Solved question paper for Physics Mar-2017 (PSEB Class 12th)
Solved Question Paper
Physics Mar-2017
PSEB • Class 12th • 1st • Mar-2017
Physics previous year question papers on BRpaper help students browse Punjab School Education Board PSEB 12th Class Question Papers for this subject in one place. If you are searching for PSEB 12th Physics old question papers, PSEB class 12 Physics board paper practice, or Punjab Board Class 12 Physics revision support, this section is meant to make subject-wise access quick and simple. Students can use the papers here to study the exam pattern, question style, marks distribution, and the kinds of numericals, derivations, and theory questions that often matter in preparation. It is also useful for spotting important questions, comparing chapter-wise trends, and practicing timed answers before the board exam. BRpaper is a student resource for browsing previous year papers and related exam preparation material where available. It is not the official website of Punjab School Education Board or any institution, and it does not publish official notices or academic updates.
Unit-1: Electrostatics
Electric Charges; charging by induction, basic properties of electric charge (addition of charges, quantisation of charges and their Conservation) Coulomb's law-force between two point charges, forces between multiple charges; superposition principle and cotineous charge distribution. Electrical field, electric field due to a point charge, electric field due to system of charge, physical significance of electric field, electric-field lines; electric dipole, electric field due to a dipole;(on its axis,on equatorial plane)physical significance of dipoles; torque on a dipole in uniform electric field.Electric field due to continuous charge distribution. Electric flux, statement of Gauss's theorem proof of Gauss’s theorem for a charge enclosed in sphere, and its applications to find electric field due to infinitely long straight wire, uniformly charged infinite thin plane sheet and uniformly charged thin spherical shell (Field inside and outside). Electric potential, potential difference, electric potential due to a point charge, potential due to an electric dipole with special cases for axis and equatorial plane and system of charges; equipotential surfaces,its properties,relation between field and potential electrical potential energy of a system of two point charges potential energy in external field and of electric dipole in an electrostatic field. Conductors and insulators, electrostatics of conductors, free charges and bound charges inside a conductor. Electrostatic shielding its uses, Dielectrics and electric polarisation, capacitors and capacitance, combination of capacitors in series and in parallel, capacitance of a parallel plate capacitor with and without dielectric medium between the plates, energy stored in a capacitor, Van de Graaf generator.
Unit-II: Current Electricity
Electric current, flow of electric charges in a metallic conductor, drift velocity, drift of electron mobility and their relation with electric current: Ohm's law, electrical resistance. V-1 characteristics (linear and non linear), electrical energy and power, electrical resistivity and conductivity. Carbon resistors, colour code for carbon resistors; series and parallel combinations of resistors; temperature dependence of resistance and resistivity.Internal resistance of a cell, potential difference and emf of cell, combination of cells in series and in parallel. Kirchhoff's laws and simple applications of Wheatstone bridge, meter bridge.Potentiometer-principle and its applications to measure potential difference and for comparing emf of two cells, measurement of internal resistance of a cell.
Unit-III: Magnetic Effects of Current and Magnetism
Concept of magnetic field. Oersted's experiment; Biot-savart law and its application to find mangnetic field on the axis of a current carrying circular loop, Ampere's circuital law (no proof) and its applications to infinitely long straight wire, straight and toroidal solenoids. Force on a moving charge in uniform magnetic and electric fields.Motion in a magnetic field,motion in combined electric and magnetic field (velocity selector) Cyclotron. Force on a current-carrying conductor in a uniform magnetic field Force between two parallel current-carrying conductors, definition of ampere. Torque experienced by a current loop in uniform magnetic field; moving coil galvanometersits current sensitivity and conversion to ammeter and voltmeter. Current loop as a magnetic dipole and its magnetic dipole moment. Magnetic dipole moment of a revolving electron. Magnetic field intensity due to a magnetic dipole (Bar magnet) along its axis and perpendicular to its axis. Torque on a magnetic dipole (bar magnet) in a uniform magnetic field; bar magnet as an equivalent solenoid, magnetic field lines; magnetism and Gauss’s law; Earth's magnetic field and magnetic elements, magnetisation and magnetic intensity, magnetic properties of materials, Para-, dia-and ferromagnetic substances with examples, Electromagnets and factors affecting their strengths. Permanent magnets.
