QUESTION IMAGE
Question
a tennis ball is tossed into the air. the height, h(t), in feet, of the tennis ball is a function of time, t, in seconds, as shown in the table below
| t | h(t) |
|---|---|
| 0.5 | 20 |
| 1 | 32 |
| 1.5 | 36 |
| 2 | 32 |
| 2.5 | 20 |
| 3 | 0 |
which statement provides a correct interpretation of the average rate of change of this function from t = 1.5 to t = 3?
a. the average rate of change is 24, which means that the tennis ball was rising at an average speed of 24 ft/sec.
b. the average rate of change is 24, which means that the tennis ball was falling at an average speed of 24 ft/sec.
c. the average rate of change is -24, which means that the tennis ball was rising at an average speed of 24 ft/sec.
d. the average rate of change is -24, which means that the tennis ball was falling at an average speed of 24 ft/sec.
Step1: Recall average rate of change formula
The average rate of change of a function \( h(t) \) from \( t = a \) to \( t = b \) is given by \( \frac{h(b) - h(a)}{b - a} \). Here, \( a = 1.5 \), \( b = 3 \), \( h(1.5)=36 \), \( h(3)=0 \).
Step2: Calculate average rate of change
Substitute values into the formula: \( \frac{h(3)-h(1.5)}{3 - 1.5}=\frac{0 - 36}{1.5}=\frac{-36}{1.5}=-24 \).
Step3: Interpret the result
A negative average rate of change means the height is decreasing (falling) over time. The magnitude 24 means the average speed of falling is 24 ft/sec.
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D. The average rate of change is \(-24\), which means that the tennis ball was falling at an average speed of 24 ft/sec.