Punjab Physics Lecturer Exam 2021: Complete Paper Analysis & Topic-wise Breakdown
The Punjab Physics Lecturer recruitment exam conducted in 2021 (Booklet Series D) was a comprehensive test of a candidate's grasp on postgraduate-level Physics. Comprising 150 multiple-choice questions, the paper spanned across all major domains of the M.Sc. Physics syllabus.
For aspirants preparing for upcoming lecturer or master cadre exams, analyzing this paper is crucial for understanding the examiner's mindset, the weightage of different subjects, and the overall difficulty level. Here is a detailed, topic-wise analysis of the 2021 question paper.
1. Overall Difficulty Level
The overall difficulty level of the paper can be classified as Moderate to Tough.
- Direct & Conceptual Questions: Around 60-70 questions were straightforward, formula-based, or tested fundamental definitions (e.g., identifying logic gates, Bragg's Law, properties of Fourier transforms).
- Numerical & Application-Based: About 40-50 questions required calculations or deeper application of concepts (e.g., finding the radius of a curved path in a magnetic field, collision velocities, Laplace transformations).
- Advanced Theoretical Questions: The remaining questions tested deep theoretical knowledge, especially in Quantum Mechanics, Particle Physics, and Group Theory.
2. Topic-Wise Weightage Analysis
A striking feature of this paper was its balanced approach. Almost every core subject from the master's syllabus was touched upon. Here is an approximate breakdown of the question distribution:
| Subject / Topic Domain | Approx. Number of Questions | Difficulty Level |
|---|---|---|
| Mathematical Physics (Matrices, Fourier, Laplace, Group Theory) | 18 - 20 | Moderate |
| Quantum Mechanics (Wave functions, Potentials, Operators) | 15 - 18 | Moderate to Tough |
| Classical Mechanics & Relativity (Lagrangian, Hamiltonian, Poisson brackets) | 15 - 18 | Moderate |
| Solid State Physics (Lattices, Superconductivity, Specific Heat) | 16 - 19 | Moderate |
| Nuclear & Particle Physics (Decay, Shell Model, Quarks, Conservation Laws) | 15 - 18 | Easy to Moderate |
| Electronics & Devices (Op-Amps, Logic Gates, Diodes, Transistors) | 15 - 18 | Moderate |
| Atomic & Molecular Physics (Zeeman Effect, Raman Spectra, Lasers) | 14 - 16 | Tough |
| Electromagnetic Theory (Waveguides, Maxwell's Eq., Dipole Radiation) | 12 - 14 | Moderate to Tough |
| Statistical Mechanics & Thermodynamics | 8 - 10 | Moderate |
3. Key Subject Highlights
- Mathematical Physics: A surprisingly high emphasis was placed on Group Theory, Fourier Transforms, and Laplace Transforms. Candidates with a strong grip on these mathematical tools had a clear advantage.
- Classical Mechanics: Heavy focus on Hamiltonian and Lagrangian dynamics, Canonical transformations, and Poisson brackets rather than basic Newtonian mechanics. Special Theory of Relativity also had a few direct numericals.
- Atomic & Molecular Physics: This section leaned towards the difficult side, with specific questions on term symbols (L-S coupling), Lande g-factors, and fine/hyperfine splitting. Laser physics (He-Ne lasers, population inversion) was also prominently featured.
- Electronics: Very scoring for well-prepared candidates. Topics included Op-Amps (integrators, ideal characteristics), basic logic gates, Zener diodes, and MOSFETs.
- Nuclear & Particle Physics: Tested elementary particle properties (quarks, isospin, baryons) and nuclear models (liquid drop, shell model). Most questions here were theoretical and memory-based.
4. Preparation Strategy for Future Aspirants
- Do Not Skip Mathematical Physics: It forms the backbone of the exam. Ensure you are comfortable with differential equations, matrices, and transform techniques.
- Memorize Standard Results: Many questions on Waveguides, Solid State Physics (packing fractions, lattice parameters), and Statistical Mechanics can be solved in seconds if you have standard formulas memorized.
- Focus on Post-Graduation Topics: Unlike general science exams, this paper strictly adhered to the B.Sc./M.Sc. core syllabus. Deep dive into topics like Canonical Transformations, Quantum Perturbation, and Particle Physics.
- Practice Time Management: With 150 questions to solve, getting stuck on a long numerical can be costly. Identify and attempt the theoretical "read-and-tick" questions first (like those in Nuclear Physics and Electronics).
Conclusion: The 2021 Punjab Physics Lecturer paper was a standard, well-set examination that rewarded conceptual clarity and wide syllabus coverage over rote memorization of basic formulas. Consistent revision of advanced topics is the key to cracking this exam.
