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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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Define linear simple harmonic motion.

[5] Oscillations
Chapter: [5] Oscillations
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Discuss different modes of vibrations in an air column of a pipe open at both the ends.

[8] Stationary Waves
Chapter: [8] Stationary Waves
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State the cause of end correction.

[8] Stationary Waves
Chapter: [8] Stationary Waves
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Find the end correction for the pipe open at both the ends in fundamental mode.

[8] Stationary Waves
Chapter: [8] Stationary Waves
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Find the magnetization of a bar magnet of length 10 cm and cross-sectional area 4 cm2, if the magnetic moment is 2 Am2.

[11] Magnetic Materials
Chapter: [11] Magnetic Materials
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Find the magnetization of a bar magnet of length 10 cm and cross-sectional area 4 cm2, if the magnetic moment is 2 Am2.

[15] Magnetism
Chapter: [15] Magnetism
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When unknown resistance is determined by meter bridge, the error due to contact resistance
is minimized ______.

(A) by connecting both the resistances only in one gap.
(B) by interchanging the positions of known and unknown resistance.
(C) by using uniform wire.
(D) by obtaining the null point near the ends of the wire.

[13] Current Electricity
Chapter: [13] Current Electricity
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Using monochromatic light of wavelength λ in Young’s double slit experiment, the eleventh dark fringe is obtained on the screen for a phase difference of ______.

[11] Interference and Diffraction
Chapter: [11] Interference and Diffraction
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If two capillary tubes of different diameters are partially dipped in the same liquid vertically, then the rise of liquid ______.

[6] Surface Tension
Chapter: [6] Surface Tension
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Draw a neat labelled diagram of rise of liquid in capillary tube showing different components of tension (force).

[6] Surface Tension
Chapter: [6] Surface Tension
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A tube open at both ends has length 47 em. Calculate the fundamental frequency of air column. (Neglect end correction. Speed of sound in air is 3.3 x 102m/s}

[8] Stationary Waves
Chapter: [8] Stationary Waves
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A uniform solid sphere has a radius 0.1 m and density 6 x 103 kg/m3• Find its moment of inertia about a tangent to its surface.

[3] Angular Momentum
Chapter: [3] Angular Momentum
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Using analytical method for interference bands, obtain an expression for path difference between two light waves.

[11] Interference and Diffraction
Chapter: [11] Interference and Diffraction
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A potentiometer wire has length of 2m and resistance 10Ω. It is connected in series with resistance 990Ω and a cell of e.m.f. 2V. Calculate the potential gradient along the wire.

[13] Current Electricity
Chapter: [13] Current Electricity
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A ballet dancer spins about a vertical axis at 2.5Π rad/s with his both arms outstretched. With the arms folded, the moment of inertia about the same axis of rotation changes by 25%. Calculate the new speed of rotation in r.p.m.

[3] Angular Momentum
Chapter: [3] Angular Momentum
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Draw neat labelled diagrams for modes of vibration of an air column in a pipe when it is closed at one end.

Hence derive an expression for fundamental frequency in each case.

[8] Stationary Waves
Chapter: [8] Stationary Waves
Concept: undefined >> undefined

A soap bubble of radius 12 cm is blown. Surface tension of soap solution is 30 dyne/cm. Calculate the work done in blowing the soap bubble.

[6] Surface Tension
Chapter: [6] Surface Tension
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A particle executing linear S.H.M. has velocities v1 and v2 at distances x1 and x2 respectively from the mean position. The angular velocity of the particle is _______

[4] Oscillations
Chapter: [4] Oscillations
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The energy density at a point in a medium of dielectric constant 6 is 26.55 × 106 J/m3. Calculate electric field intensity at that point. (ε0 = 8.85 × 10−12 SI units).

[12] Electrostatics
Chapter: [12] Electrostatics
Concept: undefined >> undefined

In Young’s experiment, the ratio of intensity at the maxima and minima in an interference
pattern is 36 : 9. What will be the ratio of the intensities of two interfering waves?

[11] Interference and Diffraction
Chapter: [11] Interference and Diffraction
Concept: undefined >> undefined
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