Given that the gravitational constant is G. Newton's universal law of gravitation states that the force of attraction between two masses M1 and M2 separation by a distance r is

a

\(Gr^2 M_1M_2\)

b

\(Gr M_1M_2\)

c

\(\frac{GM_1 M_2}{r^2}\)

d

\(\frac{GM_1 M_2}{r}\)

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c

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zetaboy360
10 years ago

The selected answer is wrong:

F is directly propotional to the product of the masses m1 and m2 and inveresly propotional to the square of their distance apart while G is the constant. Therefore,the correct answer is c.

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