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HSC Science (Computer Science) इयत्ता १२ वी - Maharashtra State Board Question Bank Solutions for Physics

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Physics
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Derive an expression for potential energy of a system of two point charges.

[8] Electrostatics
Chapter: [8] Electrostatics
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Obtain an expression for potential energy of a system of N point charges.

[8] Electrostatics
Chapter: [8] Electrostatics
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With the help of a neat labelled diagram, obtain an expression for the induced emf in a stationary coil in a changing magnetic field.

[12] Electromagnetic Induction
Chapter: [12] Electromagnetic Induction
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Define the term Nucleons.

[15] Structure of Atoms and Nuclei
Chapter: [15] Structure of Atoms and Nuclei
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A voltmeter has a range of 0 - 20 V and a resistance of 500 Q. Explain how can be used to measure voltages from 0 - 200 volt?

[9] Current Electricity
Chapter: [9] Current Electricity
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To convert a moving coil galvanometer into an ammeter we need to connect a ______.

[9] Current Electricity
Chapter: [9] Current Electricity
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Obtain an expression for e.m.f. induced in a coil rotating with uniform angular velocity in a uniform magnetic field. Show graphically the variation of e.m.f. with time (t).

Resistance of a potentiometer wire is 0.1Ω/cm. A cell of e.m.f 1.5V is balanced at 300 cm on this potentiometer wire. Calculate the current and balancing length for another cell of e.m.f. 1.4V on the same potentiometer wire.

[16] Electromagnetic Inductions
Chapter: [16] Electromagnetic Inductions
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A coil of 100 turns, each of area 0.02m2 is kept in a uniform field of induction 3.5 x10-5 T. If the coil rotates with a speed of 6000 r.p.m. about an axis in the plane of the coil and perpendicular to the magnetic induction, calculate peak value of e.m.f. induced in the coil.

[16] Electromagnetic Inductions
Chapter: [16] Electromagnetic Inductions
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Wavelengths of two notes in the air are`[70/153]^m` and `[70/157]^m`. Each of  these notes produces 8 beats per second with a tuning fork of fixed frequency. Find the velocity of sound in the air and frequency of the tuning fork.

[7] Wave Motion
Chapter: [7] Wave Motion
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State the law of conservation of angular momentum and explain with a suitable example.

[1] Rotational Dynamics
Chapter: [1] Rotational Dynamics
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Derive an expression for the total energy of electron in ‘n' th Bohr orbit. Hence show that energy of the electron is inversely proportional to the square of principal quantum number. Also define binding energy.

[18] Atoms, Molecules and Nuclei
Chapter: [18] Atoms, Molecules and Nuclei
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A car of mass 1500Kg rounds a curve of radius 250m at 90 Km/hour. Calculate the centripetal force acting on it.

[1] Circular Motion
Chapter: [1] Circular Motion
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A particle of mass m, just completes the vertical circular motion. Derive the expression for the difference in tensions at the highest and the lowest points.

[1] Circular Motion
Chapter: [1] Circular Motion
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Explain the concept of centripetal force.

[1] Circular Motion
Chapter: [1] Circular Motion
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Obtain an expression for the torque acting on a rotating body with constant angular acceleration. Hence state the dimensions and SI unit of torque.

[1] Rotational Dynamics
Chapter: [1] Rotational Dynamics
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In Doppler effect of light, the term “red shift” is used for ______.

(A) frequency increase

(B) frequency decrease

(C) wavelength decrease

(D) frequency and wavelength increase

[7] Wave Motion
Chapter: [7] Wave Motion
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Doppler effect is not applicable when _______.
(A) source and observer are at rest.
(B) there is a relative motion between source and observer.
(C) both are moving in opposite directions.
(D) both are moving in same direction with different velocities

[7] Wave Motion
Chapter: [7] Wave Motion
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The working of RADAR is based on ...............

a) resonance

b) speed of a star

c) Doppler effect

d) speed of rotation of sun

[7] Wave Motion
Chapter: [7] Wave Motion
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Obtain an expression for torque acting on a body rotating with uniform angular acceleration.

[1] Rotational Dynamics
Chapter: [1] Rotational Dynamics
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From earth's surface, ionospheric layer of atmosphere lies between ............

(a) 12 km to 50 km

(b) 50 km to 80 km

(c) 80 km to 400 km

(d) 400 km to 700 km

[20] Communication Systems
Chapter: [20] Communication Systems
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