1. The L,S and J quantum numbers corresponding to the ground state electronic configuration of boron (Z=5) are
(a) L=1, S=1/2, J=5/2
(b) L=1, S=1/2, J=1/2
(c) L=1, S=3/2, J=1/2
(d) None of these
Answer: (b)
2. The Lande g-factor for the 3P1 level of an atom is
(a) 1/2
(b) 3/2
(c) 5/2
(d) 7/2
Answer: (b)
3. The hyperfine splitting of the spectral lines of an atom is due to
(a) The effect of external electromagnetic field
(b) The coupling between the spins of the electrons
(c) The coupling between the electron spin and the nuclear spin
(d) None of these
Answer: (c)
4. The perturbation due to the magnetic field is given by
(a) -μ . B
(b) μ . E
(c) -μ . E
(d) None of these
Answer: (a)
5. Sommerfield theory of free electron is a
(a) Classical theory
(b) Electrodynamic theory
(c) Relativity theory
(d) Quantum theory
Answer: (d)
6. Which is the Bragg's law condition in the reciprocal lattice
(a) 2K.G + G2 = 0
(b) 2K.G + K2 = 0
(c) 2K.G + G = 0
(d) None of these
Answer: (a)
7. The temperature below which certain materials are ferromagnetic and above which they are paramagnetic is called
(a) Weiss temperature
(b) Curie temperature
(c) Neel temperature
(d) None of these
Answer: (b)
8. If eccentricity of the equation of conic is 1, conic is
(a) Parabola
(b) Hyperbola
(c) Ellipse
(d) Circle
Answer: (a)
9. Number of coordinates required for specification of single particle in phase space are;
(a) 3
(b) 6
(c) 5
(d) 9
Answer: (b)
10. In Rutherford's scattering experiment, 105 particles are scattered at an angle of 2°. The number of α-particles scattered at an angle of 20° are;
(a) 100
(b) 10000
(c) 10
(d) 1000
Answer: (c)
11. The eccentricity of the earth's orbit is 0.0167. Ratio of maximum to minimum speed of earth in its orbit is;
(a) 1.03
(b) 2.02
(c) 1.53
(d) 1.95
Answer: (a)
12. If the proper length of rod is 100cm, the length of rod travelling with velocity 0.8c is
(a) 90cm
(b) 120 cm
(c) 70 cm
(d) 60 cm
Answer: (d)
13. If mo, p and V are rest mass, momentum and potential energy respectively of the particle and c is velocity of light, then Hamiltonian in relativistic mechanics may be expressed as;
(a) (p2c4 + mo2c4)1/2 + V
(b) (p4c2 + mo2c4)1/2 + V
(c) (p2c2 + mo2c4)1/2 + V
(d) (p2c2 + mo2c4)1/2 + V1/2
Answer: (c)
14. Hamiltonian for a conservative system where coordinate transformation is independent of time repersents
(a) Sum of kinetic and potential energy
(b) Kinetic energy
(c) Difference of kinetic and potential energy
(d) Potential energy
Answer: (a)
15. What is the electric flux through a closed surface surrounding an electric dipole
(a) Twice the charge enclosed
(b) Half the charge enclosed
(c) Double the charge
(d) Zero
Answer: (d)
16. The displacement current arises due to
(a) Positive charges only
(b) Negative charges only
(c) Both positive and negative charges
(d) Time varying electric field
Answer: (d)
17. Which one of the following cannot be explained by considering a harmonic approximation for the lattice vibrations in solids?
(a) Debye T3 law
(b) Einstein theory of specific heat
(c) Optical branches in lattices
(d) Thermal expansion
Answer: (d)
18. The packing fraction of hexagonal closed pack structure is
(a) 72%
(b) 74%
(c) 40%
(d) 100%
Answer: (b)
