Marketing research has found that at a price of $179.95 per unit, sales would be 175,000 ui week. If that price were to be raised by $10 per unit then sales would decrease by 5,000 units eacl Production costs for this item are $54 per unit with weekly overhead costs of $225,000. Let x represent the number of units produced and sold each week. 3) Find the linear demand function for the situation described. Price(x) Attach some meaning to the y-intercept of the line whose equation you've just generated.

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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Marketing research has found that at a price of $179.95 per unit, sales would be 175,000 units each
week.
If that price were to be raised by $10 per unit then sales would decrease by 5,000 units each week.
Production costs for this item are $54 per unit with weekly overhead costs of $225,000.
Let x represent the number of units produced and sold each week.
3) Find the linear demand function for the situation described. Price(x)
Attach some meaning to the y-intercept of the line whose equation you've just generated.
4) Find the revenue function. Revenue(x)
5) Find the linear cost function for the situation described. Cost(x)
Transcribed Image Text:Marketing research has found that at a price of $179.95 per unit, sales would be 175,000 units each week. If that price were to be raised by $10 per unit then sales would decrease by 5,000 units each week. Production costs for this item are $54 per unit with weekly overhead costs of $225,000. Let x represent the number of units produced and sold each week. 3) Find the linear demand function for the situation described. Price(x) Attach some meaning to the y-intercept of the line whose equation you've just generated. 4) Find the revenue function. Revenue(x) 5) Find the linear cost function for the situation described. Cost(x)
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