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Reliability Engineering 1st Edition Hoang Pham

  • SKU: BELL-236663256
Reliability Engineering 1st Edition Hoang Pham
$ 35.00 $ 45.00 (-22%)

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Reliability Engineering 1st Edition Hoang Pham instant download after payment.

Publisher: World Scientific
File Extension: PDF
File size: 25.97 MB
Pages: 344
Author: Hoang Pham
ISBN: 9789819812554, 9789819812547, 9789819812530, 9819812550, 9819812542, 9819812534
Language: English
Year: 2025
Edition: 1

Product desciption

Reliability Engineering 1st Edition Hoang Pham by Hoang Pham 9789819812554, 9789819812547, 9789819812530, 9819812550, 9819812542, 9819812534 instant download after payment.

Most products that influence our daily lives are becoming increasingly

complex. Reliability and statistical analytics play a vital role in business,

finance, and industry. On one hand, these tools enable organizations to

achieve better results and make fact-based decisions across various

domains. On the other hand, modern business is becoming more competitive and challenging due to global competition and the inherent complexity

of business operations.

This book features 18 articles selected from the International Journal

of Reliability, Quality and Safety Engineering (IJRQSE) over the past 30

years. These articles represent the major themes of the journal, focusing on

reliability, quality, and safety engineering. They are among the most cited

articles in the last three years, with each receiving at least 40 citations,

according to Crossref data.

Article #1, authored by Lin, Zuo, and Yam, presents new sequential

imperfect preventive maintenance (PM) models that consider both age

reduction and hazard rate adjustment. The authors developed methods to

determine the optimal PM schedule that minimizes the mean cost rate. In

Article #2, Pham and Zhang developed a software reliability model based

on a nonhomogeneous Poisson process (NHPP) to predict the number of

remaining errors in the software. They also created a software program to

facilitate the task of obtaining estimators for the model parameters. Article

#3, by Coit and Liu, focuses on methods to select components and redundancy levels to maximize system reliability within k-out-of-n subsystems,

subject to system-level constraints.

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