Theo dõi
Dr. Sandeep Kumar Maurya
Dr. Sandeep Kumar Maurya
Central University of South Bihar
Email được xác minh tại cusb.ac.in
Tiêu đề
Trích dẫn bởi
Trích dẫn bởi
Năm
A new class of distribution having decreasing, increasing, and bathtub-shaped failure rate
Maurya, S. K., Kaushik, A., Singh, S. K., & Singh, U.
Communications in Statistics-Theory and Methods 46 (20), 10359-10372, 2017
582017
A new method of proposing distribution and its application to real data
Sandeep K Maurya, A Kaushik, R K Singh, S K Singh, U Singh
Imperial Journal of Interdisciplinary Research 2 (6), 1331-1338, 2016
432016
A new class of exponential transformed Lindley distribution and its Application to Yarn Data
Sandeep K Maurya, A Kaushik, S K Singh, U Singh
International Journal of Statistics & Economics 18 (2), 135-151, 2017
302017
Poisson Generated Family of Distributions: A Review
SK Maurya, S Nadarajah
Sankhya B 83 (2), 484-540, 2021
282021
A New Extension of Lindley Distribution And Its Application
Sandeep Kumar Maurya, Pradip Kumar, Dinesh Kumar, Sanjay Kumar Singh, Umesh ...
Journal of Scientific Research 64 (2), 366-373, 2020
112020
Bayesian Estimation for GDUS Exponential Distribution Under Type-I Progressive Hybrid Censoring
Teena Goyal, Piyush Kant Rai, Sandeep Kumar Maurya
Annals of Data Science 7 (2), 307–345, 2020
112020
Classical and Bayesian studies for a new lifetime model in presence of type-II censoring
Teena Goyal, Piyush K Rai, Sandeep K Maurya
Communications for Statistical Applications and Methods 26 (4), 385-410, 2019
112019
One Parameter Decreasing Failure Rate Distribution
Maurya, S. K., Kumar, D., Singh, S. K., & Singh, U
International Journal of Statistics & Economics 19 (1), 120-138, 2018
112018
Estimations of the parameters of generalised exponential distribution under progressive interval type-I censoring scheme with random removals
A Kaushik, A Pandey, S K Maurya, U Singh, S K Singh
Austrian Journal of Statistics 46 (2), 33-47, 2017
72017
A New Right-Skewed Upside Down Bathtub Shaped Heavy-tailed Distribution and its Applications
SK Maurya, SK Singh, U Singh
Journal of Modern Applied Statistical Methods: JMASM 19 (1), 1-23, 2021
52021
A New Distribution with Monotone and Non-Monotone Shaped Failure Rate
Sandeep Kumar Maurya, Sanjay Kumar Singh, Umesh Singh
Journal of Applied Probability and Statistics 15 (1), 1-21, 2020
42020
Bayesian Estimation for Logarithmic Transformed Exponential Distribution under Different Loss Functions
Teena Goyal, Piyush Kant Rai, Sandeep Kumar Maurya
Journal of Statistics Applications & Probability 9 (1), 139-148, 2020
32020
Bayesian Estimation for Exponentiated Inverted Weibull distribution under Different Loss Functions
Teena Goyal, Piyush Kant Rai, Sandeep Kumar Maurya
International Journal of Pure and Applied Researches 2 (1), 1-13, 2019
32019
Comparative Study of New and Traditional Estimators of a New Lifetime Model
SK Maurya, SK Singh, U Singh
Journal of Modern Applied Statistical Methods 19 (1), 1-32, 2021
22021
Model Suitability Analysis of Survival Time to Ovarian Cancer Patients Data
Manoj Kumar, Sandeep K. Maurya, Sanjay K. Singh, Umesh Singh, Anurag Pathak
Journal of Statistics Applications & Probability 9 (3), 609-620, 2020
2*2020
A New Decreasing Failure Rate Distribution and Its Real Life Application
SK Maurya, T Goyal
International Journal of Statistics and Reliability Engineering 10 (2), 425-430, 2023
12023
One parameter bathtub model and its real life application
SK Maurya
Journal of Scientific Research 65 (3), 202-208, 2021
12021
Bayesian inference for exponentiated inverted Weibull distribution in presence of progressive type-II censoring
T Goyal, PK Rai, MS Panwar, SK Maurya
Statistica Applicata - Italian Jour nal of Applied Statistics, 1-33, 2024
2024
A NEW LIFETIME DISTRIBUTION WITH PROPERTIES AND APPLICATIONS
P Rai, KK Dubey, SK Maurya
International Journal of Applied Engineering & Technology 5 (4), 1142-1151, 2023
2023
An Application of Decreasing Failure Rate Distribution
P Rai, KK Dubey, SK Maurya
Journal of Survey in Fisheries Sciences 10 (1S), 5295-5299, 2023
2023
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