Principles Of Operations Management
Principles Of Operations Management
11th Edition
ISBN: 9780135173930
Author: RENDER, Barry, HEIZER, Jay, Munson, Chuck
Publisher: Pearson,
Question
Book Icon
Chapter 10, Problem 30P

a)

Summary Introduction

To determine: The standard time for the operation.

Introduction: Time study is the basis that helps set the standard time; it would time a sample of the performance of the worker.

a)

Expert Solution
Check Mark

Answer to Problem 30P

Thestandard time is calculated as 85.56 minutes.

Explanation of Solution

Given information:

Fatigue factor is given as 10% and personal-time factor is 10%. Accuracy rate is ±5%. The observed time and performance rating for each element is given as follows:

Element Performance rating Observation (minutes)
1 2 3 4 5 6 7
Select correct mufflers 110% 4 5 4 6 4 15a 4
Remove old muffler 90% 6 8 7 6 7 6 7
Weld/install new muffler 105% 15 14 15 12 15 16 13
Check/inspect work 100% 3 4 24a 5 4 3 18a
Complete paperwork 130% 5 6 8 - 7 6 7

a refers to the fact that the employee has lengthy conversations with the boss (not job-related)

Formulae to calculate standard time:

Average time=Observationsn

Normal time=Average time×Performance rating

Standard time=Normal time1Allowance factor

Calculate normal time:

Element Performance rating Observation (minutes) Average time Normal time
1 2 3 4 5 6 7
Select correct mufflers 110% 4 5 4 6 4 15a 4 4.50 4.95
Remove old muffler 90% 6 8 7 6 7 6 7 6.71 6.04
Weld/install new muffler 105% 15 14 14 12 15 16 13 14.14 14.85
Check/inspect work 100% 3 4 24a 5 4 3 18a 3.80 3.80
Complete paperwork 130% 5 6 8 - 7 6 7 6.50 8.45

Excel worksheet:

Principles Of Operations Management, Chapter 10, Problem 30P , additional homework tip  1

Calculate the average time to select correct mufflers:

The average time is calculated by taking an average of the observation given, which is the summation of 4, 5, 4, 6, 4, and 4 and dividing the result by 6. Hence, the average is 4.5 minutes.

Average time=Observationn=4+5+4+6+4+46=276=4.50 minutes

Note: The observation with (Xa) should not be considered while calculating the average time.

Calculate the average time to remove the old muffler:

The average time is calculated by taking an average of the observation given, which is the summation of 6, 8, 7, 6, 7, 6, and 7 and dividing the result by 7. Hence, the average is 6.71 minutes.

Average time=Observationn=6+8+7+6+7+6+77=477=6.71 minutes

Calculate the average time to weld or install a new muffler:

The average time is calculated by taking an average of the observation given, which is the summation of 15, 14, 14, 12, 15, 16, and 13 and dividing the result by 7. Hence, the average is 14.14 minutes.

Average time=Observationn=15+14+14+12+15+16+137=997=14.14 minutes

Calculate the average time to check or inspect work:

The average time is calculated by taking an average of the observation given, which is the summation of 3, 4, 5, 4, and 3 and dividing the result by 5. Hence, the average is 3.80 minutes.

Average time=Observationn=3+4+5+4+35=195=3.80 minutes

Note: The observation with (Xa) should not be considered while calculating the average time.

Calculate the average time to complete paperwork:

The average time is calculated by taking an average of the observation given, which is the summation of 5, 6, 8, 7, 6, and 7 and dividing the result by 6. Hence, the average is 6.50 minutes.

Average time=Observationn=5+6+8+7+6+76=396=6.50 minutes

Calculate the normal time to select correct mufflers:

The normal time is calculated by multiplying the average time and performance rating. Average time is calculated as 4.50 minutes and performance rating is given as 110%. Hence, the normal time is 4.95 minutes.

