हिंदी
कर्नाटक बोर्ड पी.यू.सी.पीयूसी विज्ञान कक्षा ११

The Acceleration of Moon with Respect to Earth is 0⋅0027 M S−2 and the Acceleration of an Apple Falling on Earth' Surface is About 10 M S−2. - Physics

Advertisements
Advertisements

प्रश्न

The acceleration of moon with respect to earth is 0⋅0027 m s−2 and the acceleration of an apple falling on earth' surface is about 10 m s−2. Assume that the radius of the moon is one fourth of the earth's radius. If the moon is stopped for an instant and then released, it will fall towards the earth. The initial acceleration of the moon towards the earth will be

विकल्प

  • 10 m s−2

  • 0⋅0027 m s−2

  • 6⋅4 m s−2

  • 5⋅0 m s−2.

MCQ
Advertisements

उत्तर

(b) 0⋅0027 m s−2

We know that the distance of the Moon from the Earth is about 60 times the radius of the earth. So, acceleration due to gravity at that distance is 0.0027 m/s2. When the Moon is stopped for an instant and then released, it will fall towards the Earth with an initial acceleration of 0.0027 m/s2.

shaalaa.com
  क्या इस प्रश्न या उत्तर में कोई त्रुटि है?
अध्याय 11: Gravitation - MCQ [पृष्ठ २२४]

APPEARS IN

एचसी वर्मा Concepts of Physics Vol. 1 [English] Class 11 and 12
अध्याय 11 Gravitation
MCQ | Q 1 | पृष्ठ २२४

संबंधित प्रश्न

If heavier bodies are attracted more strongly by the earth, why don't they fall faster than the lighter bodies?


The acceleration of the moon just before it strikes the earth in the previous question is


If the acceleration due to gravity at the surface of the earth is g, the work done in slowly lifting a body of mass m from the earth's surface to a height R equal to the radius of the earth is


Take the effect of bulging of earth and its rotation in account. Consider the following statements :

(A) There are points outside the earth where the value of g is equal to its value at the equator.
(B) There are points outside the earth where the value of g is equal to its value at the poles.


Find the acceleration due to gravity of the moon at a point 1000 km above the moon's surface. The mass of the moon is 7.4 × 1022 kg and its radius is 1740 km.


What is the acceleration due to gravity on the top of Mount Everest? Mount Everest is the highest mountain peak of the world at the height of 8848 m. The value at sea level is 9.80 m s−2.


A body is weighed by a spring balance to be 1.000 kg at the North Pole. How much will it weigh at the equator? Account for the earth's rotation only.


A particle is fired vertically upward from earth's surface and it goes up to a maximum height of 6400 km. Find the initial speed of particle.


Explain the variation of g with latitude.


Explain the variation of g with altitude.


Explain the variation of g with depth from the Earth’s surface.


Suppose we go 200 km above and below the surface of the Earth, what are the g values at these two points? In which case, is the value of g small?


The earth is an approximate sphere. If the interior contained matter which is not of the same density everywhere, then on the surface of the earth, the acceleration due to gravity ______.


Which of the following options are correct?

  1. Acceleration due to gravity decreases with increasing altitude.
  2. Acceleration due to gravity increases with increasing depth (assume the earth to be a sphere of uniform density).
  3. Acceleration due to gravity increases with increasing latitude.
  4. Acceleration due to gravity is independent of the mass of the earth.

A ball is immersed in water kept in container and released. At the same time container is accelerated in horizontal direction with acceleration, `sqrt44` m/s2. Acceleration of ball w.r.t. container is ______ m/s2 (specific gravity of ball = 12/17, g = 10 m/s2)


The percentage decrease in the weight of a rocket, when taken to a height of 32 km above the surface of the earth will, be ______.

(Radius of earth = 6400 km)


Share
Notifications

Englishहिंदीमराठी


      Forgot password?
Use app×