19. Bravais lattice consists of _____ space lattices.
(a) 11
(b) 12
(c) 13
(d) 14
Answer: (d)
20. The correct order of the packing efficiency in different types of unit cells is
(a) fcc < bcc < simple cubic
(b) fcc > bcc > simple cubic
(c) bcc < fcc < simple cubic
(d) None of these
Answer: (b)
21. What causes the depletion region,
(a) Barrier potential
(b) Diffusion
(c) Doping
(d) Ions
Answer: (b)
22. Silicon atoms combine into an orderly pattern called a
(a) Valence orbit
(b) Covalent bond
(c) Semiconductor
(d) Crystal
Answer: (d)
25. Nuclear megneton is smaller than the Bohr magneton by a factor of about
(a) 10
(b) 20
(c) 200
(d) 2000
Answer: (d)
26. As the energy of nucleon in a nucleus increases, the depth of the net nuclear potential V0
(a) Rapidly increases
(b) Rapidly decreases
(c) Slowly decreases
(d) Increases exponentially
Answer: (c)
27. In shell model it is assumed that the constituent parts of a nucleus move
(a) Independently
(b) Collectively
(c) Opposite to each other
(d) None of these
Answer: (a)
28. Pairing energy term appearing in the semi-imperials mass formula for the liquid drop model depends only on
(a) Atomic mass of nucleus M
(b) Only on mass number A
(c) Only on atomic number Z
(d) None of these
Answer: (b)
29. What are the conditions called, which are required for a signal to fulfil to be represented as Fourier series
(a) Dirichlet's conditions
(b) Gibbs phenomenon
(c) Fourier conditions
(d) Fourier phenomenon
Answer: (a)
30. What are the two types of Fourier series
(a) Trigonometric and exponential
(b) Trigonometric and logarithmic
(c) Exponential and logarithmic
(d) Trigonometric only
Answer: (a)
31. Find the Fourier transform of ejω0t
(a) δ(ω + ω0)
(b) 2πδ(ω + ω0)
(c) δ(ω - ω0)
(d) 2πδ(ω - ω0)
Answer: (d)
32. Find the inverse Fourier transform of δ(ω)
(a) 1/(2π)
(b) 2π
(c) 1/π
(d) π
Answer: (a)
33. Laplace of function f(t) is given by?
(a) F(s) = ∫-∞∞ f(t)e-stdt
(b) F(t) = ∫-∞∞ f(t)e-tdt
(c) f(s) = ∫-∞∞ f(t)e-stdt
(d) f(t) = ∫-∞∞ f(t)e-tdt
Answer: (a)
34. Find the Laplace transform of etsin(at)
(a) a / (a2 + (s+1)2)
(b) a / (a2 + (s-1)2)
(c) (s+1) / (a2 + (s+1)2)
(d) (s+1) / (a2 + (s+1)2)
Answer: (b)
35. Value of ∫-∞∞ etSin(t)Cos(t)dt=
(a) 0.5
(b) 0.75
(c) 0.2
(d) 0.71
Answer: (c)
36. Time domain function of s/(a2 + s2) is given by
(a) Cos(at)
(b) Sin(at)
(c) Cos(at) Sin(at)
(d) Sin(t)
Answer: (a)
37. The composition of any two element of the group produce another element of same group. This property is known as
(a) Associative
(b) Closure
(c) Existence of identity
(d) Existence of inverse
Answer: (b)
38. Which of the below is left cancellation law
(a) A.B = C.A
(b) B.A = C.A
(c) A.B = A.C
(d) B.A = A.C
Answer: (c)
39. All subgroups other than trivial groups are called
(a) Proper group
(b) Improper group
(c) Proper subgroup
(d) Improper subgroup
Answer: (c)
40. An infinite group may be
(a) Continuous
(b) Discrete
(c) Continuous and discrete
(d) Continuous or discrete
Answer: (d)
41. A cyclic group is always
(a) Abelion
(b) Monoid
(c) Semi group
(d) Subgroup
Answer: (a)
42. {1, -1, i, -i} is
(a) Subgroup
(b) Semigroup
(c) Cyclic group
(d) Abelion group
Answer: (c)
43. Which statement is true
(a) set of all matrices multiplication forms a group
(b) set of all rational negative numbers form group under multiplication
(c) set of all singular matrices forms a group under multiplication
(d) both (b) and (c)
Answer: (*) Note: One mark was awarded to all candidates for this question in the official key.
44. Which of the following technologies does not inherently rely on quantum physics principles
(a) Lasers
(b) LEDs
(c) Transistors
(d) Reflecting telescopes
Answer: (d)
45. What does the energy of a photon depends upon
(a) Its wavelength
(b) Its speed
(c) Its intensity
(d) All the above
Answer: (a)
46. What property of quantum mechanics, dubbed as "spooky action at a distance" by Einstein, has been demonstrated with pairs of photons separated by hundreds of kilometres
(a) Superposition
(b) Wave particle duality
(c) Entanglement
(d) The uncertainty principal
Answer: (c)
47. The wave function of the quantum particle in a box of length L lies in which region
(a) 0 < X < L
(b) x < 0
(c) 0 < X < L
(d) x > L
Answer: (c)
48. Calculate the Zero-point energy for a particle in an infinite potential well for an electron confined to 1 nm atom
(a) 3.9 × 10-29 J
(b) 4.9 × 10-29 J
(c) 5.9 × 10-29 J
(d) 6.9 × 10-29 J
Answer: (b)
49. The de Broglie wave equation showed that wavelength of any moving object is equal to
(a) m/hv
(b) h/mv
(c) v/mh
(d) hm/v
Answer: (b)
50. The wave function of a particle in a box is given by
(a) √(2/L) sin(nx/L)
(b) √(2/L) sin(nπx/L)
(c) √(2/L) sin(x/L)
(d) √(2/L) sin(πx/L)
Answer: (b)
51. What are the four basic forces of the universe
(a) Strong, weak, electromagnetic, and gravitational
(b) Momentum, velocity, gravity, and friction
(c) Gravitational, strong, quantum, and Newtonian
(d) Weak, strong, medium, and variable
Answer: (a)
52. According to the Dirac equation, a given particle has
(a) negative charge
(b) an antiparticle
(c) a size limit
(d) some velocity
Answer: (b)
53. If a coordinate is cyclic then
(a) Generalized momentum conjugate to the cyclic coordinate is conserved.
