Solve the problem.A person at the top of a 600 foot tall building drops a yellow ball. The height of the yellow ball is given by the equation
where h is measured in feet and t is the number of seconds since the yellow ball was dropped. A second person, in the same building but on a lower floor that is
from the ground, drops a white ball
after the yellow ball was dropped. The height of the white ball is given by the equation
src="https://sciemce.com/media/4/ppg__10707191909__f1q62g4.jpg" alt="" style="vertical-align: -4.0px;" /> where h is measured in feet and t is the number of seconds since the yellow ball was dropped. Find the time that the balls are the same distance above the ground and find this distance.
A. 5 sec; 200 ft
B. 4.5 sec; 276 ft
C. 4 sec; 344 ft
D. 5.5 sec; 116 ft
Answer: A
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A. x =
B. x =
C. x = (1 - y) tan (3y - 8)
D. x =
Simplify. Assume that variables can represent any value.
A. (z - 5)2
B.
C. - 5
D. - 5
Name the quadrant in which the point is located, or the axis on which it lies .(-19, -20)
A. Quadrant I B. Quadrant II C. Quadrant III D. Quadrant IV
You are given the graph of some function f defined on the indicated interval. Find the absolute maximum and the absolute minimum of f, if they exist.
?
?
f defined on
?
A. Absolute maximum value: 0.3; absolute minimum value: -6 B. Absolute maximum value: 0.3; absolute minimum value: -2 C. Absolute maximum value: -2; absolute minimum value: -6 D. Absolute maximum value: 0.3; absolute minimum value: 0