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boxes of equal size are resting on the floor. applying the same force on each box, you find that you can accelerate the first one 1 m/s2 the second 4m/s2, and the third 6 m/s2. what can you infer about the total mass of each box?

User Rahulbehl
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Final answer:

The different accelerations of the three boxes when the same force is applied suggest that the boxes have different masses; the box with the lowest acceleration has the largest mass.

Step-by-step explanation:

The question posed concerns the relationship between force, mass, and acceleration. This is a concept in physics, specifically described by Newton's second law of motion, which states that the force applied to an object is equal to the mass of the object times its acceleration (F=ma).

From the scenario given, since the same force is applied to each of the three boxes, and they accelerate at different rates (1 m/s2, 4 m/s2, and 6 m/s2), we can infer that the boxes must have different masses. The box that accelerates at 1 m/s2 is the heaviest, and the one that accelerates at 6 m/s2 is the lightest. This is because the same force will cause a lighter object to accelerate more than a heavier object.

User Averasko
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