﻿ 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 - Ray writers

# 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

Score: 0.33 of 1 pt 17 of 27 complete) ? HW Score: 34.22%, 17.11 of 50 pts Refer to Tab ma 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 R Hour Hour x R Hour 3.25 0.76 3.05 0.5313 3.21 0.90 19 4.51 1.66 2 3.10 13 8 2.75 1.18 1473 136 20 2.79 1.04 3 3.22 38 9 3.12 0.66 15 3.12 10 21 2.75 1.08 4 3.39 1.2610 2.95 1.33 16 2.40.55 223.38 0.51 5 3.17 1.12 11 2.83 1.12 17 2.76 1.43 23 3.04 1.58 6 2.96 0.42 12 2.87 0.45 18 2.84 1.34 24 2.74 0.97 Based on the sampling done, the control limits for 3-slgma x chart are (round all intermediate calcuiations to three decimal places before proceeding with further caiculations) Upper Control Limit (UCL Lower Control Limit (LCL Based on the x-chart, the wire cutting process has been iN CONTROL OR OUT inches (round your response to three decimal places) inches (round your response to three decimal places) CONTROL? 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) Lower Control Limit (LCL Based on the R-chart, the wire cutting process has been IN CONTROL OR OUT OF CONTROL? inches fround your response to three decimal places) Sample Size, n Mean Factor Upper Range, Lower Range inches fround your response to three decimal piaces) 1.880 1.023 0.729 0.577 0.483 0.419 0.373 0.337 0.308 0.266 3.268 2.574 2.282 2.115 2.004 1.924 1.864 1.816 0.076 0.136 0.184 0.223 0.284 12 1.716

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