Normal time=Average time×Performance rating=4.50×110%=4.50×1.1=4.95 minutes

Calculate the normal time to remove the old muffler:

The normal time is calculated by multiplying the average time and performance rating. Average time is calculated as 6.71 minutes and performance rating is given as 90%. Hence, the normal time is 6.04 minutes.

Normal time=Average time×Performance rating=6.71×90%=6.71×0.90=6.04 minutes

Calculate the normal time to weld or install a new muffler:

The normal time is calculated by multiplying the average time and performance rating. Average time is calculated as 14.14 minutes and performance rating is given as 105%. Hence, the normal time is 14.85 minutes.

Normal time=Average time×Performance rating=14.14×105%=14.14×1.05=14.85 minutes

Calculate the normal time to check or inspect work:

The normal time is calculated by multiplying the average time and performance rating. Average time is calculated as 3.80 minutes and performance rating is given as 100%. Hence, the normal time is 3.80 minutes.

Normal time=Average time×Performance rating=3.80×100%=3.80×1=3.80 minutes

Calculate the normal time to complete paperwork:

The normal time is calculated by multiplying the average time and performance rating. Average time is calculated as 6.50 minutes and performance rating is given as 130%. Hence, the normal time is 8.45 minutes.

Normal time=Average time×Performance rating=6.50×130%=6.50×1.3=8.45 minutes

Calculate the total normal time:

The normal time is calculated by multiplying the average time and performance rating. Average time is calculated as 6.50 minutes and performance rating is given as 130%. Hence, the normal time is 8.45 minutes.

Normal time=Sum of normal times=4.95+6.04+14.85+3.80+8.45=38.09 minutes

Normal time is calculated by adding the normal time to select correct mufflers, remove the old muffler, weld or install a new muffler, check or inspect work, and to complete paperwork.

Hence, the total normal time is 38.09 minutes.

Calculate the standard time:

The standard time is calculated by dividing the normal time with the value attained by subtracting the allowance factor from 1. Normal time is calculated as 38.09 minutes and allowance factor is calculated as the sum of fatigue factor, which is 10% and personal time factor, which is 10%.

Standard time=Normal time1Allowance factor=38.09 minutes1(0.10+0.10)=38.09 minutes10.20=47.6 minutes

Hence, the standard time is 47.6 minutes.

b)

Summary Introduction

To determine: The number of sample size.

Introduction: Thesample size is required to determine the number of observations that are necessary to find the true cycle time.

b)

Expert Solution
Check Mark

Answer to Problem 30P

Thesample size to select correct mufflers is 53, to remove the old muffler is 20, to weld or install a new muffler is 14, to check or inspect work is 75, and to complete paperwork is 40 samples.

Explanation of Solution

Given information:

Confidence level is 95% and accuracy is ±5%.

Element Performance rating Observation (minutes)
1 2 3 4 5 6 7
Select correct mufflers 110% 4 5 4 6 4 15a 4
Remove old muffler 90% 6 8 7 6 7 6 7
Weld/install new muffler 105% 15 14 15 12 15 16 13
Check/inspect work 100% 3 4 24a 5 4 3 18a
Complete paperwork 130% 5 6 8 - 7 6 7

a refers to the fact that the employee has lengthy conversation with the boss (not job-related)

Formulae to determine the required number of observation:

n=(zshx¯)2

n refers to number of observations required

z refers to the table value for confidence level

s refers to standard deviation

h refers to accuracy level

x¯ refers to average observed time

Determine the proper number of observations required:

Element Performance rating Observation (minutes) Average time s Sample
1 2 3 4 5 6 7
Select correct mufflers 110% 4 5 4 6 4 15a 4 4.50 0.836 53.1
Remove old muffler 90% 6 8 7 6 7 6 7 6.71 0.755 19.5
Weld/install new muffler 105% 15 14 14 12 15 16 13 14.14 1.345 13.9
Check/inspect work 100% 3 4 24a 5 4 3 18a 3.80 0.836 74.5
Complete paperwork 130% 5 6 8 - 7 6 7 6.50 1.048 40.0

