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Gravitation Test - 2

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Gravitation Test - 2
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Weekly Quiz Competition
  • Question 1
    1 / -0

    According to Kepler’s Law of areas,

    Solution

    Kepler law of areas describes the speed of a planet travelling in an elliptical orbit around the sun. A planet’s orbital speed changes, depending on how far it is from the Sun. The closer a planet is to the Sun, the stronger the Sun’s gravitational pull on it, and the faster the planet moves. The farther it is from the Sun, the weaker the Sun’s gravitational pull, and the slower it moves in its orbit. So, statement of Kepler's law of area is "The line joining the sun to the planet sweeps out equal areas in equal interval of time". i.e. areal velocity is constant.

     

  • Question 2
    1 / -0

    According to Kepler’s Law of orbits:

    Solution

    The orbit of a planet around the Sun (or of a satellite around a planet) is not a perfect circle. It is an ellipse—a “flattened” circle. The Sun (or the centre of the planet) occupies one focus of the ellipse. A focus is one of the two internal points that help determine the shape of an ellipse. The distance from one focus to any point on the ellipse and then back to the second focus is always the same.

     

  • Question 3
    1 / -0

    The angular velocity of a planet revolving in an elliptical orbit around the sun __________ when it comes near the sun

  • Question 4
    1 / -0

    Two satellites of Earth, S1 and S2, are moving in the same orbit. The mass of S1 is four times the mass of S2. Which of the following statements is true?

  • Question 5
    1 / -0

    A tunnel is dug along a diameter of the earth. What is the quantity of the force acting on a particle of mass m placed in the tunnel at a distance r from the surface of earth? Assume Mass of the earth is M and the radius of earth is R

  • Question 6
    1 / -0

    The following question has four choices out of which ONLY ONE is correct.

    Three particles each of mass 'm' are placed at the corners of an equilateral triangle of side 'b'. What will be the gravitational potential energy of the system of particles?

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