Deck 17: Quality Management
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Deck 17: Quality Management
1
Statistical process control charts (SPC charts) are attributed to Shewhart.
True
2
ISO 9000 specifies quality processes rather than defect rates.
True
3
The development of acceptance sampling is attributed to the works of Taguchi and Ishikawa.
False
4
An important attribute of quality is conformance to specifications.
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5
Control charts are used to monitor the quality of a product before it is produced.
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6
The Japanese invented and implemented quality control techniques prior to World War II.
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7
Pareto charts show the frequency of problems that affect a process in descending order.
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8
An in-control process will always exhibit some common cause variation.
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9
The Cpk index may indicate a capable process even though the Cp index is unacceptable.
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10
Process control charts were adopted by the Japanese after World War II.
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11
ISO 9000 standards were first developed in the United States under the leadership of Joseph Juran.
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12
Special cause variation exists when the process produces observations that are not from the same population as the majority of the observations.
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13
A p-chart is a type of process control chart that can be used for plotting the proportion of nonconforming sampled items.
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14
A major goal in statistical quality control is the reduction of variation in a process.
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15
A moving range (MR) chart is appropriate to monitor variation when every single item is being inspected (n = 1) since the range (R) cannot be calculated.
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16
Quality control refers to methods used by organizations to ensure that their products and services meet customer expectations.
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17
If a single sample mean is 2.1 standard deviations above the centerline, the process is not in control.
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18
A process may be in a state of control even if one sample mean is more than two standard deviations above the centerline.
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19
Common cause variation does not indicate an out-of-control process.
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20
The presence of common cause variation is an indication that the process is out of control.
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21
The upper and lower control limits of an chart are typically set at plus or minus three standard errors from the centerline.
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22
If USL = 550, LSL = 540, μ = 545, and σ = 1.00, the Cp index is 1.67.
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23
Management wants a process to be in control and have a capability index at least equal to 1.33 (and ideally much more than 1.33).
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24
The Cp index equals the Cpk index if USL = 550, LSL = 540, μ = 543, and σ = 0.75.
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25
Deming thought that the majority of quality problems were traceable to faulty equipment.
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26
If you increase the size of the samples taken when using an chart, it is necessary to recalculate your control limits because the limits will be wider.
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27
In general terms, a capable process is one whose variability (σ) is small in relation to the distance between the centerline μ and the upper and lower specification limits.
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28
As a rule of thumb, if a process Cpk index is less than 1.00, the level of process capability is usually judged acceptable.
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29
If USL = 550, LSL = 540, μ = 545, and σ = 1.75, the process is highly capable.
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30
Deming stressed identifying the workers who contributed the most to poor quality.
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31
Quality management is characterized by focus on the customer and continual improvement.
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32
The Cp index equals the Cpk index if USL = 550, LSL = 540, μ = 545, and σ = 0.75.
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33
If USL = 550, LSL = 540, μ = 545, and σ = 0.4, the process is highly capable.
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34
In statistical process control, the Cpk index measures the separate distances between the centerline μ and the USL and LSL.
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35
A p-chart is a type of process control chart that is used for plotting the number of defects per unit produced.
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36
Fishbone diagrams were developed for the Japanese fishing industry.
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37
If you increase the size of the samples taken when using an chart, it is necessary to recalculate your control limits because the limits will be narrower.
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38
A process whose output distribution is stable over time is said to be in statistical control, regardless of whether the desired specifications are being met.
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39
The Cp index equals the Cpk index if USL = 550, LSL = 540, μ = 546, and σ = 1.25.
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40
A c-chart is based on the Poisson distribution.
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41
Which is not a true statement about the life and philosophy of W. Edwards Deming?
A)He taught quality control techniques to Japanese companies during the 1950s.
B)He lived a very long life and was a highly paid consultant past age 80.
C)He invented control charts and proposed the ISO 9000 standard.
D)He believed that poor quality is not primarily the fault of the workers.
A)He taught quality control techniques to Japanese companies during the 1950s.
B)He lived a very long life and was a highly paid consultant past age 80.
C)He invented control charts and proposed the ISO 9000 standard.
D)He believed that poor quality is not primarily the fault of the workers.
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42
The problem that is probably the hardest to identify from a control chart is:
A)mixture.
B)oscillation.
C)cycle.
D)trend.
A)mixture.
B)oscillation.
C)cycle.
D)trend.
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43
Which is an appropriate step in continuous quality improvement?
A)Taking measurements on a variable and keeping careful records
B)Posting quality banners or company flags where they are visible to all
C)Castigating the lazy employees for their shoddy workmanship
D)Sending employees to Motivation Camp taught by expensive consultants
A)Taking measurements on a variable and keeping careful records
B)Posting quality banners or company flags where they are visible to all
C)Castigating the lazy employees for their shoddy workmanship
D)Sending employees to Motivation Camp taught by expensive consultants
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44
Which is not a tool of statistical quality control?
A)Fishbone diagram
B)Pareto chart
C)Attribute control chart
D)Deming chart
A)Fishbone diagram
B)Pareto chart
C)Attribute control chart
D)Deming chart
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45
Control charts were an innovation attributed to:
A)Deming in the 1950s.