(b) It is not absent in Lagrangian.
(c) It is present in Hamiltonian
(d) Corresponding angular momentum is conserved
Answer: (a)
54. In case, Lagrangian does not contain time explicitly then
(a) Ratio of Kinetic to Potential energy of the conservative system is conserved
(b) Jacobi integral becomes invariant
(c) Difference of Kinetic and Potential energy of the conservative system is conserved
(d) Total energy of the conservative system is conserved
Answer: (d)
55. If qk and pk are old set of generalized and momentum coordinates and Qk and Pk are new set of generalized and momentum coordinates and the generating function is F=Σ qkQk, In this case, which of the following are correct transformations
(a) pk=Qk, Pk=-qk
(b) pk=Qk, Pk=qk
(c) qk=Qk, Pk=-qk
(d) pk=2Qk, Pk=-qk
Answer: (a)
56. Electric energy in eV that can theoretically be obtained by annihilation of 1 gm of matter is
(a) 10.1 × 1030
(b) 5.6 × 1032
(c) 14.6 × 1026
(d) 11.9 × 1040
Answer: (b)
57. If (q, p) are set of canonical variables and δj,k is Kronecker delta then in terms of Poisson's bracket
(a) [qj, pk]q,p = 2 δj,k
(b) [qj, pk]q,p = (δj,k)2
(c) [qj, pk]q,p = δj,k
(d) [qj, pk]q,p = 3δj,k
Answer: (c)
58. The generalized co-ordinates each of them executing oscillations of one single frequency are called
(a) Abnormal coordinates
(b) General coordinates
(c) Stationary coordinates
(d) Normal coordinates
Answer: (d)
59. Moment of inertia tensor is
(a) Fourth rank tensor
(b) Third rank tensor
(c) Ninth rank tensor
(d) Second rank tensor
Answer: (d)
60. A gas molecule moving with velocity 300 m/s collides with another gas molecule of same mass which is initially at rest. After collision, first gas molecule moves along a direction making an angle 30° to its initial direction. Find the velocity of each gas molecule after collision. Assume collision to be elastic and v1 and v2 are velocities of first and second gas molecules after collision
(a) v1 ~ 260 m/s, v2 ~ 150 m/s
(b) v1 ~ 260 m/s, v2 ~ 190 m/s
(c) v1 ~ 160 m/s, v2 ~ 150 m/s
(d) v1 ~ 300 m/s, v2 ~ 150 m/s
Answer: (a)
61. Number of coordinates required for specification of single particle in phase space are
(a) 6
(b) 3
(c) 4
(d) 9
Answer: (a)
62. If the masses of hydrogen and chlorine atoms are 1 and 35.5 a.m.u., the reduced mass of HCl molecule in gms is
(a) 1.6 × 10-24
(b) 4.3 × 10-25
(c) 49.2 × 10-30
(d) 1.5 × 10-26
Answer: (a)
63. A particle of mass m is falling vertically under the influence of gravity when frictional forces obtainable from dissipative function kv2/2 are present. Maximum possible velocity for fall from rest is
(a) mg/k
(b) mg/k2
(c) m2g/k
(d) 3 mg/k
Answer: (a)
64. A vector A is solenoidal if it is
(a) Divergence is zero
(b) Gradient is zero
(c) Divergence is non-zero
(d) Curl is non-zero
Answer: (a)
65. An integrating amplifier can be fabricated using an op-amp by placing the following component in the feedback path
(a) Capacitor
(b) Resistor
(c) series combination of resistor and inductor
(d) inductor only
Answer: (a)
66. The wave function of a quantum mechanical system like an atom must be
(a) single valued and continuous everywhere
(b) single valued, finite but can be discontinuous for degenerate states
(c) must be finite but can be multivalued for nondegenerate states
(d) single valued, finite and continuous everywhere
Answer: (d)
67. Electrons of kinetic energy 10 eV are incident on the left hand side of one-dimensional potential energy barrier of height 12 eV and a variable barrier width, then
(a) Probability of tunneling of electrons from left to right is directly proportional to the energy difference of 2 eV
(b) Probability of tunneling of electrons from left to right is directly proportional to the width of potential energy barrier
(c) Probability of tunneling of electrons from left to right is inversely proportional to the energy difference of 2 eV
(d) Probability of tunneling of electrons from left to right is exponential decreasing function of barrier width
Answer: (d)
68. The role of helium atoms in He-Ne laser is to
(a) help in maintaining resonance in the cavity
(b) help in excitation and population inversion of neon atoms
(c) emits red light
(d) polarizes the laser light.
