QUESTION PAPER
2025 BOARD EXAM
CBSE CLASS 12-PCB PHYSICS Board Paper 2025 — Set 1
2025
PHYSICS
CLASS 12-PCB
CBSE EXAMINATION PAPER-2025
PHYSICS
(Solved)
General Instructions :
Read the following instructions carefully and follow them :
- This question paper contains 17 questions. All questions are compulsory.
- This question paper is divided into 4 sections.
- Section A – questions number 1 to 9 are multiple choice questions
- Section B – questions number 10 to 11 are very short answer
- Section C – questions number 12 to 14 are short answer
- Section D – questions number 15 to 17 are long answer
- There is no overall choice given in the question paper. However, an internal choice has been provided in few questions.
- Use of calculator is NOT allowed.
Section A
Two wires P and Q are made of the same material. The wire Q has twice the diameter and half the length as that of wire P. If the resistance of wire P is R, the resistance of the wire Q will be:
A coil has 100 turns, each of area 0.05 m² and total resistance 1.5 Ω. It is inserted at an instant in a magnetic field of 90 mT, with its axis parallel to the field. The charge induced in the coil at that instant is:
Assertion (A): It is difficult to move a magnet into a coil of large number of turns when the circuit of the coil is closed.
Reason (R): The direction of induced current in a coil with its circuit closed, due to motion of a magnet, is such that it opposes the cause.
The given diagram exhibits the relationship between the wavelength of the electromagnetic waves and the energy of photon associated with them. The three points P, Q and R marked on the diagram may correspond respectively to :
A beaker is filled with water (refractive index 4/3) upto a height H. A coin is placed at its bottom. The depth of the coin, when viewed along the near normal direction, will be
Which of the following figures correctly represent the shape of curve of binding energy per nucleon as a function of mass number ?
When a p-n junction diode is forward biased
Assertion (A) : The deflection in a galvanometer is directly proportional to the current passing through it.
Reason (R) =: The coil of a galvanometer is suspended in a uniform radial magnetic field.
Assertion (A) : The potential energy of an electron revolving in any stationary orbit in a hydrogen atom is positive.
Reason (R) : The total energy of a charged particle is always positive.
Section B
In a diffraction experiment, the slit is illuminated by light of wavelength 600 nm. The first minimum of the pattern falls at an angle of 30°. Calculate the width of the slit.
Section C
Two batteries of emfs 3V & 6V and internal resistances 0.20Ω & 0.4Ω are connected in parallel. This combination is connected to a 4Ω resistor. Find :
i) the equivalent emf of the combination
ii) the equivalent internal resistance of the combination
iii) the current drawn from the combination
Answer the following giving reason :
(a) All the photo electrons do not eject with the same kinetic energy when monochromatic light is incident on a metal surface.
(b) The saturation current in case (a) is different for different intensity.
(c) If one goes on increasing the wavelength of light incident on a metal
surface, keeping its intensity constant, emission of photo electrons
stop at a certain wavelength for this metal.
(a) Draw circuit arrangement for studying V-I characteristics of a p-n junction diode.
(b) Show the shape of the characteristics of a diode.
(c) Mention two information that you can get from these characteristics.
Section D
(i) Consider three metal spherical shells A, B and C, each of radius R. Each shell is having a concentric metal ball of radius R/10. The spherical shells A, B and C are given charges +6q, —4q, and 14q respectively. Their inner metal balls are also given charges —2q, +8q and —10q respectively. Compare the magnitude of the electric fields due to shells A, B and C at a distance 3R from their centres.
(ii) A charge —6 μC is placed at the centre B of a semicircle of radius 5 cm, as shown in the figure. An equal and opposite charge is placed at point D at a distance of 10 cm from B. A charge +5 μC is moved from point ‘C’ to point ‘A’ along the circumference. Calculate the work done on the charge.
(i) (1) What are coherent sources ? Why are they necessary for observing a sustained interference pattern?
(2) Lights from two independent sources are not coherent. Explain.
(ii) Two slits 0.1 mm apart are arranged 1.20 m from a screen. Light of wavelength 600 nm from a distant source is incident on the slits.
(1) How far apart will adjacent bright interference fringes be on the screen ?
(2) Find the angular width (in degree) of the first bright fringe.
(i) Define a wavefront. An incident plane wave falls on a convex lens and gets refracted through it. Draw a diagram to show the incident and refracted wavefront.
(ii) A beam of light coming from a distant source is refracted by a spherical glass ball (refractive index 1.5) of radius 15 cm. Draw the ray diagram and obtain the position of the final image formed.
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