Excel worksheet:

Principles Of Operations Management, Chapter 10, Problem 30P , additional homework tip  2

Calculate the standard deviation to select correct mufflers:

The standard deviation can be calculated by dividing two values. The first value can be calculated by adding the square of the value attained by subtracting the mean observed value from each observation. The second value can be attained by subtracting 1 from the number of samples and the result should be square rooted. Standard deviation to select correct mufflers is 0.836.

s=(Sample observationx¯)2n1=(44.5)2+(54.5)2+(44.5)2+(64.5)2+(44.5)2+(44.5)261=0.25+0.25+0.25+2.25+0.25+0.255

=3.55=0.7=0.836

Calculate standard deviation to remove old muffler:

The standard deviation can be calculated by dividing two values. The first value can be calculated by adding the square of the value attained by subtracting the mean observed value from each observation. The second value can be attained by subtracting 1 from the number of samples and the result should be square rooted. Standard deviation to remove old muffler is 0.755.

s=(Sample observationx¯)2n1=(66.71)2+(86.71)2+(76.71)2+(66.71)2+(76.71)2+(66.71)2+(76.71)271=0.5041+1.6641+0.0841+0.5041+0.0841+0.5041+0.08416

=3.42876=0.57145=0.755

Calculate standard deviation to weld or install new muffler:

The standard deviation can be calculated by dividing two values. The first value can be calculated by adding the square of the value attained by subtracting the mean observed value from each observation. The second value can be attained by subtracting 1 from the number of samples and the result should be square rooted. Standard deviation to weld or install new muffler is 1.345.

s=(Sample observationx¯)2n1=((1514.14)2+(1414.14)2+(1414.14)2+(1214.14)2+(1514.14)2+(1614.14)2+(1314.14)2)71=0.7396+0.0196+0.0196+4.5796+0.7396+3.4596+1.29966

=10.85726=1.809=1.345

Calculate standard deviation to check or inspect work:

The standard deviation can be calculated by dividing two values. The first value can be calculated by adding the square of the value attained by subtracting the mean observed value from each observation. The second value can be attained by subtracting 1 from the number of samples and the result should be square rooted. Standard deviation to check or inspect work is 0.836.

s=(Sample observationx¯)2n1=(33.80)2+(43.80)2+(53.80)2+(43.80)2+(33.80)251=0.64+0.04+1.44+0.04+0.644

=2.84=0.7=0.836

Calculate standard deviation to complete paperwork:

The standard deviation can be calculated by dividing two values. The first value can be calculated by adding the square of the value attained by subtracting the mean observed value from each observation. The second value can be attained by subtracting 1 from the number of samples and the result should be square rooted. Standard deviation to check or inspect work is 1.048.

s=(Sample observationx¯)2n1=(56.5)2+(66.5)2+(86.5)2+(76.5)2+(66.5)2+(76.5)261=2.25+0.25+2.25+0.25+0.25+0.255

=5.55=1.1=1.048

Calculate the sample size to select correct mufflers:

It is calculated by multiplying the z value of 1.96, the standard deviation that is given as 0.836, and dividing the resultant with the multiple of the accuracy level and the average observed time that is given as 0.05 and 4.5, respectively. Hence, the required number of observations is 53 samples.

n=(zshx¯)2=(1.96×0.8360.05×4.5)2=(1.638560.225)253 samples

Calculate the sample size to remove the old muffler:

It is calculated by multiplying the z value of 1.96, the standard deviation that is given as 0.755, and dividing the resultant with the multiple of the accuracy level and the average observed time that is given as 0.05 and 6.71, respectively. Hence, the required number of observations is 20 samples.

n=(zshx¯)2=(1.96×0.7550.05×6.71)2=(1.47980.3355)220 samples

Calculate the sample size to weld or install a new muffler:

