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Question
a ball is dropped from an unknown height. it takes 3.0s to reach the ground. how fast is it going when it reaches the ground? 0m/s 10m/s 30m/s 45m/s
Step1: Identify the kinematic - equation
We use the equation $v = v_0+at$. For a dropped object, the initial velocity $v_0 = 0\ m/s$, and the acceleration $a = g= 10\ m/s^{2}$ (approximate value of gravitational acceleration near the Earth's surface), and the time $t = 3.0\ s$.
Step2: Substitute the values
Substitute $v_0 = 0\ m/s$, $a = 10\ m/s^{2}$, and $t = 3.0\ s$ into the equation $v = v_0+at$. We get $v=0 + 10\times3$.
Step3: Calculate the final velocity
$v=30\ m/s$.
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C. 30m/s