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

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Explain analytically how the stationary waves are formed

[8] Stationary Waves
Chapter: [8] Stationary Waves
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Hence show that the distance between node and adjacent antinode is λ/4

[8] Stationary Waves
Chapter: [8] Stationary Waves
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Derive Laplace’s law for spherical membrane of bubble due to surface tension.

[6] Surface Tension
Chapter: [6] Surface Tension
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The combined resistance of a galvanometer of resistance 500Ω and its shunt is 21Ω. Calculate the value of shunt.

[14] Magnetic Effects of Electric Current
Chapter: [14] Magnetic Effects of Electric Current
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The combined resistance of a galvanometer of resistance 500Ω and its shunt is 21Ω. Calculate the value of shunt.

[14] Magnetic Effects of Electric Current
Chapter: [14] Magnetic Effects of Electric Current
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A conductor of any shape, having area 40 cm2 placed in air is uniformly charged with a charge 0* 2µC. Determine the electric intensity at a point just outside its surface. Also, find the mechanical force per unit area of the charged conductor.

[∈0=8.85x10-12 S.I. units]

[12] Electrostatics
Chapter: [12] Electrostatics
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A particle in S.H.M. has a period of 2 seconds and amplitude of 10 cm. Calculate the acceleration when it is at 4 cm from its positive extreme position.

[4] Oscillations
Chapter: [4] Oscillations
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The surface tension of water at 0°C is 75.5 dyne/cm. Calculate surface tension of water at 25°C.

(α for water = 2.7×10-3/°C)

[6] Surface Tension
Chapter: [6] Surface Tension
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Derive an expression for excess pressure inside a drop of liquid.

[6] Surface Tension
Chapter: [6] Surface Tension
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If the frequency of incident light falling on a photosensitive material is doubled, then the kinetic energy of the emitted photoelectron will be ______.

[14] Dual Nature of Radiation and Matter
Chapter: [14] Dual Nature of Radiation and Matter
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A circular coil of 300 turns and average area 5 * 10-3m2 carries a current of 15A. Calculate the magnitude of magnetic moment associated with the coil.

[15] Magnetism
Chapter: [15] Magnetism
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Angle of contact for the pair of pure water with clean glass is _______.

[6] Surface Tension
Chapter: [6] Surface Tension
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The equation of a progressive wave is y = 7 sin (4t - 0.02x), where x and y are in cms and time t in seconds. The maximum velocity of a particle is _______.

[7] Wave Motion
Chapter: [7] Wave Motion
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The fundamental frequency of transverse vibration of a stretched string of radius r is proportional to _______.

[8] Stationary Waves
Chapter: [8] Stationary Waves
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A raindrop of diameter 4 mm is about to fall on the ground. Calculate the pressure inside the raindrop. [Surface tension of water T = 0.072 N/m, atmospheric pressure = 1.013 x 105 N/m2 ]

[6] Surface Tension
Chapter: [6] Surface Tension
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Draw a neat labelled diagram showing forces acting on the meniscus of water in a capillary tube.

[6] Surface Tension
Chapter: [6] Surface Tension
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A rectangular coil of a moving coil galvanometer contains 50 turns each having area 12 cm2 . It is suspended in radial magnetic field 0.025 Wb/m2 by a fibre of twist constant 15 x10-10 Nm/degree. Calculate the sensitivity of the moving coil galvanometer.

[14] Magnetic Effects of Electric Current
Chapter: [14] Magnetic Effects of Electric Current
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Define the angle of contact.

[6] Surface Tension
Chapter: [6] Surface Tension
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Water rises to a height 3.2 cm in a glass capillary tube. Find the height to which the same water will rise in another glass capillary having half area of cross section.

[6] Surface Tension
Chapter: [6] Surface Tension
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The average displacement over a period of S.H.M. is ______.

(A = amplitude of S.H.M.)

[4] Oscillations
Chapter: [4] Oscillations
Concept: undefined >> undefined
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