The bore size on a component to be used in assembly is a critical dimension. Samples of size 4 are collected and the sample average diameter and range are calculated. After 25 samples, we have 25 ΣΧ. = 107.5 25 ΣR = 12.5 The specifications on the bore size are 4.4±0.2 mm. The unit costs of scrap and rework are $2.40 and $0.75, respectively. The daily production rate is 1200. (a) Find the X- and R-chart control limits. (b) Assuming that the process is in control, estimate its standard deviation. (c) Find the proportion of scrap and rework. (d) Find the total daily cost of scrap and rework. (e) If the process average shifts to 4.5 mm, what is the impact on the proportion of scrap and rework produced?
The bore size on a component to be used in assembly is a critical dimension. Samples of size 4 are collected and the sample average diameter and range are calculated. After 25 samples, we have 25 ΣΧ. = 107.5 25 ΣR = 12.5 The specifications on the bore size are 4.4±0.2 mm. The unit costs of scrap and rework are $2.40 and $0.75, respectively. The daily production rate is 1200. (a) Find the X- and R-chart control limits. (b) Assuming that the process is in control, estimate its standard deviation. (c) Find the proportion of scrap and rework. (d) Find the total daily cost of scrap and rework. (e) If the process average shifts to 4.5 mm, what is the impact on the proportion of scrap and rework produced?
MATLAB: An Introduction with Applications
6th Edition
ISBN:9781119256830
Author:Amos Gilat
Publisher:Amos Gilat
Chapter1: Starting With Matlab
Section: Chapter Questions
Problem 1P
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Transcribed Image Text:The bore size on a component to be used in assembly is a critical dimension. Samples
of size 4 are collected and the sample average diameter and range are calculated.
After 25 samples, we have
25
ΣΧ. = 107.5
25
ΣR = 12.5
The specifications on the bore size are 4.4±0.2 mm. The unit costs of scrap and rework are
$2.40 and $0.75, respectively. The daily production rate is 1200.
(a) Find the X- and R-chart control limits.
(b) Assuming that the process is in control, estimate its standard deviation.
(c) Find the proportion of scrap and rework.
(d) Find the total daily cost of scrap and rework.
(e) If the process average shifts to 4.5 mm, what is the impact on the proportion of
scrap and rework produced?
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