EventsThe 4th International Electronic Conference on Applied Sciences
Published
This submission belongs to the session H. Applied Physical Science of the event The 4th International Electronic Conference on Applied Sciences
Published date
15 Nov, 2023
Academic Editor
author-avatarSantosh Kumar
Citation
Yahaya Zakari, Mojeed Abiodun Yunusa, Rashida Abdulrahman, Isah Muhammad, Aminu Suleiman Mohammed, Ahmed Audu, On the Efficiency of Ratio-product Estimator for Estimation of Finite Population Coefficient of Variation, in Proceedings of The 4th International Electronic Conference on Applied Sciences, 27 October–10 November 2023, MDPI: Basel, Switzerland, doi: 10.3390/ASEC2023-16263
Share
Email
Facebook
Twitter
LinkedIn

On the Efficiency of Ratio-product Estimator for Estimation of Finite Population Coefficient of Variation

Mojeed Abiodun Yunusa 2
Rashida Abdulrahman 3
Isah Muhammad 4
Aminu Suleiman Mohammed 1
1. Department of Statistics, Ahmadu Bello University, Zaria, Nigeria, Nigeria
2. Department of Mathematics, Usmanu Danfodiyo University, Sokoto, Nigeria
3. State College of Basic and Remedial Studies, Sokoto, Nigeria, Nigeria
4. Department of Statistics, Binyaminu Usman Polytechnic, Hadejia, Nigeria, Nigeria
5. Department of Mathematics, Usmanu Danfodiyo University, Sokoto, Nigeria, Nigeria
Abstract

Ratio product estimators have been proposed by several authors for the estimation of population mean, and population variance, but very few authors have proposed ratio product estimators for the estimation of population coefficient of variation. In this paper, we proposed a ratio product estimator for the estimation of the population coefficient of variation. The mean square error of the proposed estimator has been obtained up to the first order of approximation using the Taylor series technique. The numerical analysis was conducted and the results show that the proposed ratio product estimator is more efficient.

Keywords
Estimator
MSE
Coefficient of variation
Study variable
Finite population
Manuscript
Recent Advances in Modeling of Particle Dispersion
Exploring Different Drug Targets Responsible for the Inhibitory Activity of N, N'-Substituted Diamine Derivative in Leishmania