Unit-IV: Electromagnetic Induction and Alternating Currents
Electromagnetic induction, Faraday's and henry experiments,magnetic flux,Faraday laws, induced emf and current, Lenz's Law and conservation of energy, motional emf, Eddy currents: Self and mutual inductance. Alternating current, peak and rms value of alternating current/voltage; reactance and impedances; phasors, ac applied across resistance, ac applied across inductor, as applied across capacitor, ac applied across LCR, LC oscillations, across inductor, ac applied across capacitor ,ac applLC oscillations, (qualitative treatment only), LCR series circuit resonance; power in AC circuit, wattless current. AC generator and transformer.
Unit-V: Electromagnetic Waves
Need for displacement current, Electromagnetic waves and their characteristics (qualitative ideas only). Transverse nature of lectromagnetic waves. Electromagnetic spectrum (Radio waves, Radio-microwaves, infra-red, visible, ultraviolet, X-rays, gamma rays) including elementary facts about their uses.
Unit-VI: Optics
Reflection of light, spherical mirrors, mirror formula. Refraction of light, total internal reflection and its applications, optical fibers, refraction at spherical surfaces, refraction by lens, lenses, thin lens formula/equation, lens-maker's formula. Magnification, power of a lens, combination of thin lenses in contact, combination of lens and mirror. Refraction and dispersion of light through a prism. Some natural phenomenon due to sunlight,Scattering of light-blue colour of the sky and reddish appearance of the sun at sunrise and sunset.Optical instruments: Human eye, image formation and accommodation, correction of eye defects (myopia, hypermetropia) using lenses. Microscopes and astronomical tetescopes (reflecting and refracting) and their magnifying powers. Waves optics : wave front and Huygens' Principle, reflection and refraction of plane wave at a plane surface using Huygens’ Principle, wave fronts. Proof of laws of reflection and refraction using Huygens ‘Principle. Interference Young's double hole experiment and expression for fringe width, coherent sources and incoherent addition of waves and sustained interference of light. Diffraction due to a single slit, width of central maximum. Resolving power of microscopes and astronomical telescopes. Polarisation, polarization by scattering and reflection, plane polarised light -Brewster's law, uses of plane polarised light and Polaroids.
Unit-VII: Dual nature of Matter and Radiation
Electron emission, Photoelectric effect, Hertz and Lenard's observations'; experimental study of photoelectric effect, and wave theory of light, Einstein's photoelectric equation, particle nature of light, the photon, Matter waves-wave nature of particles, de Broglie relation. Davission-Germer experiment (experimental details should be omitted; only conclusion should be explained).
Unit-VIII: Atoms & Nuclei
Alpha-particle scattering experiment; Rutherford's model of atom; Bohar modal of hydrogen atom, expression for radius, velocity and energy of electron in orbit, energy levels, line spectrum of hydrogen atom, atomic spectra,de-Broglie’s explanation of Bohr’ s second postulate of quantization. Composition and size of nucleus, atomic masses, isotopes, isobars; isotones. Radioactivity- alpha, beta and gamma particles/rays and their properties; radioactive decay law, alpha, beta and gamma decay. Mass-energy relation, mass-defect; binding energy per nucleon and its variation with mass number; nuclear fission, nuclear force,nuclear reactor, Nuclear energy.
Unit-XI: Electronic Devices
Classification of metal insulator and semiconductor, Energy bands in solids (qualitative idea only) conductor, insulators and Semiconductors;intrinsic and extrinsic semiconductors,p-n junction, semiconductor Diode-1-V characteristics in forward and reverse bias, diode as a rectifier, 1-V characteristics of LED, photodiode, solar cell and Zener diode, Zener diode as a voltage regulator. Junction transistor, transistor action; characteristics of a common emitter transistor: transistor as an amplifier (common emitter configuration) and oscillator, digital electronics and Logic gates (OR, AND, NOT, NAND and NOR). Transistor as a switch,integrated circuits.
