An arrow flew at \( 11 \mathrm{~m} / \mathrm{s} \) for 10 seconds. What distance did it travel?
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To find the distance the arrow traveled, you can use the formula for distance, which is speed multiplied by time. In this case, the arrow flew at a constant speed of \( 11 \mathrm{~m/s} \) for \( 10 \) seconds. So, the distance \( d \) is calculated as follows: \[ d = \text{speed} \times \text{time} = 11 \, \mathrm{m/s} \times 10 \, \mathrm{s} = 110 \, \mathrm{m} \] Therefore, the arrow traveled a distance of \( 110 \, \mathrm{m} \). Now that you know the answer, let’s take a tiny detour into the world of archery! Did you know that the longest archery shot on record was over 2,200 feet? That's the length of more than seven football fields! Archery has evolved dramatically over the centuries, expanding from a survival skill in ancient times to a modern competitive sport. If you want to visualize projectile motion better, consider experimenting with a simple physics simulation app or website. These tools often allow you to adjust variables like speed and angle, showing you how they affect the distance traveled. A fun way to bring physics to life while sharpening your problem-solving skills!