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Sample Size , n Mean Factor, A Subscript 2 Upper Range, D Subscript 4 Lower Range, D Subscript 3 2 1 . 8 8 0

Sample
Size, n
Mean Factor,
A Subscript 2
Upper Range,
D Subscript 4
Lower Range,
D Subscript 3
2
1.880
3.268
0
3
1.023
2.574
0
4
0.729
2.282
0
5
0.577
2.115
0
6
0.483
2.004
0
7
0.419
1.924
0.076
8
0.373
1.864
0.136
9
0.337
1.816
0.184
10
0.308
1.777
0.223
12
0.266
1.716
0.284
pop-up content endsFor the givendata, the Definition
\table[[\table[[Sample],[Size,n
x double overbar
x =
inches (round your response to four decimalplaces).
Part 3
Based on the samplingdone, the control limits for 3-sigma
x overbar
x chartare:
Upper Control Limit (
UCL Subscript x overbar
UCLx)=
inches (round your response to four decimalplaces).
Part 4
Lower Control Limit (
LCL Subscript x overbar
LCLx)=
inches (round your response to four decimalplaces).
Part 5
Based on the
x overbar
x-chart, is one or more samples beyond the controllimits? Yes or No?
.
Part 6
For the givendata, the
Upper R overbar
R =
inches (round your response to four decimalplaces).
Part 7
The control limits for the 3-sigmaR-chart are:
Part 8
Upper Control Limit (
UCL Subscript Upper R
UCLR)=
inches (round your response to four decimalplaces).
Part 9
Lower Control Limit (
LCL Subscript Upper R
LCLR)=
inches (round your response to four decimalplaces).
Part 10
Based on theR-chart, is one or more samples beyond the controllimits? Yes or No?Refer to Table S6.1- Factors for Computing Control Chart Limits (3 sigma) for this problem.
Twelve samples, each containing five parts, were taken from a process that produces steel rods at Emmanual Kodzi's factory. The length of each rod in the samples was determined. The results were tabulated and sample means and ranges were computed. The results were:
\table[[Sample,\table[[Sample],[Mean (in.)]],Range (in.),Sample Sample Mean (in.) Range (in.),,],[1,14.804,0.033,7,14.803,0.041],[2,14.800,0.041,8,14.807,0.034],[3,14.793,0.034,9,14.797,0.027],[4,14.806,0.051,10,14.803,0.029],[5,14.797,0.031,11,14.801,0.039],[6,14.799,0.036,12,14.808,0.047]]
For the given data, the ?bar(x)=, inches (round your response to four decimal places Refer to Table S6.1- Factors for Computing Control Chart Limits (3 sigma) for this problem.
Twelve samples, each containing five parts, were taken from a process that produces steel rods at Emmanual Kodzi's factory. The length of
each rod in the samples was determined. The results were tabulated and sample means and ranges were computed. The results were:
For the given data, the ?bar(x)=, inches (round your response to four. decimal places).)
ALSO I just wanted to apologized about how I uploaded my question. Cheggs new way of uploading questions to verified experts is terrible!!!
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