8) Using a torsion balance similar to the one used in the Cavendish Experiment, a group of scientists determined that the force of gravity between the small masses (q) and the large masses (Q) was 1.80 X 10-³ N when their separation distance (d) was 0.10 m. Suppose the separation distance (d) was then tripled to 0.30 m, what is the new force of gravity between q and Q? Explain your answer using words or proportionality equations.

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8) Using a torsion balance similar to the
one used in the Cavendish Experiment,
a group of scientists determined that
the force of gravity between the small Q
masses (q) and the large masses (Q)
was 1.80 X 10-³ N when their separation
distance (d) was 0.10 m. Suppose the
separation distance (d) was then tripled
to 0.30 m, what is the new force of
gravity between q and Q?
Explain your answer using words or
proportionality equations.
q
Mirror
Wire
0
9
Q
Light ray
Transcribed Image Text:8) Using a torsion balance similar to the one used in the Cavendish Experiment, a group of scientists determined that the force of gravity between the small Q masses (q) and the large masses (Q) was 1.80 X 10-³ N when their separation distance (d) was 0.10 m. Suppose the separation distance (d) was then tripled to 0.30 m, what is the new force of gravity between q and Q? Explain your answer using words or proportionality equations. q Mirror Wire 0 9 Q Light ray
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