Consider the following job information. Each job must proceed sequentially through the different work areas, and eac area can work on only one job at a time. Sequence the jobs according to the (1) first-come, first-served rule, (2) earli- due date, and (3) critical ratio. Calculate the average lateness under each rule. Which rule performs best? Click the icon to view the job information (1) The FCFS sequence is A - B - C - D The average job lateness under the FCFS rule is 3.38 days (Enter your response rounded to two decimal places.) (2) The EDD sequence is C-A-D-8 The average job lateness under the EDD rule is days (Enter your response rounded to two decimal places) More Info Job ABCO А D Estimated Days Painting Assembly Packing Total Task Time 4.0 3.5 0.5 8.0 6.5 10.5 12.0 11.0 8055 6.5 7.0 3342 5505 3.5 40 2.5 5555 15 Days until Due 19 22 16 21 X

MATLAB: An Introduction with Applications
6th Edition
ISBN:9781119256830
Author:Amos Gilat
Publisher:Amos Gilat
Chapter1: Starting With Matlab
Section: Chapter Questions
Problem 1P
icon
Related questions
Question
K
Consider the following job information. Each job must proceed sequentially through the different work areas, and each
area can work on only one job at a time. Sequence the jobs according to the (1) first-come, first-served rule, (2) earlie-
due date, and (3) critical ratio. Calculate the average lateness under each rule. Which rule performs best?
Click the icon to view the job information
w an e
(1) The FCFS sequence is A - B
The average job lateness under the FCFS rule is 3.38 days (Enter your response rounded to two decimal places.)
(2) The EDD sequence is C-A-D-B
The average job lateness under the EDD rule is days (Enter your response rounded to two decimal places)
More Info
Estimated Days
Job Painting Assembly Packing
4.0
3.5
0.5
6.5
0.5
ABCD
0550
6.5
7.0
3342
5505
3.5
40
-C-D
2.5
5555
15
1.5
Print
Total Task Time
8.0
10.5
12.0
11.0
Done
Days until Due
19
22
16
21
X
er
Transcribed Image Text:K Consider the following job information. Each job must proceed sequentially through the different work areas, and each area can work on only one job at a time. Sequence the jobs according to the (1) first-come, first-served rule, (2) earlie- due date, and (3) critical ratio. Calculate the average lateness under each rule. Which rule performs best? Click the icon to view the job information w an e (1) The FCFS sequence is A - B The average job lateness under the FCFS rule is 3.38 days (Enter your response rounded to two decimal places.) (2) The EDD sequence is C-A-D-B The average job lateness under the EDD rule is days (Enter your response rounded to two decimal places) More Info Estimated Days Job Painting Assembly Packing 4.0 3.5 0.5 6.5 0.5 ABCD 0550 6.5 7.0 3342 5505 3.5 40 -C-D 2.5 5555 15 1.5 Print Total Task Time 8.0 10.5 12.0 11.0 Done Days until Due 19 22 16 21 X er
Expert Solution
steps

Step by step

Solved in 5 steps

Blurred answer
Similar questions
Recommended textbooks for you
MATLAB: An Introduction with Applications
MATLAB: An Introduction with Applications
Statistics
ISBN:
9781119256830
Author:
Amos Gilat
Publisher:
John Wiley & Sons Inc
Probability and Statistics for Engineering and th…
Probability and Statistics for Engineering and th…
Statistics
ISBN:
9781305251809
Author:
Jay L. Devore
Publisher:
Cengage Learning
Statistics for The Behavioral Sciences (MindTap C…
Statistics for The Behavioral Sciences (MindTap C…
Statistics
ISBN:
9781305504912
Author:
Frederick J Gravetter, Larry B. Wallnau
Publisher:
Cengage Learning
Elementary Statistics: Picturing the World (7th E…
Elementary Statistics: Picturing the World (7th E…
Statistics
ISBN:
9780134683416
Author:
Ron Larson, Betsy Farber
Publisher:
PEARSON
The Basic Practice of Statistics
The Basic Practice of Statistics
Statistics
ISBN:
9781319042578
Author:
David S. Moore, William I. Notz, Michael A. Fligner
Publisher:
W. H. Freeman
Introduction to the Practice of Statistics
Introduction to the Practice of Statistics
Statistics
ISBN:
9781319013387
Author:
David S. Moore, George P. McCabe, Bruce A. Craig
Publisher:
W. H. Freeman