HSC Science (General)
HSC Science (Electronics)
HSC Science (Computer Science)
Academic Year: 2021-2022
Date: मार्च 2022
Duration: 0h30m
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General instructions:
- The question paper is divided into four sections:
- Section A: Question No. 1 contains 10 multiple choice type questions carrying one mark each.
Question No. 2 contains 8 very short answer type questions carrying one mark each. - Section B: Question No. 3 to Question No. 14 are 12 short answer-I type questions carrying two marks each. Attempt any eight questions.
- Section C: Question No. 15 to Question No. 26 are 12 short answer-II type questions carrying two marks each. Attempt any eight questions.
- Section D: Question No. 27 to Question No. 31 are 5 long answer type questions carrying four marks each. Attempt any three questions.
- Start each section on a new page.
- Figures to the right indicate full marks.
- For each MCQ, correct answer must be written along with its alphabet.
e.g., (a) ..... / (b ) .... / ( c ) .... / ( d) ..... Only first attempt will be considered for evaluation. - Use of log table is allowed. Use of calculator is not allowed.
The average energy per molecule is proportional to ______
the pressure of the gas
the volume of the gas
the absolute temperature of the gas
the mass of the gas
Chapter: [0.03] Kinetic Theory of Gases and Radiation
Which of the following system freely allows the exchange of energy and matter with its environment?
Closed
Isolated
Open
partially closed
Chapter: [0.04] Thermodynamics
Which of the following cannot produce two coherent sources?
Lloyd’s mirror
Fresnel biprism
Young’s double-slit
Prism
Chapter: [0.07] Wave Optics
The role of inductance is equivalent to ______
inertia
force
energy
momentum
Chapter: [0.12] Electromagnetic Induction
A particle is moving in a circle with uniform speed. Its motion is ______
Periodic and simple harmonic
Non-periodic
Periodic but not simple harmonic
Non-periodic but simple harmonic
Chapter: [0.05] Oscillations
In the law of tension, the fundamental frequency of the vibrating string is, ______
inversely proportional to the square root of tension
directly proportional to the square of tension
directly proportional to the square root of tension
inversely proportional to the density
Chapter: [0.06] Superposition of Waves [0.08] Stationary Waves
A dipole is placed in a uniform electric field, its potential energy will be minimum when the angle between its axis and field is ______
2π
π
`π/2`
Zero
Chapter: [0.08] Electrostatics
Four resistances 4 Ω, 8Ω, XΩ and 12Ω are connected in a series to form Wheatstone’s network. If the network is balanced, the value of X is ______.
24
18
12
8
6
Chapter: [0.09] Current Electricity [0.13] Current Electricity
What is the magnetization of a bar magnet having a length of 6 cm and the area of cross-section 5 cm2?
1.2 × 10-4 A/m
3.3 × 104 A/m
1.25 × 10-4 A/m
3.3 × 10-4 A/m
Chapter: [0.11] Magnetic Materials [0.15] Magnetism
A coil of resistance 300Ω and inductance 1.0 H is connected across an alternating voltage of frequency `300/(2pi)` Hz, therefore phase difference between the voltage and current in the circuit is ______
180°
90°
45°
0°
Chapter: [0.13] AC Circuits
What is the energy of an electron in a hydrogen atom for n = ∞?
Chapter: [0.15] Structure of Atoms and Nuclei
During ice ballet, while in the outer rounds, why do the dancers outstretch their arms and legs.
Chapter: [0.01] Rotational Dynamics
What are cohesive forces?
Chapter: [0.02] Mechanical Properties of Fluids
On what, the values of absorption coefficient, reflection coefficient, and transmission coefficient depend, in addition to the material of the object on which the radiation is an incident?
Chapter: [0.03] Kinetic Theory of Gases and Radiation
What is a thermodynamic process?
Chapter: [0.04] Thermodynamics
What does the phase of π/2 indicate in linear S.H.M.?
Chapter: [0.05] Oscillations
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The electron in the hydrogen atom is moving with a speed of 2.5 × 106 m/s in an orbit of a radius of 0.5 Å. What is the Magnetic moment of the revolving electron?
Chapter: [0.11] Magnetic Materials
If the peak value of an alternating emf is 15V, what is its mean value over half cycle?
Chapter: [0.13] AC Circuits
Draw a neat labelled diagram of a schematic of the experimental setup for the photoelectric effect.
Chapter: [0.14] Dual Nature of Radiation and Matter
Derive the expression for magnetic field produced by a current in a circular arc of wire.
Chapter: [0.1] Magnetic Fields Due to Electric Current
Differentiate between the reversible and irreversible processes.
Chapter: [0.04] Thermodynamics
Why and where are eddy currents are undesirable? How are they minimized?
Chapter: [0.12] Electromagnetic Induction
What are stationary waves? Why are they called stationary waves?
