Two forces oppose one another by acting in opposite directions on a 10 kg object, one being a constant magnitude of 5 N and the other having a variable magnitude of 110t2 N. When the object comes to a stop, the second force becomes 5 Nas well. How much work is done by the second force to bring the object into static equilibrium?
Two forces oppose one another by acting in opposite directions on a 10 kg object, one being a constant magnitude of 5 N and the other having a variable magnitude of 110t2 N. When the object comes to a stop, the second force becomes 5 Nas well. How much work is done by the second force to bring the object into static equilibrium?
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
Transcribed Image Text:Two forces oppose one another
by acting in opposite directions
on a 10 kg object, one being a
constant magnitude of 5 N and
the other having a variable
magnitude of 110t2 N. When the
object comes to a stop, the
second force becomes 5 N as
well. How much work is done by
the second force to bring the
object into static equilibrium?
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