The diagram below shows three masses at the corners of a square of sides d = 5.10 m. Here, m, = m, = m and m, = 5.10m where m = 2.00 kg. m, d m (a) What is the magnitude of the gravitational field at the center of the square due to these three masses? |m/s² (b) Suppose the two masses m, and m, are not equal. What value of m, will produce a gravitational field at the center of the square directed vertically down? kg

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The diagram below shows three masses at the corners of a square of sides d = 5.10 m. Here, m1 = m2 = m and m3 = 5.10m where m = 2.00 kg.

(a) What is the magnitude of the gravitational field at the center of the square due to these three masses?
_________m/s2

(b) Suppose the two masses m1 and m2 are not equal. What value of m1 will produce a gravitational field at the center of the square directed vertically down?
_________m/s2

The diagram below shows three masses at the corners of a square of sides d = 5.10 m. Here, m, = m, = m and m, = 5.10m where m = 2.00 kg.
m,
ma
d
m1
(a) What is the magnitude of the gravitational field at the center of the square due to these three masses?
|m/s2
(b) Suppose the two masses m, and m, are not equal. What value of m, will produce a gravitational field at the center of the square directed
vertically down?
kg
Transcribed Image Text:The diagram below shows three masses at the corners of a square of sides d = 5.10 m. Here, m, = m, = m and m, = 5.10m where m = 2.00 kg. m, ma d m1 (a) What is the magnitude of the gravitational field at the center of the square due to these three masses? |m/s2 (b) Suppose the two masses m, and m, are not equal. What value of m, will produce a gravitational field at the center of the square directed vertically down? kg
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