QUESTION IMAGE
Question
lara made the table below of the predicted values for h(t), the height, in meters, of a penny t seconds after it is dropped off of the back of the bleachers. to the nearest tenth of a second, how much time would it take the penny to hit the ground? height of penny over time
| t | h(t) |
|---|---|
| 0.1 | 1.951 |
| 0.2 | 1.804 |
| 0.3 | 1.559 |
| 0.4 | 1.216 |
| 0.5 | 0.775 |
| 0.6 | 0.236 |
| 0.7 | -0.401 |
| 0.8 | -1.136 |
Step1: Identify ground - height condition
The penny hits the ground when $h(t)=0$. Looking at the table, $h(t)$ changes sign between $t = 0.6$ and $t = 0.7$.
Step2: Determine closest value
Since $h(0.6)=0.236$ and $h(0.7)= - 0.401$, the value of $t$ for which $h(t)$ is closest to $0$ is $0.6$ seconds.
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$0.6$ seconds