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HSC Science (Computer Science) १२ वीं कक्षा - Maharashtra State Board Important Questions

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Find the total energy and binding energy of an artificial satellite of mass 800 kg orbiting at a height of 1800 km above the surface of the earth.

[G = 6.67 x 10-11 S.I. units, Radius of earth : R = 6400 km, Mass of earth : M = 6 x 1024 kg]

Appears in 1 question paper
Chapter: [2] Gravitation
Concept: Binding Energy and Escape Velocity of a Satellite

Define the angle of contact.

Appears in 1 question paper
Chapter: [2] Mechanical Properties of Fluids
Concept: Surface Tension

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.

Appears in 1 question paper
Chapter: [2] Mechanical Properties of Fluids
Concept: Surface Tension

In which of the following substances, surface tension increases with increase in temperature ?

  1. Copper
  2. Molten copper
  3. Iron
  4. Molten iron
Appears in 1 question paper
Chapter: [2] Mechanical Properties of Fluids
Concept: Surface Tension

'n' droplets of equal size of radius r coalesce to form a bigger drop of radius R. The energy liberated is equal to...................

(T =Surface tension of water)

`(a) 4piR^2T[n^(1/3)-1]`

`(b) 4pir^2T[n^(1/3)-1]`

`(c) 4piR^2T[n^(2/3)-1]`

`(d)4 pir^2T[n^(2/3)-1]`

Appears in 1 question paper
Chapter: [2] Mechanical Properties of Fluids
Concept: Surface Tension

The surface tension of water at 0ºc is 75·5 dyne/cm. Find surface tension of water at 25°C. [ α for water = 0·0021/°C ]

Appears in 1 question paper
Chapter: [2] Mechanical Properties of Fluids
Concept: Surface Tension

Explain the rise of liquid in the capillary on the basis of pressure difference.

Appears in 1 question paper
Chapter: [2] Mechanical Properties of Fluids
Concept: Capillarity and Capillary Action

The escape velocity of a body from the surface of the earth is 11.2 km/s. If a satellite were to orbit close to the surface, what would be its critical velocity?

Appears in 1 question paper
Chapter: [2] Gravitation
Concept: Binding Energy and Escape Velocity of a Satellite

Derive an expression for acceleration due to gravity at depth ‘d’ below the earth’s surface.

Appears in 1 question paper
Chapter: [2] Gravitation
Concept: Variation in the Acceleration>Variation in Gravity with Altitude

Calculate the density of paraffin oil, if glass capillary of diameter 0.25 mm dipped in paraffin oil of surface tension 0.0245 N/m rises to a height of 4 cm. (Angle of contact of paraffin with glass = 28° and acceleration due to gravity = 9.8 m/s2.)

Appears in 1 question paper
Chapter: [2] Mechanical Properties of Fluids
Concept: Capillarity and Capillary Action

Draw a neat, labelled diagram for a liquid surface in contact with a solid, when the angle of contact is acute.

Appears in 1 question paper
Chapter: [2] Mechanical Properties of Fluids
Concept: Capillarity and Capillary Action

A hole is drilled half way to the centre of the Earth. A body is dropped into the hole. How much will it weigh at the bottom of the hole if the weight of the body on the Earth’s surface is 350 N? 

Appears in 1 question paper
Chapter: [2] Gravitation
Concept: Variation in the Acceleration>Variation in Gravity with Altitude

The total energy of free surface of a liquid drop is 2π times the surface tension of the liquid. What is the diameter of the drop? (Assume all terms in SI unit).

Appears in 1 question paper
Chapter: [2] Mechanical Properties of Fluids
Concept: Surface Tension

Two soap bubbles have radii in the ratio 4:3. What is the ratio of work done to blow these bubbles?

Appears in 1 question paper
Chapter: [2] Mechanical Properties of Fluids
Concept: Capillarity and Capillary Action

Define surface tension and surface energy.

Appears in 1 question paper
Chapter: [2] Mechanical Properties of Fluids
Concept: Surface Tension

Prove that `g_h=g(1-"2h"/R)` where gh is the acceleration due to gravity at altitude h and h << R (R is the radius of the earth).

Appears in 1 question paper
Chapter: [2] Gravitation
Concept: Variation in the Acceleration>Variation in Gravity with Altitude

If the Earth completely loses its gravity, then for any body _______.

(A) both mass and weight become zero.
(B) neither mass nor weight become zero.
(C) weight becomes zero but not the mass.
(D) mass becomes zero but not the weight.

Appears in 1 question paper
Chapter: [2] Gravitation
Concept: Weightlessness

If two capillary tubes of different diameters are partially dipped in the same liquid vertically, then the rise of liquid ______.

Appears in 1 question paper
Chapter: [2] Mechanical Properties of Fluids
Concept: Capillarity and Capillary Action

Draw a neat labelled diagram of rise of liquid in capillary tube showing different components of tension (force).

Appears in 1 question paper
Chapter: [2] Mechanical Properties of Fluids
Concept: Capillarity and Capillary Action

State Kepler's laws of planetary motion.

Appears in 1 question paper
Chapter: [2] Gravitation
Concept: Kepler’s Laws
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