Answer: (b)
69. An unknown material has electrical resistance, which decreases with increase in temperature then
(a) it is definitely a metal
(b) possibly a semiconductor but not an insulator
(c) must be a superconductor if its resistance vanishes at absolute zero
(d) can be either a semiconductor or an insulator
Answer: (d)
70. An atomic bomb consisting of 235U explodes and releases energy of 2 × 1014 J. It is known that each 235U which undergoes fission releases 3 neutrons and 200 MeV of energy. The total number of neutrons released is
(a) 4.7 × 1024
(b) 6.8 × 1025
(c) 7.9 × 1026
(d) 1.9 × 1025
Answer: (d)
71. During pair production of an electron-positron pair by gamma rays the minimum energy of radiations must be
(a) 1.022 MeV
(b) 0.522 MeV
(c) 4.02 MeV
(d) 3.02 MeV
Answer: (a)
72. A second order phase transition is characterized by
(a) discontinuous change in volume
(b) discontinuous change in specific heat capacity
(c) discontinuous change in density
(d) irreversible changes during heating and cooling
Answer: (b)
73. The cut-off wavelength, λc for TE20 mode for a standard rectangular waveguide is
(a) 2/a
(b) 2a
(c) a
(d) 2a2
Answer: (c)
74. The electromagnetic energy radiated per second by an oscillating electric dipole is proportional to the frequency by
(a) ω
(b) ω2
(c) ω3
(d) ω4
Answer: (d)
75. Light waves are incident normally from air onto a polished glass slab of refractive index 1.5, then the amount of light that is reflected back into air is
(a) 20%
(b) 10%
(c) 4%
(d) 15%
Answer: (c)
76. Brewster's law for polarization of light by reflection can be used to determine
(a) refractive index of medium
(b) density of medium
(c) polarizability of a medium
(d) none of the above
Answer: (a)
77. What type of interaction is responsible for spin-orbit coupling
(a) Gravitational
(b) Magnetic
(c) Strong
(d) Electrostatic
Answer: (b)
78. Liquid He does not solidify even at absolute zero at ambient pressures:
(a) due to phase transition at 2.2 K
(b) due to large zero point energy
(c) because of quantum tunneling
(d) Pauli Exclusion principle
Answer: (b)
79. Hall effect studies are not performed in metals because
(a) Hall Coefficient is very large.
(b) Hall Coefficient is very small
(c) Hall coefficient cannot be defined in metals
(d) Hall Coefficient has negative values.
Answer: (b)
80. A potential difference of 12 V is applied across the ends of the intrinsic silicon bar of length 0.6 cm and cross-sectional area of 0.4 cm2. Assuming that ni = 1.5 × 1016 electrons/m3, μn = 0.14 m2/Volt-s and μp = 0.05 m2/Volt-s. Total current in the bar
(a) 0.0789 mA
(b) 0.0765 mA
(c) 0.0320 mA
(d) 0.0365 mA
Answer: (d)
81. A stationary electron is accelerated with an electric voltage of 1500 V and enters into a uniform magnetic field of 0.2 T perpendicular to its direction of motion. Determine its radius of the curved path in magnetic field
(a) 8.1 × 10-3 m
(b) 3.25 × 102 m
(c) 6.52 × 10-4 m
(d) 2.15 m
Answer: (c)
82. The length of the space ship moving fast, was measured by an observer on earth and he reported a value which is half of its proper length. Find the speed of the space ship with respect to observer on earth:
(a) (1/2)c
(b) (√3 / 2)c
(c) (1/3)c
(d) (√3 / √5)c
Answer: (b)
83. Amplifier circuits fabricated using MOSFETS have an advantage over those using BJT's because
(a) they are current controlled devices
(b) their amplification factors are greater
(c) they have greater input impedance
(d) they have smaller input impedance
Answer: (c)
84. Microwaves are electromagnetic waves with wavelength of
(a) few micron
(b) few centimeter
(c) few kilometer
(d) few meter
Answer: (b)
85. Wavelength of photons of energy 20 eV is
(a) 1016 Å
(b) 1516 Å
(c) 621 Å
(d) 471 Å
Answer: (c)
86. The magnetic susceptibility of a high Tc superconductor compound LaxBa2-xCuO4 below its transition temperature is
(a) -1
(b) Zero
(c) Infinite
(d) 1
Answer: (a)
87. The lattice constant of a cubic lattice is 4.12 Å. Then the spacing between (200) planes are
(a) 2.67 × 10-10 m
(b) 2.99 × 10-10 m
(c) 2.06 × 10-10 m
(d) 4.12 × 10-10 m
Answer: (c)
88. In case more than one linearly independent wave function belongs to the same energy E the level is said to be
(a) Degenerate
(b) non degenerate
(c) Orthogonal
(d) Orthonormal
Answer: (a)
89. The approximate kinetic energy of thermal neutrons is
(a) 0.0254 eV
(b) 0.0254 MeV
(c) 0.0254 GeV
(d) 0.0254 keV
Answer: (a)
90. The magnetic flux through each turn of a 100 turn coil varies with time, t as -2t milli Weber, where t is in seconds. The induced emf at t=2s is:
(a) 1Mv
(b) -1V
(c) 4mV
(d) 0.4V
Answer: (d)
91. A light emitting diode(LED) emits light when
(a) electrons are excited from valence to conduction band
(b) it is reverse biased
(c) electrons collide with the lattice atoms
(d) electrons from the conduction band combine with holes in the valence band.