B)Shewhart in the 1920s.
C)Westinghouse in the 1960s.
D)Pacioli in the 1490s.
A)Deming in the 1950s.
B)Shewhart in the 1920s.
C)Westinghouse in the 1960s.
D)Pacioli in the 1490s.
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46
__________ and ___________ are well known for their statistical work related to customer satisfaction and the cost of quality.
A)Deming ; Shewhart
B)Harold; Kumar
C)Dodge; Romig
D)Taguchi; Ishikawa
A)Deming ; Shewhart
B)Harold; Kumar
C)Dodge; Romig
D)Taguchi; Ishikawa
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47
Quality is ultimately best assessed by:
A)trained statisticians.
B)quality control inspectors.
C)management.
D)customers.
A)trained statisticians.
B)quality control inspectors.
C)management.
D)customers.
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48
Attribute control charts would not be used to display the:
A)proportion of nonconforming parts.
B)sample range for a measured variable.
C)total number of nonconforming parts.
D)average number of nonconforming parts.
A)proportion of nonconforming parts.
B)sample range for a measured variable.
C)total number of nonconforming parts.
D)average number of nonconforming parts.
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49
Which of the following is not a characteristic of Total Quality Management?
A)Employee empowerment
B)Reduction of waste
C)Continuous improvement
D)Reducing the Cp index
A)Employee empowerment
B)Reduction of waste
C)Continuous improvement
D)Reducing the Cp index
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50
Which of the following is most likely the cause of a level shift in a SPC chart?
A)Tool wear
B)A new worker
C)Temperature fluctuations
D)Alternating samples from two machines
A)Tool wear
B)A new worker
C)Temperature fluctuations
D)Alternating samples from two machines
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51
The R chart is likely to reveal which problem?
A)Instability
B)Cycles
C)Level shift
D)Trend
A)Instability
B)Cycles
C)Level shift
D)Trend
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52
The development of acceptance sampling is attributed to the works of:
A)Deming and Shewhart.
B)Potter and Granger.
C)Dodge and Romig.
D) Taguchi and Ishikawa.
E) Harold
F) Dodge and Harry
A)Deming and Shewhart.
B)Potter and Granger.
C)Dodge and Romig.
D) Taguchi and Ishikawa.
E) Harold
F) Dodge and Harry
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53
Walter Shewhart was an American who studied the control charts that the Japanese had invented after World War II and brought those methods back to the United States during the 1980s.
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54
A control chart for the mean tells whether the product conforms to specifications.
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55
Likely reasons for inaccurate control limits would include which of the following?
A)The engineering parameter for variance is unknown.
B)The engineers were underpaid for their work.
C)There was insufficient preliminary sampling.
D)Process variation was not zero, as expected.
A)The engineering parameter for variance is unknown.
B)The engineers were underpaid for their work.
C)There was insufficient preliminary sampling.
D)Process variation was not zero, as expected.
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56
Control charts (SPC charts) are attributed to:
A)Deming.
B)Shewhart.
C)Juran.
D)Taguchi.
A)Deming.
B)Shewhart.
C)Juran.
D)Taguchi.
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57
Instability is most readily apparent on the:
A) chart.
B)R chart.
C)np chart.
D)I chart.
A) chart.
B)R chart.
C)np chart.
D)I chart.
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58
Quality experts would probably not recommend:
A)reducing variation.
B)using control charts.
C)placing blame for poor work.
D)identifying sources of variation.
A)reducing variation.
B)using control charts.
C)placing blame for poor work.
D)identifying sources of variation.
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59
Instability in a process is indicated when samples:
A)tend to alternate between high and low values.
B)drift slowly either upward or downward.
C)vary more than expected.
D)shift abruptly either above or below the centerline.
A)tend to alternate between high and low values.
B)drift slowly either upward or downward.
C)vary more than expected.
D)shift abruptly either above or below the centerline.
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60
In statistical process control, control charts are used to ensure that a process is stable and in control by detecting special cause variation.
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61
Ten samples of n = 5 were collected to construct an chart. The sample mean and range for each sample are shown in the table below. Calculate the empirical centerline for the chart.
A)210.5
B)206.9
C)205.3
D)208.2
A)210.5
B)206.9
C)205.3
D)208.2
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62
Find the Cpk index for a process with USL = 550, LSL = 540, μ = 543, and σ = 0.75.
A)1.33
B)2.22
C)1.25
D)1.75
A)1.33
B)2.22
C)1.25
D)1.75
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63
Statistical process control charts can measure:
A)the stability of the process.
B)the capability of a process.
C)both stability and capability.
A)the stability of the process.
B)the capability of a process.
C)both stability and capability.
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64
Find the Cpk index for a process with USL = 550, LSL = 540, μ = 544, and σ = 1.25.
A)1.33
B)2.22
C)1.07
D)1.75
A)1.33
B)2.22
C)1.07
D)1.75
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65
Find the Cp index for a process with USL = 550, LSL = 540, μ = 543, and σ = 0.75.
