

around the edges of the capacitor platesģ4.in both the positive and negative charges.In a charged capacitor, the energy resides In the region between the plates the magnitude of the electric field isģ3. The surface charge densities on the plates are +σ and -σ respectively. A parallel plate capacitor has two square plates with equal and opposite charges. The work done in placing a charge of 8 x 10-18 C on a condenser of capacity 100♟ isģ2. The energy stored in a condenser of capacity C which has been raised to a potential V is given byģ1. In a parallel plate capacitor, the capacity increases ifģ0. If in a parallel plate capacitor, which is connected to a battery, we fill dielectrics in whole space of its plates, then which of the following increases?Ģ9. Energy is stored in a capacitor in the form ofĢ8. On decreasing the distance between the plates Of a parallel plate capacitor, its capacitanceĢ7. Chapter 6: Electromagnetic Induction MCQĢ6.Chapter 4: Moving Charges And Magnetism MCQ.Chapter 1: Electric Charges and Fields MCQ.Dielectric constant of a medium is also known as When air is replaced by a dielectric medium of constant K, the maximum force of attraction between two charges separated by a distanceĢ5. may be at positive, zero or negative potentialĢ4.There are two metallic spheres of same radii but one is solid and the other is hollow, then

#Cl charge in coulomb free
The potential energy of the system is: (? o = permittivity of free space)Ģ0. Two charges of equal magnitude ‘q’ are placed in air at a distance ‘2a’ apart and third charge ‘-2q’ is placed at midpoint. The electrostatic potential energy of a charge of 5C at a point in the electrostatic field is 50 J. Then electrical potential energy of this system isġ8.

Q amount of electric charge is present on the surface 2 of a sphere having radius R. When one electron is taken towards the other electron, then the electric potential energy of systemġ7.

Increases from centre to surface decreases.The electric potential inside a conducting sphere Electrostatic Potential and Capacitance MCQ Answersġ.Electrostatic Potential And Capacitance MCQ Chapter 2.