Unit-X: Communication Systems
Elements of a communication system (block diagram only); basic terminology Used in Electronic Communication Systems, bandwidth of signals (speech, TV and digital data); bandwidth of transmission mediumPropagation of electromagnetic waves in the atmosphere, Sky and space wave propagation. Need for modulation. Production and detection of an amplitude modulated wave.
NOTE:- TOPICS GIVEN BELOW ARE IN PRESCRIBED SYLLABUS OF P.S.E.B BUT NOT MENTIONED IN BOOK SUBSCRIBED BY PSEB. SO THESE TOPICS ARE TO BE DONE WITH STUDENTS AND PAPER WILL INCLUDE THESE TOPICS AND QUESTIONS FROM THESE TOPICS WILL NOT CONSIDERED AS OUT OF SYLLABUS.
1. Electric flux
2. Potentiometer and its applications to measure potential difference
3. Magnetic field intensity due to a magnetic dipole (Bar magnet) along its axis and perpendicular to its axis.
4. Combinations of lens and mirror
5. Poor of laws of reflection and refraction using Huygens ‘Principle’.
6. Alpha-beta and gamma particles/rays and their properties
Solved Questions
Solved-
A fuse wire is a wire of
(a) Both low resistance and low melting point.
(b) High resistance and low melting point.
(c) Low resistance and high metting point.
(d) Both high resistance and high melting point.
Very Short Answer Mar-2017 • PSEB Class 12th -
Write whether the given statement is true or false : A diamagnetic substance is feebly attracted by a magnet.
Very Short Answer Mar-2017 • PSEB Class 12th -
Among (alpha), (Beta) and (gamma) radiations, which one is not affected by magnetic field ?
Very Short Answer Mar-2017 • PSEB Class 12th -
Define the SI unit of self-inductance.
Very Short Answer Mar-2017 • PSEB Class 12th -
What is function of transducer ?
Very Short Answer Mar-2017 • PSEB Class 12th -
Write the following radiations in a descending order of their frequencies red light, X-rays, microwaves, radio-waves
Very Short Answer Mar-2017 • PSEB Class 12th-
Mar 2017
Write the following radiations in an ascending-order in respect of their frequencies : X-rays, microwaves, UV (ultra-violet) rays and radio wave.
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A resistance of a tungsten filament at 150"C is 133(Omega). What will be its resistance at 500"C ? The temperature coefficient of resisiance of tungsten at 0"C is 0.0045 "C-1
Very Short Answer Mar-2017 • PSEB Class 12th -
Which material is preferred for making permanent niagnets ? Give reason for your choice ?
Very Short Answer Mar-2017 • PSEB Class 12th -
Why is the coil of a dead-beat galvanometer wound on a metal frame ?
Very Short Answer Mar-2017 • PSEB Class 12th -
Microwaves are used in RADAR why?
Very Short Answer Mar-2017 • PSEB Class 12th -
Define (i) critical angle (ii) polarising apgle
Very Short Answer Mar-2017 • PSEB Class 12th -
For a common emitter, amplifier dc (direct current) current gain is 60. If the emitter current is 6.6 mA, calculate the collector and base current
Short Answer Mar-2017 • PSEB Class 12th -
Whatis space wave propagation ? Give one example of communication system, which use space wave mode.
Short Answer Mar-2017 • PSEB Class 12th -
what is the focal length of the combination of a convex lens of focal length 30 cm in contact with a concave lens of focal length 20 em? rs the system a converging or diverging lens ? Ignore thickness of the lenses.
Short Answer Mar-2017 • PSEB Class 12th -
Derive an explession for the capacitance of parallel plate capacitor when a dielectric slab is introduced between the plates of capacitor.
Short Answer Mar-2017 • PSEB Class 12th -
what is the principle of a potentiometer ? with the helpof circuit diagram, explain the use of potentiometer measure internal resistance of given primary cell
Short Answer Mar-2017 • PSEB Class 12th -
Give the principle of a transforrner, construction of a step-down tiansformer. energy losses of a transformer.