A)1.25
B)1.33
C)2.22
D)1.75
A)1.25
B)1.33
C)2.22
D)1.75
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66
A slow drift of measurements either up or down from the process centerline suggests a:
A)mixed process.
B)trend.
C)instability.
D)cycle.
A)mixed process.
B)trend.
C)instability.
D)cycle.
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67
Refer to the diagram below:
For this process, the Cp index would be:
A)less than one.
B)equal to one.
C)greater than one.

A)less than one.
B)equal to one.
C)greater than one.
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68
Which is not a characteristic of a p-chart?
A)It shows the number of defects per item being inspected.
B)It measures the fraction of nonconforming items in a sample.
C)It is based on the binomial distribution (or its normal approximation).
D)It will have varying control limits if the sample size is changing.
A)It shows the number of defects per item being inspected.
B)It measures the fraction of nonconforming items in a sample.
C)It is based on the binomial distribution (or its normal approximation).
D)It will have varying control limits if the sample size is changing.
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69
A level shift in a process is indicated when samples:
A)tend to alternate between high and low values.
B)drift slowly either upward or downward.
C)vary more than expected.
D)shift abruptly to a new mean.
A)tend to alternate between high and low values.
B)drift slowly either upward or downward.
C)vary more than expected.
D)shift abruptly to a new mean.
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70
Find the Cpk index for a process with USL = 550, LSL = 540, μ = 545, and σ = 0.75.
A)1.33
B)2.22
C)1.25
D)1.75
A)1.33
B)2.22
C)1.25
D)1.75
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71
Ten samples of n = 5 were collected to construct an chart. The sample mean and range for each sample are shown in the table below. Calculate the empirical lower and upper control limits for the chart. (You will need a table of control chart factors.)
A)196.46, 217.34
B)171.81, 241.39
C)188.03, 225.17
D)163.64, 250.56
A)196.46, 217.34
B)171.81, 241.39
C)188.03, 225.17
D)163.64, 250.56
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72
Ten samples of n = 5 were collected to construct an chart. The sample mean and range for each sample are shown in the table below. Calculate the empirical centerline for the R chart.
A)20.8
B)17.2
C)18.1
D)19.4
A)20.8
B)17.2
C)18.1
D)19.4
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73
Which statistician developed the 14 Points of Quality?
A)Juran
B)Deming
C)Taguchi
D)Ishikawa
A)Juran
B)Deming
C)Taguchi
D)Ishikawa
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74
Which is not a rule of thumb to indicate an out-of-control process on the chart?
A)Single point outside three sigma
B)Three of four successive points outside two sigma on the same side of the centerline
C)Four of five successive points outside one sigma on the same side of the centerline
D)Nine successive points on the same side of the centerline
A)Single point outside three sigma
B)Three of four successive points outside two sigma on the same side of the centerline
C)Four of five successive points outside one sigma on the same side of the centerline
D)Nine successive points on the same side of the centerline
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75
In manufacturing, if workers readjust the equipment after each sample, it would typically:
A)increase variation.
B)decrease variation.
C)widen the specification limits.
D)improve conformance to specifications.
A)increase variation.
B)decrease variation.
C)widen the specification limits.
D)improve conformance to specifications.
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76
Find the Cp index for a process with USL = 550, LSL = 540, μ = 545, and σ = 0.75.
A)1.25
B)1.33
C)2.22
D)1.75
A)1.25
B)1.33
C)2.22
D)1.75
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77
Is a process capable if USL = 550, LSL = 540, μ = 542, and σ = 1.25?
A)No, clearly not
B)No, but very close
C)Yes, just barely
D)Yes, highly capable
A)No, clearly not
B)No, but very close
C)Yes, just barely
D)Yes, highly capable
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78
Which is not a characteristic of instability?
A)Larger than normal amount of variation
B)Higher-than-expected frequencies in tails of the distribution of means
C)Often caused by untrained operators
D)Specification limits that are too narrow
A)Larger than normal amount of variation
B)Higher-than-expected frequencies in tails of the distribution of means
C)Often caused by untrained operators
D)Specification limits that are too narrow
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79
If the specification subgroup size is n = 4 and the known process parameters are ? = 2.75 and ? = .044, the control limits for the chart will be:
A)LCL = 2.684, UCL = 2.816.
B)LCL = 2.728, UCL = 2.772.
C)LCL = 2.618, UCL = 2.882.
D)LCL = 2.518, UCL = 2.998.
A)LCL = 2.684, UCL = 2.816.
B)LCL = 2.728, UCL = 2.772.
C)LCL = 2.618, UCL = 2.882.
D)LCL = 2.518, UCL = 2.998.
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80
Which is not characteristic of a trend?
A)Variance is essentially unchanged from sample to sample.
B)It is often due to mixing two batches of materials.
C)It is detectable on a control chart if enough samples are taken.
D)Rules of thumb can be established to detect it.
A)Variance is essentially unchanged from sample to sample.
B)It is often due to mixing two batches of materials.
C)It is detectable on a control chart if enough samples are taken.
D)Rules of thumb can be established to detect it.
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