Acceleration Due to Gravity of the Earth
PHXI08:GRAVITATION

359619 A projectile is fired from the surface of the earth with a velocity of \(5\;m{s^{ - 1}}\)and angle \(\theta\) with the horizontal. Another projectile fired from another planet with a velocity of \(3\;m{s^{ - 1}}\) at the same angle follows a trajectory which is identical with the trajectory of the projectile fired from the earth. The value of the acceleration due to gravity on the planet is (in \(m{s^{ - 2}}\)) (given \(g = 9.8\;m{s^{ - 2}}\) )

1 3.5
2 5.9
3 16.3
4 110.8
PHXI08:GRAVITATION

359620 If the change in the value of \({g}\) at a height \({h}\) above the surface of the earth is the same as at a depth \({x}\) below it, then \({(x}\) and \({h}\) being much smaller than radius of earth)

1 \({x=2 h}\)
2 \({x=h}\)
3 \({x=\dfrac{h}{2}}\)
4 \({x=h^{2}}\)
PHXI08:GRAVITATION

359621 The time period of a simple pendulum at the centre of the earth is

1 Zero
2 Infinite
3 Less than zero
4 2 Sec
PHXI08:GRAVITATION

359622 Assertion :
In the case of free fall of the lift, the man will feel weightlessness.
Reason :
In free falling, acceleration of lift is equal to acceleration due to gravity.

1 Both Assertion and Reason are correct and Reason is the correct explanation of the Assertion.
2 Both Assertion and Reason are correct but Reason is not the correct explanation of the Assertion.
3 Assertion is correct but Reason is incorrect.
4 Assertion is incorrect but reason is correct.
PHXI08:GRAVITATION

359619 A projectile is fired from the surface of the earth with a velocity of \(5\;m{s^{ - 1}}\)and angle \(\theta\) with the horizontal. Another projectile fired from another planet with a velocity of \(3\;m{s^{ - 1}}\) at the same angle follows a trajectory which is identical with the trajectory of the projectile fired from the earth. The value of the acceleration due to gravity on the planet is (in \(m{s^{ - 2}}\)) (given \(g = 9.8\;m{s^{ - 2}}\) )

1 3.5
2 5.9
3 16.3
4 110.8
PHXI08:GRAVITATION

359620 If the change in the value of \({g}\) at a height \({h}\) above the surface of the earth is the same as at a depth \({x}\) below it, then \({(x}\) and \({h}\) being much smaller than radius of earth)

1 \({x=2 h}\)
2 \({x=h}\)
3 \({x=\dfrac{h}{2}}\)
4 \({x=h^{2}}\)
PHXI08:GRAVITATION

359621 The time period of a simple pendulum at the centre of the earth is

1 Zero
2 Infinite
3 Less than zero
4 2 Sec
PHXI08:GRAVITATION

359622 Assertion :
In the case of free fall of the lift, the man will feel weightlessness.
Reason :
In free falling, acceleration of lift is equal to acceleration due to gravity.

1 Both Assertion and Reason are correct and Reason is the correct explanation of the Assertion.
2 Both Assertion and Reason are correct but Reason is not the correct explanation of the Assertion.
3 Assertion is correct but Reason is incorrect.
4 Assertion is incorrect but reason is correct.
PHXI08:GRAVITATION

359619 A projectile is fired from the surface of the earth with a velocity of \(5\;m{s^{ - 1}}\)and angle \(\theta\) with the horizontal. Another projectile fired from another planet with a velocity of \(3\;m{s^{ - 1}}\) at the same angle follows a trajectory which is identical with the trajectory of the projectile fired from the earth. The value of the acceleration due to gravity on the planet is (in \(m{s^{ - 2}}\)) (given \(g = 9.8\;m{s^{ - 2}}\) )

1 3.5
2 5.9
3 16.3
4 110.8
PHXI08:GRAVITATION

359620 If the change in the value of \({g}\) at a height \({h}\) above the surface of the earth is the same as at a depth \({x}\) below it, then \({(x}\) and \({h}\) being much smaller than radius of earth)

1 \({x=2 h}\)
2 \({x=h}\)
3 \({x=\dfrac{h}{2}}\)
4 \({x=h^{2}}\)
PHXI08:GRAVITATION

359621 The time period of a simple pendulum at the centre of the earth is

1 Zero
2 Infinite
3 Less than zero
4 2 Sec
PHXI08:GRAVITATION

359622 Assertion :
In the case of free fall of the lift, the man will feel weightlessness.
Reason :
In free falling, acceleration of lift is equal to acceleration due to gravity.

1 Both Assertion and Reason are correct and Reason is the correct explanation of the Assertion.
2 Both Assertion and Reason are correct but Reason is not the correct explanation of the Assertion.
3 Assertion is correct but Reason is incorrect.
4 Assertion is incorrect but reason is correct.
PHXI08:GRAVITATION

359619 A projectile is fired from the surface of the earth with a velocity of \(5\;m{s^{ - 1}}\)and angle \(\theta\) with the horizontal. Another projectile fired from another planet with a velocity of \(3\;m{s^{ - 1}}\) at the same angle follows a trajectory which is identical with the trajectory of the projectile fired from the earth. The value of the acceleration due to gravity on the planet is (in \(m{s^{ - 2}}\)) (given \(g = 9.8\;m{s^{ - 2}}\) )

1 3.5
2 5.9
3 16.3
4 110.8
PHXI08:GRAVITATION

359620 If the change in the value of \({g}\) at a height \({h}\) above the surface of the earth is the same as at a depth \({x}\) below it, then \({(x}\) and \({h}\) being much smaller than radius of earth)

1 \({x=2 h}\)
2 \({x=h}\)
3 \({x=\dfrac{h}{2}}\)
4 \({x=h^{2}}\)
PHXI08:GRAVITATION

359621 The time period of a simple pendulum at the centre of the earth is

1 Zero
2 Infinite
3 Less than zero
4 2 Sec
PHXI08:GRAVITATION

359622 Assertion :
In the case of free fall of the lift, the man will feel weightlessness.
Reason :
In free falling, acceleration of lift is equal to acceleration due to gravity.

1 Both Assertion and Reason are correct and Reason is the correct explanation of the Assertion.
2 Both Assertion and Reason are correct but Reason is not the correct explanation of the Assertion.
3 Assertion is correct but Reason is incorrect.
4 Assertion is incorrect but reason is correct.