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3. During a game of ten-pin bowling, a player gives bowling ball an acceleration of 3 ms^-2 for 1.2 s. Assuming the bowling ball was accelerated from rest, calculate the final speed of the bowling ball.

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3. During a game of ten-pin bowling, a player gives bowling ball an acceleration of 3
ms^-2 for 1.2 s.
Assuming the bowling ball was accelerated from rest, calculate the final speed of
the bowling ball.

3. During a game of ten-pin bowling, a player gives bowling ball an acceleration of 3 ms^-2 for 1.2 s. Assuming the bowling ball was accelerated from rest, calculate the final speed of the bowling ball.

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RoryMaster · Tutor for 5 years

Answer

3.6 m/s

Explain

## Step1:<br />The problem refers to a bowling ball which begins from a static state and achieves acceleration due to a player's efforts. The final speed of the ball needs to be calculated. In physics, the formula to ascertain the final speed (\(v\)) when an object from rest accelerates (\(a\)) for a certain period (\(t\)) can be expressed as<br /> ### \(v = a \times t\)<br /><br />## Step2:<br />Following equation requires substituting assigned values to determine the final speed of the bowling ball.<br />Acceleration ascribed to the ball would be \(3 \, \text{m/s}^2\) and acceleration time is \(1.2 \, \text{s}\).<br />### \(v = 3 \, \text{m/s}^2 \times 1.2 \, \text{s} = 3.6 \, \text{m/s}\)<br /><br />Given the aforementioned facts, the final speed comes to as \(3.6 \, \text{m/s}\).
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