Business: total cost. Certain costs in business can be separated into two components: those that increase with volume and those that decrease with volume. For example, customer service becomes more expensive as its quality increases, but part of the increased cost is offset by fewer customer complaints. Katie’s Clocks determines that its cost of service, C ( x ) , in thousands of dollars, is modeled by C ( x ) = ( 2 x + 4 ) + ( 2 x − 6 ) , x > 6 , where x represents the number of “quality units.” Find the number of “quality units” that the firm should use in order to minimize its total cost of service.
Business: total cost. Certain costs in business can be separated into two components: those that increase with volume and those that decrease with volume. For example, customer service becomes more expensive as its quality increases, but part of the increased cost is offset by fewer customer complaints. Katie’s Clocks determines that its cost of service, C ( x ) , in thousands of dollars, is modeled by C ( x ) = ( 2 x + 4 ) + ( 2 x − 6 ) , x > 6 , where x represents the number of “quality units.” Find the number of “quality units” that the firm should use in order to minimize its total cost of service.
Business: total cost. Certain costs in business can be separated into two components: those that increase with volume and those that decrease with volume. For example, customer service becomes more expensive as its quality increases, but part of the increased cost is offset by fewer customer complaints.
Katie’s Clocks determines that its cost of service,
C
(
x
)
, in thousands of dollars, is modeled by
C
(
x
)
=
(
2
x
+
4
)
+
(
2
x
−
6
)
,
x
>
6
,
where x represents the number of “quality units.” Find the number of “quality units” that the firm should use in order to minimize its total cost of service.
Find the (exact) direction cosines and (rounded to 1 decimal place) direction angles of = (3,7,6)
Let a = (-1, -2, -3) and 6 = (-4, 0, 1).
Find the component of b onto a.
Forces of 9 pounds and 15 pounds act on each other with an angle of 72°.
The magnitude of the resultant force
The resultant force has an angle of
pounds.
* with the 9 pound force.
The resultant force has an angle of
with the 15 pound force.
It is best to calculate each angle separately and check by seeing if they add to 72°.
Chapter 2 Solutions
Calculus and Its Applications, Books a la Carte Plus MyLab Math Access Card Package (11th Edition)
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