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Science (English Medium) इयत्ता १२ - CBSE Important Questions for Physics

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Find the electric field intensity due to a uniformly charged spherical shell at a point (i) outside the shell. Plot the graph of electric field with distance from the centre of the shell.

Appears in 1 question paper
Chapter: [1] Electric Charges and Fields
Concept: Uniformly Charged Infinite Plane Sheet and Uniformly Charged Thin Spherical Shell (Field Inside and Outside)

Find the electric field intensity due to a uniformly charged spherical shell at a point (ii) inside the shell. Plot the graph of electric field with distance from the centre of the shell.

Appears in 1 question paper
Chapter: [1] Electric Charges and Fields
Concept: Uniformly Charged Infinite Plane Sheet and Uniformly Charged Thin Spherical Shell (Field Inside and Outside)

Explain why, for a charge configuration, the equipotential surface through a point is normal to the electric field at that point

Appears in 1 question paper
Chapter: [1] Electric Charges and Fields
Concept: Applications of Gauss' Theorem

Obtain an expression for the work done to dissociate the system of three charges placed at the vertices of an equilateral triangle of side ‘a’ as shown below.

 

Appears in 1 question paper
Chapter: [1] Electric Charges and Fields
Concept: Principle of Superposition

State and explain Gauss’s law.

Appears in 1 question paper
Chapter: [1] Electric Charges and Fields
Concept: Gauss’s Law

Find out the outward flux to a point charge +q placed at the centre of a cube of side ‘a’. Why is it found to be independent of the size and shape of the surface enclosing it? Explain.

Appears in 1 question paper
Chapter: [1] Electric Charges and Fields
Concept: Electric Flux

Given a uniform electric field `vecE=5xx10^3hati`N/C, find the flux of this field through a square of 10 cm on a side whose plane is parallel to the y-z plane. What would be the flux through the same square if the plane makes a 30° angle with the x-axis ?

Appears in 1 question paper
Chapter: [1] Electric Charges and Fields
Concept: Electric Flux

An electric dipole of length 4 cm, when placed with its axis making an angle of 60° with a uniform electric field, experiences a torque of `4sqrt3`Nm. Calculate the potential energy of the dipole, if it has charge ±8 nC

Appears in 1 question paper
Chapter: [1] Electric Charges and Fields
Concept: Electric Dipole

Why do the electrostatic field lines not form closed loops?

Appears in 1 question paper
Chapter: [1] Electric Charges and Fields
Concept: Electric Field >> Electric Lines of Force

Two equal balls with equal positive charge 'q' coulombs are suspended by two insulating strings of equal length. What would be the effect on the force when a plastic sheet is inserted between the two?

Appears in 1 question paper
Chapter: [1] Electric Charges and Fields
Concept: Coulomb’s Law >> Scalar Form of Coulomb’s Law

Why do the electric field lines never cross each other?

Appears in 1 question paper
Chapter: [1] Electric Charges and Fields
Concept: Electric Field >> Electric Lines of Force

A point charge +10 μC is a distance 5 cm directly above the centre of a square of side 10 cm, as shown in the Figure. What is the magnitude of the electric flux through the square? (Hint: Think of the square as one face of a cube with edge 10 cm.) 

Appears in 1 question paper
Chapter: [1] Electric Charges and Fields
Concept: Gauss’s Law

Find the ratio of the potential differences that must be applied across the parallel and series combination of two capacitors C1 and C2 with their capacitances in the ratio 1 : 2 so that the energy stored in the two cases becomes the same.

Appears in 1 question paper
Chapter: [1] Electric Charges and Fields
Concept: Uniformly Charged Infinite Plane Sheet and Uniformly Charged Thin Spherical Shell (Field Inside and Outside)

Drive the expression for electric field at a point on the equatorial line of an electric dipole.

Appears in 1 question paper
Chapter: [1] Electric Charges and Fields
Concept: Electric Dipole

Depict the orientation of the dipole in (i) stable, (ii) unstable equilibrium in a uniform electric field.

Appears in 1 question paper
Chapter: [1] Electric Charges and Fields
Concept: Electric Dipole

Derive the expression for the electric potential due to an electric dipole at a point on its axial line.

Appears in 1 question paper
Chapter: [1] Electric Charges and Fields
Concept: Electric Dipole

Depict the equipotential surfaces due to an electric dipole. 

Appears in 1 question paper
Chapter: [1] Electric Charges and Fields
Concept: Electric Dipole

(i)Obtain the expression for the torque `vecτ` experienced by an electric dipole of dipole moment `vecP` in a uniform electric field, `vecE` .

(ii) What will happen if the field were not uniform?

Appears in 1 question paper
Chapter: [1] Electric Charges and Fields
Concept: Electric Dipole

Using Gauss's law in electrostatics, deduce an expression for electric field intensity due to a uniformly charged infinite plane sheet. If another identical sheet is placed parallel to it, show that there is no electric field in the region between the two sheets ?

Appears in 1 question paper
Chapter: [1] Electric Charges and Fields
Concept: Uniformly Charged Infinite Plane Sheet and Uniformly Charged Thin Spherical Shell (Field Inside and Outside)

A point object is placed on the principal axis of a convex spherical surface of radius of curvature R, which separates the two media of refractive indices n1 and n2 (n2 > n1). Draw the ray diagram and deduce the relation between the object distance (u), image distance (v) and the radius of curvature (R) for refraction to take place at the convex spherical surface from rarer to denser medium.

Appears in 1 question paper
Chapter: [1] Electric Charges and Fields
Concept: Uniformly Charged Infinite Plane Sheet and Uniformly Charged Thin Spherical Shell (Field Inside and Outside)
< prev  721 to 740 of 1590  next > 
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