Sampling 4 pieces of precision-cut wire (to be used in computer assembly) every hour for the past 24 hours has produced the following results: Hour x R Hour Hour Hour R 0.85" 4.51" 1.66" 13 14 15 16 17 18 1 3.35" 0.76" 3.05" 0.58" 3.01" 19 20 21 22 23 24 3.10 1.18 2.65 1.13 2.83 1.26 2.79 1.09 3.02 1.01 2.65 1.08 9 10 11 3. 3.12 1.48 2.92 0.76 4 3.49 1.21 2.85 1.28 2.74 0.45 3.28 0.46 3.07 1.12 2.73 1.17 2.96 1.43 2.84 1.58 6 2.96 0.32 12 2.87 0.35 2.64 1.24 2.54 0.97 Based on the sampling done, the control limits for 3-sigma x chart are (round all intermediate calculations to three decimal places before proceeding with further calculations): Upper Control Limit (UCL;) = inches (round your response to three decimal places). %3D Lower Control Limit (LCL;) = inches (round your response to three decimal places). Based on the x-chart, the wire cutting process has been The control limits for the 3-sigma R-chart are (round all intermediate calculations to three decimal places before proceeding with further calculations): Upper Control Limit (UCLR) = inches (round your response to three decimal places). Lower Control Limit (LCLR) = inches (round your response to three decimal places). %3D Based on the R-chart, the wire cutting process has been

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Refer to Table S6.1 Factors for Computing Control Chart Limits (3 sigma) for this problem.
Sampling 4 pieces of precision-cut wire (to be used in computer assembly) every hour
for the past 24 hours has produced the following results:
Hour x
Hour
Hour
Hour
0.85"
19
20
21
22
23
24
.4.51"
1.66"
13
14
15
16
17
18
1
3.35"
0.76"
17
3.05"
0.58"
3.01"
3.10
1.18
8
2.65
1.13
2.83
1.26
2.79
1.09
3.12
1.48
2.92
0.76
3.02
1.01
2.65
1.08
0.45
3.28
0.46
10
11
12
4
3.49
1.21
2.85
1.28
2.74
3.07
1.12
2.73
1.17
2.96
1.43
2.84
1.58
6.
2.96
0.32
2.87
0.35
2.64
1.24
2.54
0.97
Based on the sampling done, the control limits for 3-sigma x chart are (round all
intermediate calculations to three decimal places before proceeding with further calculations):
Upper Control Limit (UCL;) =
inches (round your response to three decimal places).
Lower Control Limit (LCL;) =
inches (round your response to three decimal places).
Based on the x-chart, the wire cutting process has been
The control limits for the 3-sigma R-chart are (round all intermediate calculations to
three decimal places before proceeding with further calculations):
Upper Control Limit (UCLR) =
inches (round your response to three decimal places).
Lower Control Limit (LCLR) =
inches (round your response to three decimal places).
Based on the R-chart, the wire cutting process has been
Transcribed Image Text:Refer to Table S6.1 Factors for Computing Control Chart Limits (3 sigma) for this problem. Sampling 4 pieces of precision-cut wire (to be used in computer assembly) every hour for the past 24 hours has produced the following results: Hour x Hour Hour Hour 0.85" 19 20 21 22 23 24 .4.51" 1.66" 13 14 15 16 17 18 1 3.35" 0.76" 17 3.05" 0.58" 3.01" 3.10 1.18 8 2.65 1.13 2.83 1.26 2.79 1.09 3.12 1.48 2.92 0.76 3.02 1.01 2.65 1.08 0.45 3.28 0.46 10 11 12 4 3.49 1.21 2.85 1.28 2.74 3.07 1.12 2.73 1.17 2.96 1.43 2.84 1.58 6. 2.96 0.32 2.87 0.35 2.64 1.24 2.54 0.97 Based on the sampling done, the control limits for 3-sigma x chart are (round all intermediate calculations to three decimal places before proceeding with further calculations): Upper Control Limit (UCL;) = inches (round your response to three decimal places). Lower Control Limit (LCL;) = inches (round your response to three decimal places). Based on the x-chart, the wire cutting process has been The control limits for the 3-sigma R-chart are (round all intermediate calculations to three decimal places before proceeding with further calculations): Upper Control Limit (UCLR) = inches (round your response to three decimal places). Lower Control Limit (LCLR) = inches (round your response to three decimal places). Based on the R-chart, the wire cutting process has been
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