X2. A charged plastic ball of mass 1.0 gram is suspended on a string in the presence of a uniform electric field as shown in figure below. When E = (3.0i+ 5.0j) x10³N/C, the ball is in equilibrium at 0 = 37°. Find (a) the charge on the ball and (b) the tension in the string. 8 E

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Chapter1: Units, Trigonometry. And Vectors
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A charged plastic ball of mass 1.0 gram is suspended on a string in the presence of a uniform 
electric field as shown in figure below. When E = (3.0i + 5.0j) x105N/C, the ball is in equilibrium at  = 
37o. Find (a) the charge on the ball and (b) the tension in the string.

X2. A charged plastic ball of mass 1.0 gram is suspended on a string in the presence of a uniform
electric field as shown in figure below. When E = (3.0i + 5.0j) x 10³N/C, the ball is in equilibrium at 0-
37°. Find (a) the charge on the ball and (b) the tension in the string.
10
12
Transcribed Image Text:X2. A charged plastic ball of mass 1.0 gram is suspended on a string in the presence of a uniform electric field as shown in figure below. When E = (3.0i + 5.0j) x 10³N/C, the ball is in equilibrium at 0- 37°. Find (a) the charge on the ball and (b) the tension in the string. 10 12
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