It is calculated by multiplying the z value of 1.96, the standard deviation that is given as 1.345, and dividing the resultant with the multiple of the accuracy level and the average observed time that is given as 0.05 and 14.14, respectively. Hence, the required number of observations is 14 samples.

n=(zshx¯)2=(1.96×1.3450.05×14.14)2=(2.63620.707)214 samples

Calculate the sample size to check or inspect work:

It is calculated by multiplying the z value of 1.96, the standard deviation that is given as 0.836, and dividing the resultant with the multiple of the accuracy level and the average observed time that is given as 0.05 and 3.8, respectively. Hence, the required number of observations is 75 samples.

n=(zshx¯)2=(1.96×0.8360.05×3.8)2=(1.638560.19)275 samples

Calculate the sample size to complete paperwork:

It is calculated by multiplying the z value of 1.96, the standard deviation that is given as 1.048, and dividing the resultant with the multiple of the accuracy level and the average observed time that is given as 0.05 and 6.5, respectively. Hence, the required number of observations is 40 samples.

n=(zshx¯)2=(1.96×1.0480.05×6.5)2=(2.0540.325)240 samples

Hence, the standard time for the process is 47.6 minutes. The sample size to select correct mufflers are 53, to remove the old muffler is 20, weld or install a new muffler is 14, to check or inspect work is 75 samples, and to complete paperwork is 40 samples.

Want to see more full solutions like this?

Subscribe now to access step-by-step solutions to millions of textbook problems written by subject matter experts!
Students have asked these similar questions
FORMATIVE ASSESSMENT 1 Read the article below and answer ALL the questions Pick n Pay reveals strategy to restore its business 27 May 2024 [100 MARKS] Following a disappointing full year performance for FY24, Pick n Pay CEO Sean Summers has unveiled the new board- approved six-point strategy to restore the Group's core Pick n Pay supermarket business to profitability. PHASED APPROACH IMPLEMENTATION Leverage strength of partnerships Leadership and people 2 Reset the store estate 3 Improve offer to drive sales 4 Optimise operating model Leverage strength of partnerships Recapitalisation Pick n Pay Prod FY26 FY27 Before Tax break-even FY25 Halve Group H2 FY24 H1 FY25 H2 FY25 H1 FY26 H2 FY26 HI FY27 H2 FY27 KEY IMPACT AND/OR TARGETED OUTCOMES Appointing the right people, in the optimal roles, to Directly and indirectly impact revenue growth drivers and 1 drive sales and realise margin improvement 5 enhances gross and operating margins 2 Expected notable associated savings/loss avoidance…
With an enormous amount of data stored in databases and data warehouses, it is increasinglyimportant to develop powerful tools for analysis of such data and mining interestingknowledge from it. Data mining is a process of inferring knowledge from such huge data. Themain problem related to the retrieval of information from the World Wide Web is theenormous number of unstructured documents and resources, i.e., the difficulty of locating andtracking appropriate sources.  Your company is considering investing in a Human Resource Information System (HRIS).Briefly explain the strategies for justifying HRIS investments.
Your company is considering investing in a Human Resource Information System (HRIS).Briefly explain the strategies for justifying HRIS investments.
Knowledge Booster
Background pattern image
Similar questions
SEE MORE QUESTIONS
Recommended textbooks for you
Text book image
Principles of Management
Management
ISBN:9780998625768
Author:OpenStax
Publisher:OpenStax College
Text book image
Foundations of Business (MindTap Course List)
Marketing
ISBN:9781337386920
Author:William M. Pride, Robert J. Hughes, Jack R. Kapoor
Publisher:Cengage Learning
Text book image
Foundations of Business - Standalone book (MindTa...
Marketing
ISBN:9781285193946
Author:William M. Pride, Robert J. Hughes, Jack R. Kapoor
Publisher:Cengage Learning
Text book image
Understanding Management (MindTap Course List)
Management
ISBN:9781305502215
Author:Richard L. Daft, Dorothy Marcic
Publisher:Cengage Learning