Answer: (d)
92. The heavily damped oscillator will return to its equilibrium position
(a) immediately within no time
(b) in time equal to its time period
(c) in infinite time
(d) within half of its time period.
Answer: (c)
93. The Lande g factor for 2S1/2 state of Li is
(a) 1
(b) 2
(c) 3/2
(d) 4/3
Answer: (b)
94. Which one of the following semiconductor devices is used as temperature sensor
(a) Thermistor
(b) Schottky Diode
(c) Zerner diode
(d) Thermocouple
Answer: (a)
95. The ideal op-amp has the following characteristics
(a) its input impedance is infinite and therefore input current is zero
(b) its open-loop voltage gain is zero
(c) its output impedance is infinite therefore output voltage is independent of the load
(d) Its CMRR value is generally less than one
Answer: (a)
96. When an 8 bit serial in / serial out register is used for 24 μs time delay the clock frequency must be
(a) 41.67 kHz
(b) 333 kHz
(c) 125 kHz
(d) 8 MHz
Answer: (b)
97. For the measurement of pressure the instruments used can be
(a) Mechanical
(b) Electro-mechanical
(c) Electronic
(d) All of these
Answer: (d)
98. The magnitude of spin magnetic dipole moment of an electron in terms of Bohr magneton is
(a) √3 μB
(b) √5 μB
(c) μB / 2
(d) None of these
Answer: (a)
99. Different methods used to achieve population inversion are
(a) Direct excitation
(b) Inelastic atom-atom collision
(c) Chemical reaction
(d) All of these
Answer: (d)
100. In stimulated emission, the emitted photons are
(a) Non-Coherent and monochromatic
(b) Coherent and monochromatic
(c) Both (a) and (b)
(d) None of these
Answer: (b)
101. When the applied external magnetic field is weak as compared to internal fields due to spin-orbit motion, a spectral line splits into number of components, this effect is called
(a) Paschen-Back effect
(b) Zeeman effect
(c) Stark effect
(d) None of these
Answer: (b)
102. If the Kα radiation of Mo (Z=42) has wavelength of 0.71 Å. The wavelength of corresponding radiation of Cu (Z=29) is
(a) 1.52 Å
(b) 1.04 nm
(c) 1.48 mm
(d) 1.02 cm
Answer: (a)
103. 2D levels of sodium would shift on applying weak magnetic field into
(a) 10 levels
(b) 8 levels
(c) 12 levels
(d) None of these
Answer: (a)
104. Of the following term symbols of the atomic state np2 configurations, 1S0, 3P0, 3P1, 3P2 which is the ground state
(a) 1S0
(b) 3P0
(c) 3P1
(d) 3P2
Answer: (b)
105. The separation between the energy levels of a two-level atom is 2 eV. Suppose that 4 × 1020 atoms are in the ground state and 7 × 1020 atoms are pumped into the excited state just before lasing starts. How much energy will be released in a single laser pulse?
