The following table is a transportation matrix showing the profit ($) per unit realized by shipping from Plant i to Distributor j. The objective is to maximize profit while meeting the demand placed by each Distributor. There is no shipment between Plant 2 and Distributor 3. Plant 1 Plant 2 Plant 3 Demand Distributor 1 Distributor 2 Distributor 3 Supply 26 10 8 480 20 24 310 15 22 180 440 380 I 21 110 Let = number units shipped from Plant i to Distributor j Solve the transportation problem and use the result to fill the boxes below. All answers are equally weighted.
The following table is a transportation matrix showing the profit ($) per unit realized by shipping from Plant i to Distributor j. The objective is to maximize profit while meeting the demand placed by each Distributor. There is no shipment between Plant 2 and Distributor 3. Plant 1 Plant 2 Plant 3 Demand Distributor 1 Distributor 2 Distributor 3 Supply 26 10 8 480 20 24 310 15 22 180 440 380 I 21 110 Let = number units shipped from Plant i to Distributor j Solve the transportation problem and use the result to fill the boxes below. All answers are equally weighted.
Practical Management Science
6th Edition
ISBN:9781337406659
Author:WINSTON, Wayne L.
Publisher:WINSTON, Wayne L.
Chapter2: Introduction To Spreadsheet Modeling
Section: Chapter Questions
Problem 20P: Julie James is opening a lemonade stand. She believes the fixed cost per week of running the stand...
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The following table is a transportation matrix showing the profit ($) per unit realized by
shipping from Plant i to Distributor j. The objective is to maximize profit while meeting
the demand placed by each Distributor. There is no shipment between Plant 2 and
Distributor 3.
E
Plant 1
Plant 2
Plant 3
Demand
Distributor 1 Distributor 2 Distributor 3 Supply
26
8
480
20
310
15
180
440
10
24
22
380 I
21
110
C
G
Let i;= number units shipped from Plant i to Distributor j
Solve the transportation problem and use the result to fill the boxes
below.
All answers are equally weighted."
Transcribed Image Text:C
D
The following table is a transportation matrix showing the profit ($) per unit realized by
shipping from Plant i to Distributor j. The objective is to maximize profit while meeting
the demand placed by each Distributor. There is no shipment between Plant 2 and
Distributor 3.
E
Plant 1
Plant 2
Plant 3
Demand
Distributor 1 Distributor 2 Distributor 3 Supply
26
8
480
20
310
15
180
440
10
24
22
380 I
21
110
C
G
Let i;= number units shipped from Plant i to Distributor j
Solve the transportation problem and use the result to fill the boxes
below.
All answers are equally weighted.
![X
EU
THITE
888
8 #11 11
€
All answers are equally weighted.
Pri
Ter
a) At optimal solution:
21 = 5
31= 0
X
X
Slack at Plant 2 = 0
Slack at Plant 1 = 480
Slack at Plant 3 = 0
*12=
Maximum Profit = $
X22
132
x units
units
units
0
b) At optimal solution, how much unused capacity is available at each Plant?
Question Help: Message instructor
Submit Question
13 =
123
A
233
Enter an integer or decimal number [more]
0
11
0
180](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Ff3fb2678-363b-4b49-9fdf-72f65eb687c8%2F69ecb29f-5a56-467f-88d1-ea82d19be3fb%2Fmzxyx2fk_processed.jpeg&w=3840&q=75)
Transcribed Image Text:X
EU
THITE
888
8 #11 11
€
All answers are equally weighted.
Pri
Ter
a) At optimal solution:
21 = 5
31= 0
X
X
Slack at Plant 2 = 0
Slack at Plant 1 = 480
Slack at Plant 3 = 0
*12=
Maximum Profit = $
X22
132
x units
units
units
0
b) At optimal solution, how much unused capacity is available at each Plant?
Question Help: Message instructor
Submit Question
13 =
123
A
233
Enter an integer or decimal number [more]
0
11
0
180
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