मराठी
कर्नाटक बोर्ड पी.यू.सी.पीयूसी विज्ञान इयत्ता ११

P the Particle P Shown in Figure Has a Mass of 10 Mg and a Charge of −0⋅01 µC. Each Plate Has a Surface Area 100 Cm2 on One Side. What Potential Difference V Should Be Applied to the Combination - Physics

Advertisements
Advertisements

प्रश्न

The particle P shown in figure has a mass of 10 mg and a charge of −0⋅01 µC. Each plate has a surface area 100 cm2 on one side. What potential difference V should be applied to the combination to hold the particle P in equilibrium?

बेरीज

उत्तर

The particle is balanced when the electrical force on it is balanced by its weight.

Thus,

`mg = qE`

`mg = q xx V^'/d.............(1)`

Here,

d = Separation between the plates of the capacitor

V' = Potential difference across the capacitor containing the particle

We know that the capacitance of a capacitor is given by

`C = (∈_0A)/d`

`⇒ d = (∈_0A)/c`

Thus, eq. (1) becomes

`mg = q xx V^' xx C/(∈_0A)`

`⇒ V^' = (mg∈_0A)/(q xx c)`

`⇒ V^' = (10^-6 xx 9.8 xx (8.85 xx 10^-12) xx (100 xx 10^-4))/((0.01 xx 10^-6) xx (0.04 xx 10^-6)`

`⇒ V^' = 21.68  "mV"`

Since the values of both the capacitors are the same,

`V = 2V = 2 xx 21.86 ≈ 43  "mV"`

shaalaa.com
  या प्रश्नात किंवा उत्तरात काही त्रुटी आहे का?
पाठ 9: Capacitors - Exercises [पृष्ठ १६६]

APPEARS IN

एचसी वर्मा Concepts of Physics Vol. 2 [English] Class 11 and 12
पाठ 9 Capacitors
Exercises | Q 21 | पृष्ठ १६६

संबंधित प्रश्‍न

A point charge +Q is placed at point O, as shown in the figure. Is the potential difference VAVB positive, negative or zero?


Take the potential of the point B in figure to be zero. (a) Find the potentials at the points C and D. (b) If a capacitor is connected between C and D, what charge will appear on this capacitor?


Show that electric potential at a point P, at a distance 'r' from a fixed point charge Q, is given by:
    `v=(1/(4pi∈_0))Q/r`.


Answer the following question.
The magnitude of the electric field (in NC – 1) in a region varies with the distance r(in m) as
E = 10r + 5
By how much does the electric potential increase in moving from point at r = 11 m to a point at r = 10 m.


Electric potential energy of two point charges q and q0 is ________.


If a positive charge moves opposite to the direction of the electric field, the field does _______ work on charge and potential energy ________.


It becomes possible to define potential at a point in an electric field because electric field ______.


From a point charge, there is a fixed point A. At A, there is an electric field of 500 V/m and potential difference of 3000 V. Distance between point charge and A will be ______.


A positively charged particle is released from rest in a uniform electric field. The electric potential energy of the charge ______.


A test charge is moved from lower potential point to a higher potential point. The potential energy of test charge will ______.


An electric dipole of moment `vec"p"` is placed in a uniform electric field `vec"E"`. Then ______.

  1. the torque on the dipole is `vec"p" xx vex"E"`
  2. the potential energy of the system is `vec"p" * vec"E"`
  3. the resultant force on the dipole is zero.

Choose the correct option.


If a conductor has a potential V ≠ 0 and there are no charges anywhere else outside, then ______.

  1. there must be charges on the surface or inside itself.
  2. there cannot be any charge in the body of the conductor.
  3. there must be charges only on the surface.
  4. there must be charges inside the surface.

The electric potential on the axis of an electric dipole at a distance ‘r from it’s centre is V. Then the potential at a point at the same distance on its equatorial line will be ______.


The potential difference between points B and E of the circuits is ______.

 


Share
Notifications

Englishहिंदीमराठी


      Forgot password?
Use app×