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Anvisha [2.4K]
3 years ago
12

Bea T. Howen, a sophomore college student, lost her scholarship after receiving a D in her "Music Appreciation" course. She deci

ded to buy a snow plow to supplement her income during the winter months. It cost her $6312.50. Fuel and standard maintenance will cost her an additional $8.75 for each hour of use. Find the cost function C(x) associated with operating the snow plow for x hours. C(x)= If she charges $34.00 per hour write the revenue function R(x) for the amount of revenue gained from x hours of use. R(x)= Find the profit function P(x) for the amount of profit gained from x hours of use. P(x)= How many hours will she need to work to break even? hours
Mathematics
1 answer:
mihalych1998 [28]3 years ago
3 0

Answer:

(a)\ C(x) = 6312.50 + 8.75x

(b)\ R(x) = 34x

(c)\ P(x) = 6312.50  -25.25x

(d)\ Break\ Even = 250\ hours

Step-by-step explanation:

Solving (a): The cost function.

Given

Cost = \$6312.50 --- cost of saxophone

Additional = \$8.75 per hour

The cost function is: sum of the cost of the saxophone and the extra cost per hour.

If an hour costs 8.75, then x hours will cost 8.75x

So, the cost function is:

C(x) = Cost + Additional

C(x) = 6312.50 + 8.75x

Solving (b): The revenue function

Given

Charges = \$34.00 per hour

The revenue function is the product of the unit charge by the number of hours.

If in an hour, she charges $34.00, then in x hours, she will cost 34x

So, the revenue function is:

R(x) = Charges * Hours

R(x) = 34.00 * x

R(x) = 34x

Solving (c): The profit function

This is the difference between the cost function and the revenue function

i.e.

P(x) = C(x) - R(x)

So, we have:

P(x) = 6312.50 + 8.75x - 34x

P(x) = 6312.50  -25.25x

Solving (d): The break even hours.

To do this, we simply equate the cost function and the revenue function, then solve for x

i.e.

C(x) =R(x)

6312.50 + 8.75x = 34x

Collect like terms

6312.50 =- 8.75x + 34x

6312.50 = 25.25x

Solve for x

x = \frac{6312.50}{25.25}

x = 250

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What is the distance from the origin (0,0) to the point (34,-78)
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Given coordinates (0,0)  and (34,-78).

\mathrm{Compute\:the\:distance\:between\:}\left(x_1,\:y_1\right),\:\left(x_2,\:y_2\right):\quad \sqrt{\left(x_2-x_1\right)^2+\left(y_2-y_1\right)^2}

We \ have\ x_1=0, x_2=34, y_1=0 \ and \ y_2=-78.

\mathrm{The\:distance\:between\:}\left(0,\:0\right)\mathrm{\:and\:}\left(34,\:-78\right)\mathrm{\:is\:}

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