Newton's Law of Motion and It's Application
LAWS OF MOTION (ADDITIONAL)

371714 Two billiard balls of mass \(0.05 \mathrm{~kg}\) each moving in opposite directions with \(10 \mathrm{~ms}^{-1}\) collide and rebound with the same speed. If the time duration of contact is \(t=0.005 \mathrm{~s}\), then what is then force exerted on the ball due to each other?

1 \(100 \mathrm{~N}\)
2 \(200 \mathrm{~N}\)
3 \(300 \mathrm{~N}\)
4 \(400 \mathrm{~N}\)
LAWS OF MOTION (ADDITIONAL)

371715 A monkey of mass \(50 \mathrm{~kg}\) climbs on a rope which can withstand the tension (T) of \(350 \mathrm{~N}\). If monkey initially climbs down with an acceleration of \(4 \mathrm{~m} / \mathrm{s}^{2}\) and then climbs up with an acceleration of \(5 \mathrm{~m} / \mathrm{s}^{2}\). Choose the correct option \(\left(\mathrm{g}=10 \mathrm{~m} / \mathrm{s}^{2}\right)\)

1 \(\mathrm{T}=700 \mathrm{~N}\) while climbing upward
2 \(\mathrm{T}=350 \mathrm{~N}\) while going downward
3 Rope will break while climbing upward
4 Rope will break while going downward
LAWS OF MOTION (ADDITIONAL)

371716 A person is standing in an elevator. In which situation, he experiences weight loss?

1 When the elevator moves upward with constant acceleration
2 When the elevator moves downward with constant acceleration
3 When the elevator moves upward with uniform velocity
4 When the elevator moves downward with uniform velocity
LAWS OF MOTION (ADDITIONAL)

371717 A block of mass \(M\) placed inside a box descends vertically with acceleration ' \(a\) '. The block exerts a force equal to one fourth of its weight on the floor of the box.
The value of ' \(a\) ' will be

1 \(\frac{g}{4}\)
2 \(\frac{g}{2}\)
3 \(\frac{3 g}{4}\)
4 \(g\)
LAWS OF MOTION (ADDITIONAL)

371714 Two billiard balls of mass \(0.05 \mathrm{~kg}\) each moving in opposite directions with \(10 \mathrm{~ms}^{-1}\) collide and rebound with the same speed. If the time duration of contact is \(t=0.005 \mathrm{~s}\), then what is then force exerted on the ball due to each other?

1 \(100 \mathrm{~N}\)
2 \(200 \mathrm{~N}\)
3 \(300 \mathrm{~N}\)
4 \(400 \mathrm{~N}\)
LAWS OF MOTION (ADDITIONAL)

371715 A monkey of mass \(50 \mathrm{~kg}\) climbs on a rope which can withstand the tension (T) of \(350 \mathrm{~N}\). If monkey initially climbs down with an acceleration of \(4 \mathrm{~m} / \mathrm{s}^{2}\) and then climbs up with an acceleration of \(5 \mathrm{~m} / \mathrm{s}^{2}\). Choose the correct option \(\left(\mathrm{g}=10 \mathrm{~m} / \mathrm{s}^{2}\right)\)

1 \(\mathrm{T}=700 \mathrm{~N}\) while climbing upward
2 \(\mathrm{T}=350 \mathrm{~N}\) while going downward
3 Rope will break while climbing upward
4 Rope will break while going downward
LAWS OF MOTION (ADDITIONAL)

371716 A person is standing in an elevator. In which situation, he experiences weight loss?

1 When the elevator moves upward with constant acceleration
2 When the elevator moves downward with constant acceleration
3 When the elevator moves upward with uniform velocity
4 When the elevator moves downward with uniform velocity
LAWS OF MOTION (ADDITIONAL)

371717 A block of mass \(M\) placed inside a box descends vertically with acceleration ' \(a\) '. The block exerts a force equal to one fourth of its weight on the floor of the box.
The value of ' \(a\) ' will be

1 \(\frac{g}{4}\)
2 \(\frac{g}{2}\)
3 \(\frac{3 g}{4}\)
4 \(g\)
LAWS OF MOTION (ADDITIONAL)

371714 Two billiard balls of mass \(0.05 \mathrm{~kg}\) each moving in opposite directions with \(10 \mathrm{~ms}^{-1}\) collide and rebound with the same speed. If the time duration of contact is \(t=0.005 \mathrm{~s}\), then what is then force exerted on the ball due to each other?