Chapter: [0.06] Superposition of Waves
Draw a neat labelled circuit diagram for transistors as common emitter amplifiers.
Chapter:
Define surface tension
Chapter: [0.02] Mechanical Properties of Fluids [0.06] Surface Tension
A metal cube of length 4 cm radiates heat at the rate of 10 J/s. Find its emissive power at a given temperature.
Chapter: [0.03] Kinetic Theory of Gases and Radiation
The magnetic flux through a loop varies according to the relation Φ = 8t2 + 6t + 2, Φ is in milliweber and t is in second. What is the magnitude of the induced emf in the loop at t = 2 seconds?
Chapter: [0.12] Electromagnetic Induction
A solenoid of length π m and 5 cm in diameter has a winding of 1000 turns and carries a current of 5 A. Calculate the magnetic field at its centre along the radius.
Chapter: [0.1] Magnetic Fields Due to Electric Current
Find the current in a circuit consisting of a coil and a capacitor in series with an A.C source of 110V (r.m.s.), 60Hz. The inductance of a coil is 0.80 H and its resistance is 50Ω. The capacitance of a capacitor is 8µF.
Chapter: [0.13] AC Circuits
The moment of inertia of a body about a given axis is 1.2 kgm2. initially, the body is at rest. For what duration on the angular acceleration of 25 radian/sec2 must be applied about that axis in order to produce rotational kinetic energy of 1500 joule?
Chapter: [0.01] Rotational Dynamics
Explain the construction and working of Ferry’s black body.
Chapter: [0.03] Kinetic Theory of Gases and Radiation
Explain experimental setup for Fraunhofer diffraction with neat diagram.
Chapter: [0.07] Wave Optics
Show that even as well as odd harmonics are present as an overtone in modes of vibration of the string.
Chapter: [0.06] Superposition of Waves [0.08] Stationary Waves
Obtain an expression for the energy stored in a charged condenser. Express it in different forms.
Chapter:
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Draw the circuit symbol for NPN and PNP transistors. What is the difference in the Emitter, Base, and Collector regions of a transistor?
Chapter: [0.16] Semiconductor Devices
Define angular S.H.M. and obtain its differential equation.
Chapter: [0.05] Oscillations
Explain graphically (i) positive work with varying pressure, (ii) negative work with varying pressure, and (iii) positive work at constant pressure.
Chapter: [0.04] Thermodynamics
A magnet of magnetic moment 3Am2 weighs 75 g. The density of the material of the magnet is 7500 kg/m3. what is magnetization?
Chapter: [0.11] Magnetic Materials [0.15] Magnetism
In Fraunhoffer diffraction by a narrow slit, a screen is placed at a distance of 2 m from the lens to obtain the diffraction pattern. If the slit width is 0.2 mm and the first minimum is 5 mm on either side of the central maximum, find the wavelength of light.
Chapter: [0.07] Wave Optics
The work function of a surface is 3.1 eV. A photon of frequency 1 × 1015 Hz. Is an incident on it. Calculate the incident wavelength is photoelectric emission occurs or not.
Chapter: [0.14] Dual Nature of Radiation and Matter
Using the expression for the energy of an electron in the nth orbit, Show that `1/lambda = "R"_"H"(1/"n"^2 - 1/"m"^2),` Where symbols have their usual meaning.
Chapter: [0.15] Structure of Atoms and Nuclei
A cell of e.m.f 1.5V and negligible internal resistance is connected in series with a potential meter of length 10 m and the total resistance of 20 Ω. What resistance should be introduced in the resistance box such that the potential drop across the potentiometer is one microvolt per cm of the wire?
Chapter: [0.09] Current Electricity [0.13] Current Electricity
Obtain an expression for maximum safety speed with which a vehicle can be safely driven along a curved banked road.
Chapter: [0.01] Rotational Dynamics
Derive the relation between surface tension and surface energy per unit area.
Chapter: [0.02] Mechanical Properties of Fluids
Find an expression for the power expended in pulling a conducting loop out of a magnetic field.
Chapter: [0.12] Electromagnetic Induction
Two capacitors each of capacity 2 μF are connected in parallel. This system is connected in series with the third capacitor of 12μF capacity. Find the equivalent capacity of the system.
Chapter:
Derive an expression for axial magnetic field produced by current in a circular loop.
Chapter: [0.1] Magnetic Fields Due to Electric Current
The maximum safe voltage that can be measured using a galvanometer of resistance G is Vm . Find the resistance to be connected in series with the galvanometer so that it becomes a voltmeter of range nVm.
Chapter:
Obtain the expression for the applied emf and the effective resistance of the circuit when alternating emf is applied to an LR circuit.
Chapter: [0.13] AC Circuits
Calculate the longest wavelength in the Paschen series.
(Given RH =1.097 ×107 m-1)
Chapter: [0.15] Structure of Atoms and Nuclei
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