Three point charges of + 2 µC, – 3 µC and – 3 µC are kept at the vertices A, B and C respectively - Sarthaks eConnect | Largest Online Education Community
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Consider a system of three charges q/3 , q/3 and - 2q/3 placed at points A, B and C , respectively, as shown in the figure. Take O to be the centre
![Two point charges 3µC and - 3µC are placed at points A and B, 5 cm apart - CBSE Class 12 Physics - Learn CBSE Forum Two point charges 3µC and - 3µC are placed at points A and B, 5 cm apart - CBSE Class 12 Physics - Learn CBSE Forum](https://ask.learncbse.in/uploads/db3785/original/2X/7/79e9009844bc59cd0984d8520b88c5a2728f7686.png)
Two point charges 3µC and - 3µC are placed at points A and B, 5 cm apart - CBSE Class 12 Physics - Learn CBSE Forum
Three charges equal to Q are placed at the three corners of a equilateral triangle of side a and a charge q at its centre.if the system is in equilibrium find the
Two charges 3 × 10^-8C and -2 × 10^-8C are 15 cm apart. At what point on the line joining the charges, the electric potential is zero? - Sarthaks eConnect | Largest Online Education Community
![Two point charges qA = 3 µC and qB = −3 µC are located 20 cm apart in vacuum. (a) What is the electric field at the midpoint O of the line Two point charges qA = 3 µC and qB = −3 µC are located 20 cm apart in vacuum. (a) What is the electric field at the midpoint O of the line](https://edurev.gumlet.io/ApplicationImages/Temp/6860014_9ddd62ef-a7a9-4eb3-98e2-00bbf58970c4_lg.png)
Two point charges qA = 3 µC and qB = −3 µC are located 20 cm apart in vacuum. (a) What is the electric field at the midpoint O of the line
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Coulomb's LawThree point charges lie along a straight line as shown in Figure, where q1 = 6.00 mu C, q2 = 1.50 mu C , and q3 = - 2.00 mu C .
37. Two point charges 3*10power—8C and 2*10power—8C are located 15 CM apart in air. Find at what points on the line joining these charges the electric potential is zero. (Take potential at
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