1 \(100 \mathrm{~N}\)
2 \(200 \mathrm{~N}\)
3 \(300 \mathrm{~N}\)
4 \(400 \mathrm{~N}\)
LAWS OF MOTION (ADDITIONAL)

371715 A monkey of mass \(50 \mathrm{~kg}\) climbs on a rope which can withstand the tension (T) of \(350 \mathrm{~N}\). If monkey initially climbs down with an acceleration of \(4 \mathrm{~m} / \mathrm{s}^{2}\) and then climbs up with an acceleration of \(5 \mathrm{~m} / \mathrm{s}^{2}\). Choose the correct option \(\left(\mathrm{g}=10 \mathrm{~m} / \mathrm{s}^{2}\right)\)

1 \(\mathrm{T}=700 \mathrm{~N}\) while climbing upward
2 \(\mathrm{T}=350 \mathrm{~N}\) while going downward
3 Rope will break while climbing upward
4 Rope will break while going downward
LAWS OF MOTION (ADDITIONAL)

371716 A person is standing in an elevator. In which situation, he experiences weight loss?

1 When the elevator moves upward with constant acceleration
2 When the elevator moves downward with constant acceleration
3 When the elevator moves upward with uniform velocity
4 When the elevator moves downward with uniform velocity
LAWS OF MOTION (ADDITIONAL)

371717 A block of mass \(M\) placed inside a box descends vertically with acceleration ' \(a\) '. The block exerts a force equal to one fourth of its weight on the floor of the box.
The value of ' \(a\) ' will be

1 \(\frac{g}{4}\)
2 \(\frac{g}{2}\)
3 \(\frac{3 g}{4}\)
4 \(g\)
LAWS OF MOTION (ADDITIONAL)

371714 Two billiard balls of mass \(0.05 \mathrm{~kg}\) each moving in opposite directions with \(10 \mathrm{~ms}^{-1}\) collide and rebound with the same speed. If the time duration of contact is \(t=0.005 \mathrm{~s}\), then what is then force exerted on the ball due to each other?

1 \(100 \mathrm{~N}\)
2 \(200 \mathrm{~N}\)
3 \(300 \mathrm{~N}\)
4 \(400 \mathrm{~N}\)
LAWS OF MOTION (ADDITIONAL)

371715 A monkey of mass \(50 \mathrm{~kg}\) climbs on a rope which can withstand the tension (T) of \(350 \mathrm{~N}\). If monkey initially climbs down with an acceleration of \(4 \mathrm{~m} / \mathrm{s}^{2}\) and then climbs up with an acceleration of \(5 \mathrm{~m} / \mathrm{s}^{2}\). Choose the correct option \(\left(\mathrm{g}=10 \mathrm{~m} / \mathrm{s}^{2}\right)\)

1 \(\mathrm{T}=700 \mathrm{~N}\) while climbing upward
2 \(\mathrm{T}=350 \mathrm{~N}\) while going downward
3 Rope will break while climbing upward
4 Rope will break while going downward
LAWS OF MOTION (ADDITIONAL)

371716 A person is standing in an elevator. In which situation, he experiences weight loss?

1 When the elevator moves upward with constant acceleration
2 When the elevator moves downward with constant acceleration
3 When the elevator moves upward with uniform velocity
4 When the elevator moves downward with uniform velocity
LAWS OF MOTION (ADDITIONAL)

371717 A block of mass \(M\) placed inside a box descends vertically with acceleration ' \(a\) '. The block exerts a force equal to one fourth of its weight on the floor of the box.
The value of ' \(a\) ' will be

1 \(\frac{g}{4}\)
2 \(\frac{g}{2}\)
3 \(\frac{3 g}{4}\)
4 \(g\)