(a) 24 J
(b) 22 J
(c) 98 J
(d) 48 J
Answer: (d)
106. The infrared rotational absorption spectrum of a diatomic molecule shows equivalent lines with spacing 20 cm-1. The position of the first stoke line in the rotational Raman spectrum of this molecule is
(a) 20 cm-1
(b) 40 cm-1
(c) 60 cm-1
(d) 120 cm-1
Answer: (c)
107. The separation between the first stokes and corresponding anti-stokes line of the rotational Raman spectrum in term of the rotational constant, B is
(a) 2B
(b) 4B
(c) 6B
(d) 12B
Answer: (d)
108. The order of magnitude of the energy gap of a typical superconductor is
(a) 1 MeV
(b) 1 KeV
(c) 1 eV
(d) 1 meV
Answer: (d)
109. For a three-dimensional crystal having N primitive unit cells with a basis of p atoms, the number of optical branches is,
(a) 3
(b) 3p
(c) 3p-3
(d) 3N
Answer: (c)
110. In AC Josephson effect, on applying the biasing voltage 'V', the frequency of the current will be
(a) ν = 2eV/h
(b) ν = eV/h
(c) ν = 2V/h
(d) None of these
Answer: (a)
111. Mixed state is found in
(a) Type-I superconductors
(b) Type-II superconductors
(c) Both (a) and (b)
(d) None of these
Answer: (b)
112. Einstein theory of specific heat is a
(a) Classical theory
(b) Semi-classical theory
(c) Quantum theory
(d) Electrodynamics theory
Answer: (c)
113. Diamond lattice can be considered as a combination of two fcc lattice displaced along the body diagonal by one quarter of its length. There are eight atoms per unit cell. The packing fraction of the diamond structure is
(a) 0.48
(b) 0.74
(c) 0.34
(d) 0.68
Answer: (c)
114. A dc voltage V is applied across a Josephson junction between two superconductors with a phase difference Φ0. If I0 and k are constants that depend on the properties of the junction, the current flowing through it has the form
(a) I0 sin(2eVt/h + Φ0)
(b) kV sin(2eVt/h + Φ0)
(c) kV sin Φ0
(d) I0 sin Φ0
Answer: (a)
115. The total internal energy of the domain structure in a ferromagnetic material includes
(a) Magnetostatic energy
(b) Anisotropy energy
(c) Domain wall energy
(d) All of above
Answer: (d)
116. The electrical conductivity of copper is approximately 95% of the electrical conductivity of silver, while the electron density in silver is approximately 70% of the electron density in copper. In Drude's model, the approximation ratio of mean collision time of copper (τCu) to silver (τAg) is
(a) 0.66
(b) 1.50
(c) 0.33
(d) None of these
Answer: (d)
117. Which is the correct relation for the Weidemann-Franz law, where K = thermal conductivity and σ is electrical conductivity
(a) σ/K = constant
(b) K/σ = constant
(c) Kσ = constant
(d) None of these
Answer: (a)
118. Einstein's theory assume that atom in solid vibrate with frequency which is
(a) same natural frequency
(b) different natural frequency
(c) independent frequency
(d) none of these
Answer: (a)
119. The half-life of Radium is 1600 years. The time taken for 15/16 of a sample of radium to decay is
(a) 1600 yr
(b) 3200 yr
(c) 800 yr
(d) 6400 yr
Answer: (d)
120. The multi polarity possible for a radioactive transition is limited by selection rules, based on
(a) Spin
(b) Angular momentum
(c) Pauli principle
(d) Parity
Answer: (b)
121. Find the maximum kinetic energy of the electron emitted in the beta decay of the free neutron. The neutron-proton mass difference is 1.30 MeV.
(a) 0.49 MeV
(b) 0.59 MeV
(c) 0.79 MeV
(d) 0.99 MeV
Answer: (c)
122. For lighter elements to be stable, the neutron to proton ratio must be
(a) 2:1
(b) 3:1
(c) 3:2
(d) 1:1
Answer: (d)
123. Which of the following is not a mode of radioactive decay
(a) Alpha decay
(b) Fusion
(c) Electron capture
(d) Positron emission
Answer: (b)
124. Nuclear force is
(a) short range and charge dependent
(b) long range and charge dependent
(c) short range and charge independent
(d) long range and charge independent
Answer: (c)
125. An X ray photon collides with a free electron, and the photon is scattered. During this collision there is conservation of
(a) momentum but not energy
(b) neither momentum nor energy
(c) energy but not momentum
(d) both momentum and energy
Answer: (d)
126. The electric charge of the quark is
(a) Zero
(b) greater than electron charge
(c) less than electron charge
(d) equal to electron charge
Answer: (c)
127. Within an isospin multiplet particles differ in
(a) Parity
(b) Charme
(c) charge
(d) baryon number
Answer: (c)
128. Shell model of the nucleus is based upon
(a) Bohr correspondence principle
(b) Ellipsoidal symmetric potential
(c) Spherically symmetric potential
(d) None of these
Answer: (c)
129. Path followed by a particle in sliding from one point to another in the absence of friction in the shortest time is a
(a) Cycloid
(b) Circle
(c) Straight line
(d) Parabola
Answer: (a)
130. Variational principle gives the necessary conditions about the quantity appearing as an integral has
(a) Stationary value
(b) Square of its value
(c) Cube of its value
(d) Exponent of its value
Answer: (a)
131. If mo, v and V are rest mass, velocity and potential energy respectively of the particle and c is velocity of light, forces are conservative then Lagrangian in relativistic mechanics can be defined by following equation.
