Question: 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

Refer to Table S6.1 - Factors for ComputingRefer to Table S6.1 - Factors for ComputingRefer to Table S6.1 - Factors for Computing

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: Sample N Sample Mean Range (in.) (in.) 10.302 0.044 10.302 0.051 10.293 0.042 10.304 0.037 10.297 0.048 10.297 0.053 Sample Sample Mean (in.) Range (in.) 10.301 0.021 10.307 0.058 10.297 0.039 10.301 0.038 10.303 0.054 10.304 0.061 For the given data, the x = inches (round your response to four decimal places). For the given data, the x double overbarx nothing inches (round your response to four decimal places). Based on the sampling done, the control limits for 3-sigma x overbarx chart are: Upper Control Limit (UCL Subscript x overbarUCLx) nothing inches (round your response to four decimal places). Lower Control Limit (LCL Subscript x overbarLCLx) nothing inches (round your response to four decimal places). Based on the xoverbarx-chart, is one or more samples beyond the control limits? Yes NO For the given data, the Upper RoverbarR nothing inches (round your response to four decimal places). The control limits for the 3-sigma R-chart are: Upper Control Limit (UCL Subscript Upper RUCLR) nothing inches (round your response to four decimal places). Lower Control Limit (LCL Subscript Upper RLCLR) nothing inches (round your response to four decimal places). Based on the R-chart, is one or more samples beyond the control limits

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