b)Calculate the potential at the controid(point p) of the triangle. Potential at the centroid Give your answer to at least three significance digits. volts

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Please solve b. Use the following constants if necessary. Coulomb constant, k = 8.987×10^9 N⋅ m^2/C^2 . Vacuum permittivity, ϵ0 = 8.854×10^−12 F/m . Magnitude of the Charge of one electron, e = −1.60217662×10^−19 C . Mass of one electron, me = 9.10938356×10^−31 kg . Unless specified otherwise, each symbol carries their usual meaning. For example, μC means microcoulomb .
b)Calculate the potential at the controid(point p) of the triangle.
Potential at the centroid
Give your answer to at least three significance digits.
volts
Transcribed Image Text:b)Calculate the potential at the controid(point p) of the triangle. Potential at the centroid Give your answer to at least three significance digits. volts
a
a
93
92
a) Calculate how much work is required to set up the arrangement if the charges are initially infinitely far apart and were at rest.
(Hint: Use the relation between work done by external agent and total electric energy of the system) Here a = 16 cm, 6 = 8 cm
and the three charges are ql = 27 µC,q2 = 32 µC,.q3 = 33 µC
Transcribed Image Text:a a 93 92 a) Calculate how much work is required to set up the arrangement if the charges are initially infinitely far apart and were at rest. (Hint: Use the relation between work done by external agent and total electric energy of the system) Here a = 16 cm, 6 = 8 cm and the three charges are ql = 27 µC,q2 = 32 µC,.q3 = 33 µC
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