Knowing that: * flow L denotes an OK (sellable) output; flows C, E, I, and K denote NOK (scraped) lots. * the selling price of OK (sellable) output = 10 ($/lot). * the cost of NOK (scraped) lot = 1 ($/lot). * the input rates - for A and B - are 5 lot/hr and 15 lot/hr (respectively). For the previous manufacturing system, assume now that the service rate - for each Mi - is the following: M1 => µ1 = 4 lot/hr M2 => µ2= 6 lot/hr M3 => µ38 lot/hr M4 => µ4= 5 lot/hr calculate the value of incoming flows A and B so no Mi exceeds a Utilization (U) of 100%.
Knowing that: * flow L denotes an OK (sellable) output; flows C, E, I, and K denote NOK (scraped) lots. * the selling price of OK (sellable) output = 10 ($/lot). * the cost of NOK (scraped) lot = 1 ($/lot). * the input rates - for A and B - are 5 lot/hr and 15 lot/hr (respectively). For the previous manufacturing system, assume now that the service rate - for each Mi - is the following: M1 => µ1 = 4 lot/hr M2 => µ2= 6 lot/hr M3 => µ38 lot/hr M4 => µ4= 5 lot/hr calculate the value of incoming flows A and B so no Mi exceeds a Utilization (U) of 100%.
Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
ChapterMA: Math Assessment
Section: Chapter Questions
Problem 1.1MA
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The heat exchanger is a combination of two words ''Heat'' and ''Exchanger''. It is a mechanical device that is used to exchange heat energy between two fluids.
Question
![A
B
15%
M
M1
M2
5%
40%
D
20% E
G
20%
H
40%
M3
I 10%
60% F
J
90%
M4
K 15%
Knowing that:
* flow L denotes an OK (sellable) output; flows C, E, I, and K denote NOK (scraped) lots.
* the selling price of OK (sellable) output = 10 ($/lot).
* the cost of NOK (scraped) lot = 1 ($/lot).
* the input rates - for A and B - are 5 lot/hr and 15 lot/hr (respectively).
L
85%
For the previous manufacturing system, assume now that the service rate - for each Mi - is the following:
M1 = µ14 lot/hr
M2 => µ2= 6 lot/hr
M3 => µ3 = 8 lot/hr
M4 => µ4= 5 lot/hr
calculate the value of incoming flows A and B so no Mi exceeds a Utilization (U) of 100%.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F36cd4bff-29c2-4fc3-9530-bf5f1542e8e0%2Fdedf9c21-de8a-461d-ac23-9f72ec4a268b%2Fwtprts_processed.png&w=3840&q=75)
Transcribed Image Text:A
B
15%
M
M1
M2
5%
40%
D
20% E
G
20%
H
40%
M3
I 10%
60% F
J
90%
M4
K 15%
Knowing that:
* flow L denotes an OK (sellable) output; flows C, E, I, and K denote NOK (scraped) lots.
* the selling price of OK (sellable) output = 10 ($/lot).
* the cost of NOK (scraped) lot = 1 ($/lot).
* the input rates - for A and B - are 5 lot/hr and 15 lot/hr (respectively).
L
85%
For the previous manufacturing system, assume now that the service rate - for each Mi - is the following:
M1 = µ14 lot/hr
M2 => µ2= 6 lot/hr
M3 => µ3 = 8 lot/hr
M4 => µ4= 5 lot/hr
calculate the value of incoming flows A and B so no Mi exceeds a Utilization (U) of 100%.
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