Short Answer Mar-2017 • PSEB Class 12th -
State the laws of photoelectric emission.
Short Answer Mar-2017 • PSEB Class 12th-
Mar 2018
(a) State the laws of photo electric effect.
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With the help of circuit diagram, explain the working of npn transistor as an amplifier in commohn ernitter configuration.
Long Answer Mar-2017 • PSEB Class 12th -
Draw the graph showing variation of binding energy per nucleon with mass number.write the inferences drawn from the graph.
Long Answer Mar-2017 • PSEB Class 12th -
(a) What would be the work done, if a point charge '+q' is taken from,,a point A to a point B on the circumference of a circle drawn with another point charge +q at the centre ?
(b) State Gauss's theorcm in electrostatics. Using Gauss's theorem in electrsstatics, derive an expression for electric field intensity at a point due to infinite sheet of charge. How does the electrjs field change for a thick sheet of charge ?
Long Answer Mar-2017 • PSEB Class 12th -
(a) Define the SI unit of electric charge.
(b) Two point charges q and - q is placed at a distance apart.Calculate the electric field at a point P situated at a distance r along the axial line of an electric dipole. What is the electric field when r >> a ? Also, give the direction of electric^ field w.r.t. electric dipole moment.
Long Answer Mar-2017 • PSEB Class 12th-
Mar 2017
(a) Which physical quantity has its SI unit (1) Cm (2) N/C
\r\n\r\n(b) Two point charges q and -q is placed at a distance 2a apart.Calculate the electric field at a point P situated at a distance r along the prependicular bisector of the line joining the charges. What is the electric field when r >> a ? also, give the direction of electric field w.r.t. electric dipole moment ?
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(a) State the rule that is used to find the direction of field acting at a point near a current carrying straight conductor.
(b) State Ampere's circuital law Using this law obtain an expression for the magnetic field duc to an infinitely long wire carrying current.
Long Answer Mar-2017 • PSEB Class 12th -
(a) An electric charge enters in electric field at right angles io the direction of electric fietd. What is the nature of the path followed?
(b) With the help of labelled diagram, give the principal, construction and theory of cyclotron.
Long Answer Mar-2017 • PSEB Class 12th -
(a) Define power of a lens.
(b) By giving assumptions made, derive the lens maker formula for a double convex lens.
or
(a) What are coherent sources of light ?
(b) State the necessary conditions for su-stained interference pattern. Derive an expression for the fringe width using Young's double slit method for interference of light
Long Answer Mar-2017 • PSEB Class 12th
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Answers about this subject, solved papers, and preparation.
01 Where can I find PSEB 12th Physics previous year question papers for practice?
This BRpaper subject page is meant to help students browse Punjab School Education Board Class 12 Physics previous year question papers in one subject-wise place. You can use these papers to practice board-style questions and review how Physics questions have been asked in past exams.
02 Does this page help with PSEB 12th Physics 1st semester question papers?
Yes, this page is organized for Physics under the 1st semester section, so students can use it to look for semester-wise paper access where available. It is useful for keeping Physics revision separate from other subjects while preparing.
03 How are previous year Physics papers different from PSEB Class 12 model or sample papers?
Previous year papers are actual past exam papers, while model or sample papers are practice formats released to show paper style or structure. Students usually use previous papers to see real question trends and use model papers to check the latest pattern guidance.
04 Can I use these Physics papers to understand the exam pattern and marks distribution?
Yes, previous papers are helpful for understanding question style, numericals, derivations, theory balance, and broad marks distribution. Students should also check the latest Physics structure or model paper separately for the most current exam pattern guidance.
05 Are PSEB 12th Physics important questions available from previous year papers?
Previous year papers do not guarantee exact repeat questions, but they are useful for spotting frequently tested chapters, common numerical types, derivations, and long-answer styles. Many students use them to shortlist important revision topics before the exam.
06 How should I use old PSEB 12th Physics papers for last-minute revision?
Solve a few recent papers in timed conditions, then review which chapters, numericals, and derivations feel weak. This helps with pattern familiarity, speed, and focused revision using your textbook, class notes, and teacher guidance where needed.