Answer:
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Explanation:
If both clocks were synchronized before they were stopped, but one of them was moving fast across the table while the other remained motionless, it's likely that the moving clock experienced time dilation due to its velocity relative to the stationary clock. This effect is a consequence of Einstein's theory of special relativity.
Time dilation means that time passes slower for objects moving at high speeds relative to those at rest. So, the moving clock would have experienced less time than the stationary clock during its rapid movement across the table. As a result, when both clocks are stopped the next day, they would have different times, with the moving clock showing a slightly later time compared to the stationary one.