QUESTION IMAGE
Question
- a penny is thrown down a wishing well at a speed of 16 m/s. what will be the speed of the penny after 2.5 seconds?
$v_i = 16\\ m/s$
$v_f=?$
$a = 10\\ m/s^2$
$t = 2.5\\ seconds$
$v_f=v_i + at$
$v_f=16 + 10$
- a stone is dropped from a cliff and hits the ground 4.5 seconds later. how high is the cliff?
Step1: Identify the kinematic - equation
The kinematic equation for final velocity is $v_f=v_i + at$, where $v_f$ is the final velocity, $v_i$ is the initial velocity, $a$ is the acceleration, and $t$ is the time.
Step2: Substitute the given values
Given $v_i = 16\ m/s$, $a= 10\ m/s^2$, and $t = 2.5\ s$.
Substitute into the equation: $v_f=16+10\times2.5$.
Step3: Calculate the final velocity
$v_f=16 + 25=41\ m/s$.
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$41\ m/s$