We can use the first equation of motion, which is $v = u + at$, where $v$ is the final velocity, $u$ is the initial velocity, $a$ is the acceleration, and $t$ is the time.
Given that $v = 40.0 \, \mathrm{m/s}$, $u = 8.00 \, \mathrm{m/s}$, and $t = 3.33 \times
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