Work
PHXI06:WORK ENERGY AND POWER

355800 A person is holding a bucket by applying a force of \(10\,N.\) He moves a horizontal distance of \(5\,m\) and then climbs up a vertical distance of \(10\,m.\) Find the total work done by him.

1 \(50 \mathrm{~J}\)
2 \(150 J\)
3 \(100 J\)
4 \(200 J\)
PHXI06:WORK ENERGY AND POWER

355801 A body of mass \(m\) \(kg\) is ascending on a smooth inclined plane of inclination \(\sin \theta \left( { = \frac{1}{x}} \right)\) with constant acceleration of \(a\). The final velocity of the body is \(v\). The work done by the external force is (Initial velocity of the body \(=0\) )

1 \(\dfrac{m v^{2}}{2}\left(\dfrac{g}{2}+a\right)\)
2 \(\dfrac{1}{2} m v^{2}(g+x a)\)
3 \(\dfrac{m v^{2}}{2 a x}(g+x a)\)
4 \(\dfrac{2 m v^{2} x}{2}(a+g x)\)
PHXI06:WORK ENERGY AND POWER

355802 A body constrained to move in the \(y\)-direction is subjected to a force \(F=2 \hat{i}+15 \hat{j}+6 \hat{k} N\). The work done by this force, in moving the body through a distance of \(10\;m\) along \(y\)-axis is

1 \(100\,J\)
2 \(150\,J\)
3 \(120\,J\)
4 \(200\,J\)
PHXI06:WORK ENERGY AND POWER

355803 In which of the following, the work done by the mentioned force is negative?
The work done by:

1 The tension of the cable while the lift is ascending
2 The gravitational force when a body slides down an inclined place
3 The applied force to maintain uniform motion of a block on a rough horizontal surface
4 The gravitational force when a body is thrown up
PHXI06:WORK ENERGY AND POWER

355800 A person is holding a bucket by applying a force of \(10\,N.\) He moves a horizontal distance of \(5\,m\) and then climbs up a vertical distance of \(10\,m.\) Find the total work done by him.

1 \(50 \mathrm{~J}\)
2 \(150 J\)
3 \(100 J\)
4 \(200 J\)
PHXI06:WORK ENERGY AND POWER

355801 A body of mass \(m\) \(kg\) is ascending on a smooth inclined plane of inclination \(\sin \theta \left( { = \frac{1}{x}} \right)\) with constant acceleration of \(a\). The final velocity of the body is \(v\). The work done by the external force is (Initial velocity of the body \(=0\) )

1 \(\dfrac{m v^{2}}{2}\left(\dfrac{g}{2}+a\right)\)
2 \(\dfrac{1}{2} m v^{2}(g+x a)\)
3 \(\dfrac{m v^{2}}{2 a x}(g+x a)\)
4 \(\dfrac{2 m v^{2} x}{2}(a+g x)\)
PHXI06:WORK ENERGY AND POWER

355802 A body constrained to move in the \(y\)-direction is subjected to a force \(F=2 \hat{i}+15 \hat{j}+6 \hat{k} N\). The work done by this force, in moving the body through a distance of \(10\;m\) along \(y\)-axis is

1 \(100\,J\)
2 \(150\,J\)
3 \(120\,J\)
4 \(200\,J\)
PHXI06:WORK ENERGY AND POWER

355803 In which of the following, the work done by the mentioned force is negative?
The work done by:

1 The tension of the cable while the lift is ascending
2 The gravitational force when a body slides down an inclined place
3 The applied force to maintain uniform motion of a block on a rough horizontal surface
4 The gravitational force when a body is thrown up
PHXI06:WORK ENERGY AND POWER

355800 A person is holding a bucket by applying a force of \(10\,N.\) He moves a horizontal distance of \(5\,m\) and then climbs up a vertical distance of \(10\,m.\) Find the total work done by him.

1 \(50 \mathrm{~J}\)
2 \(150 J\)
3 \(100 J\)
4 \(200 J\)
PHXI06:WORK ENERGY AND POWER

355801 A body of mass \(m\) \(kg\) is ascending on a smooth inclined plane of inclination \(\sin \theta \left( { = \frac{1}{x}} \right)\) with constant acceleration of \(a\). The final velocity of the body is \(v\). The work done by the external force is (Initial velocity of the body \(=0\) )

1 \(\dfrac{m v^{2}}{2}\left(\dfrac{g}{2}+a\right)\)
2 \(\dfrac{1}{2} m v^{2}(g+x a)\)
3 \(\dfrac{m v^{2}}{2 a x}(g+x a)\)
4 \(\dfrac{2 m v^{2} x}{2}(a+g x)\)
PHXI06:WORK ENERGY AND POWER

355802 A body constrained to move in the \(y\)-direction is subjected to a force \(F=2 \hat{i}+15 \hat{j}+6 \hat{k} N\). The work done by this force, in moving the body through a distance of \(10\;m\) along \(y\)-axis is

1 \(100\,J\)
2 \(150\,J\)
3 \(120\,J\)
4 \(200\,J\)
PHXI06:WORK ENERGY AND POWER

355803 In which of the following, the work done by the mentioned force is negative?
The work done by:

1 The tension of the cable while the lift is ascending
2 The gravitational force when a body slides down an inclined place
3 The applied force to maintain uniform motion of a block on a rough horizontal surface
4 The gravitational force when a body is thrown up
PHXI06:WORK ENERGY AND POWER

355800 A person is holding a bucket by applying a force of \(10\,N.\) He moves a horizontal distance of \(5\,m\) and then climbs up a vertical distance of \(10\,m.\) Find the total work done by him.

1 \(50 \mathrm{~J}\)
2 \(150 J\)
3 \(100 J\)
4 \(200 J\)
PHXI06:WORK ENERGY AND POWER

355801 A body of mass \(m\) \(kg\) is ascending on a smooth inclined plane of inclination \(\sin \theta \left( { = \frac{1}{x}} \right)\) with constant acceleration of \(a\). The final velocity of the body is \(v\). The work done by the external force is (Initial velocity of the body \(=0\) )

1 \(\dfrac{m v^{2}}{2}\left(\dfrac{g}{2}+a\right)\)
2 \(\dfrac{1}{2} m v^{2}(g+x a)\)
3 \(\dfrac{m v^{2}}{2 a x}(g+x a)\)
4 \(\dfrac{2 m v^{2} x}{2}(a+g x)\)
PHXI06:WORK ENERGY AND POWER

355802 A body constrained to move in the \(y\)-direction is subjected to a force \(F=2 \hat{i}+15 \hat{j}+6 \hat{k} N\). The work done by this force, in moving the body through a distance of \(10\;m\) along \(y\)-axis is

1 \(100\,J\)
2 \(150\,J\)
3 \(120\,J\)
4 \(200\,J\)
PHXI06:WORK ENERGY AND POWER

355803 In which of the following, the work done by the mentioned force is negative?
The work done by:

1 The tension of the cable while the lift is ascending
2 The gravitational force when a body slides down an inclined place
3 The applied force to maintain uniform motion of a block on a rough horizontal surface
4 The gravitational force when a body is thrown up