A small mass charged sphere (q= 3 µC) is attached by an insulating string to the surface of a very large conductor with a surface charge density of a = 30 µC. Given that the string makes an angle with the surface equal to 30 degrees, find the tension (in N) in the string, use a = 8.8542x10 2 F-m=1. !!

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A small mass charged sphere (q= 3 µC) is attached by an insulating string to the surface of a very large conductor with
a surface charge density of o = 30 µC. Given that the string makes an angle with the surface equal to 30 degrees, find
the tension (in N) in the string, use a = 8.8542x10- F-m.
String
Transcribed Image Text:A small mass charged sphere (q= 3 µC) is attached by an insulating string to the surface of a very large conductor with a surface charge density of o = 30 µC. Given that the string makes an angle with the surface equal to 30 degrees, find the tension (in N) in the string, use a = 8.8542x10- F-m. String
Pattempt375823&cmid%3D89388&page%3D1
A small mass charged sphere (q= 3 µC) is attached by an insulating string to the surface of a very large conductor with
a surface charge density of o = B0 µC. Given that the string makes an angle with the surface equal to 30 degrees, find
the tension (in N) in the string. use & =88542x1074 F- mi.
6
on
String
Seleg one
A 3049
8 10.16
Transcribed Image Text:Pattempt375823&cmid%3D89388&page%3D1 A small mass charged sphere (q= 3 µC) is attached by an insulating string to the surface of a very large conductor with a surface charge density of o = B0 µC. Given that the string makes an angle with the surface equal to 30 degrees, find the tension (in N) in the string. use & =88542x1074 F- mi. 6 on String Seleg one A 3049 8 10.16
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