Home
Class 12
PHYSICS
[" Example "48" Three point charges of "...

[" Example "48" Three point charges of "0.1C" each are placed "],[" at the corners of an equilateral triangle with side "1m." If this "],[" system is supplied energy at the rate of "1kW," how much "],[" time will be required to move one of the charges on to the "],[" mid-point of the line joining the two others? "]

Promotional Banner

Similar Questions

Explore conceptually related problems

Three charges 0.1 coulomb each are placed on the corners of an equilateral triangle of side 1 m . If the energy is supplied to this system at the rate of 1 kW how much time would be required to move one to the charges on to the midpoint of the line joining the two ?

Three charges 0.1 coulomb each are placed on the corners of an equilateral triangle of side 1 m . If the energy is supplied to this system at the rate of 1 kW how much time would be required to move one ot the charges on to the midpoint of the line joining ther two ?

Three points charges are placed at the corners of an equilateral triangle of side L as shown in the figure:

Three charges of +0.1 C each are placed at the vertices of an equilateral triangle of each side 1m. If the energy is supplied at the rate of 1.0 kw, how many hours would be required to move one of the charges on to the mid point of the line joining the other two? Given =1/(4piepsilon_0) = 9xx 10^9 N ^2C^-2

At the corners of an equilateral tringle of side a =1 m, three point charge are placed (each of 0.1 C). If this system is supplied energy at the rate of 1 kW, then calculate the time required to move one of charges to the mid-point of the line joining the other two.

Three point charges of 2 mC each are kept at the vertices of an equilateral triangle of side 50 cm . If the system is supplied energy at the rate 2 kW, the time taken to move one of the charges to the mid point of the line joining the other two charge is

Three point charges 3nC, 6nC and 9nC are placed at the corners of an equilateral triangle of side 0.1m. The potential energy of the system is:

Three point charges 3nC, 6nC and 6nC are placed at the corners of an equilateral triangle of side 0.1 m. The potential energy of the system is