(a) moc2[1-(v2/c2)]1/2 - V
(b) -moc2[1-(v2/c2)]1/2 - V1/2
(c) -moc2[1-(v2/c2)]1/2 - V
(d) -mo2c2[1-(v2/c2)]1/2 - V
Answer: (c)
132. When the positively charged particles approach the heavy nucleus, the trajectory of the particles is
(a) Hyperbola
(b) Elliptical
(c) Circle
(d) Parabola
Answer: (a)
133. Poisson bracket of two constants of the motion is itself
(a) Energy
(b) A constant of motion
(c) Velocity
(d) Unity
Answer: (b)
134. If p and P are old and new momenta respectively then F(p,P,t) represents which generating function
(a) F1
(b) F3
(c) F2
(d) F4
Answer: (d)
135. If the equation of trajectory of the particle in plane polar coordinates is given by r=2a cos θ, where 2a is the diameter of the circle. In this case, force is proportional to distance from origin as;
(a) 1/r5
(b) 1/r7
(c) 1/r9
(d) 1/r11
Answer: (a)
136. Shortest distance between two points in a plane is a
(a) Cycloid
(b) Parabola
(c) Circle
(d) Straight line
Answer: (d)
137. Residue of f(z) at a simple pole a is
(a) limz→a z f(z)
(b) limz→a (z-a) f(z)
(c) limz→a f(z)/(z-a)
(d) limz→a (z-a)/f(z)
Answer: (b)
138. The average value of the function, f(x)=4x3 in the interval 1 to 3 is
(a) 15
(b) 20
(c) 40
(d) 80
Answer: (c)
139. The cathode of a Zener diode used in a voltage regulator circuit is
(a) More positive than anode
(b) More negative than the anode
(c) At +0.7V
(d) Grounded
Answer: (a)
140. For a pair of electrons the wave function, Ψ(r1,r2) will be
(a) symmetric under the exchange of positions of two electrons
(b) antisymmetric under the exchange of positions of two electrons
(c) such that it cannot be normalized
(d) always a Gaussian function
Answer: (b)
141. For a two dimensional quantum mechanical harmonic oscillator the minimum total energy is
(a) Zero
(b) 3hω
(c) hω
(d) 2hω
Answer: (c)
142. Consider a one dimensional, infinite square well existing from 0 ≤ x ≤ a, if nine electrons are inside the well, then the ground state energy of the system is:
(a) 85h2/8ma2
(b) 72h2/8ma2
(c) 102h2/8ma2
(d) 96h2/8ma2
Answer: (a)
143. If ψ(x,y,z) = ψ(-x,-y,-z) then it represents
(a) Even parity
(b) Odd parity
(c) Both (a) and (b)
(d) None of these
Answer: (a)
144. Scattering cross section for Coulomb potential using Born approximation is directly proportional to
(a) sin4θ
(b) cos4θ
(c) Cosec4θ
(d) Cosec4(θ/2)
Answer: (d)
145. A particle of mass m, moves in a potential V(x) = (1/2)mω2x2 + (1/2)mμv2 where x is the position coordinate, v is the speed, ω and μ are constants. The canonical conjugate momentum of the particle is
(a) p = m(1+μ)v
(b) p = mv
(c) p = mμv
(d) p = m(1-μ)v
Answer: (d)
146. Which of the following statement is true
(a) AND and NOT gates are necessary and sufficient for the realization of any logical function
(b) OR and NOT gates are necessary and sufficient for the realization of any logical function
(c) NOR gates are sufficient to realize any logical function
(d) NAND gates are not sufficient to realize any logical function
Answer: (c)
147. For an atom in 3P2 state, value of magnetic moment in Bohr magneton would be
(a) 3√(3/2) μB
(b) √(3/2) μB
(c) 3√(1/2) μB
(d) √3 μB
Answer: (a)
148. The Zeeman pattern of line contains nine equidistant components. If the upper state is known to be 3P2 then the lower state would be
(a) 3S2
(b) 3S1
(c) 1P1
(d) None of these
Answer: (b)
149. Zeeman effect could not be proved by
(a) Quantum Mechanics
(b) Bohr Model
(c) Hamiltonian Operator
(d) L-S Coupling
Answer: (b)
150. The binding energy of the hydrogen atom (electron bound to proton) is -13.6 eV. The magnitude of binding energy of positronium (electron bound to positron) is
(a) 13.6/2 eV
(b) 13.6/1810 eV
(c) 13.6 × 1810 eV
(d) none of these
Answer: (a)
