonometric-G significantly improves the fitting power of the existing models.
Publisher
MDPI AG
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