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PolarNik [594]
2 years ago
6

Winnebagel Corp. currently sells 30,000 motorhomes per year at $45,000 each, and 12,000 luxury motor coaches per year at $85,000

each. The company wants to introduce a new portable camper to fill out its product line; it hopes to sell 19,000 of these campers per year at $12,000 each. An independent consultant has determined that if Winnebagel introduces the new campers, it should boost the sales of its existing motorhomes by 4,500 units per year, and reduce the sales of its motor coaches by 900 units per year.
Required: What is the amount to use as the annual sales figure when evaluating this project?
a. $336,300,000 b. $354,000,000 c. $371,700,000 d. $507,000,000 e. $228,000,000
Business
1 answer:
pogonyaev2 years ago
4 0

Answer:

b. $354,000,000

Explanation:

Sales revenue from new portable campers     $228,000,000

(19,000 campers * $12,000)

Add: Increased revenue from motor homes    $202,500,000

(4,500 unit * $45,000 )

Less: Decreased revenue from Luxury             $76,500,000

motor coaches (900 unit * $85,000 )                <u>                          </u>

Annual sales figure when evaluating this      <u>$354,000,000</u>

project

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Answer:

c. increases

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As the production of donuts increases, the amount of beers that would be forgone in order to increase production of donuts rises.

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Explanation:

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Show that if the contribution to profit for trains is between $1.50 and $3, the current basis remains optimal. If the contributi
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Answer:

210

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Also, weekly revenues and costs can be expressed in terms of the decision variables x and y.

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Now the constraints are given as,

Finishing Constraint:

Each week, no more than 100 hours of finishing time may be used.

Carpentry Constraint:

Each week, no more than 80 hours of carpentry time may be used.

Demand Constraint:

Because of limited demand, at most 40 soldiers should be produced each week.

Combining the sign restrictions and with the objective function  and constraints,and yield the following optimization model:

Such that,

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From equation (1):

If x=0 in equation (1) then (0,100)

If y=0 in equation (1) then (50,0)

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If x=0 in equation (2) then (0,80)

If y=0 in equation (2) then (80,0)

From equation (3):

Equation (3) is the line passing through the point x=40.

Therefore, the given LPP has a feasible solution first image

The optimum solution for the given LPP is obtained as follows in the second image

The optimal solution to this problem is,

And the optimum values are  .

Let c be the contribution to profit by each train. We need to find the values of c for which the current, basis remain optimal. Currently c is 2, and each iso-profit line has the form

3x +  2y = constant

y = 3x/2 +constant/ 2

And so, each iso-profit line has a slope of  .

From the graph we can see that if a change in c causes the isoprofit lines to be flatter than the carpentry constraint, then the optimal solution will change from the current optimal solution to a new optimal solution, If the profit for each train is c, the slope of each isoprofit line will be.

-3/c

Because the slope of the carpentry constraint is –1, the isoprofit lines will be flatter than the carpentry constraint.

If,

-3/c<-1

c >3

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If the is oprofit lines are steeper than the finishing constraint, then the optimal solution will change from point B to point C. The slope of the finishing constraint is –2.

If,

-3/c < -2 or

C < 1.5

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