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269 questions
Mathematics/Paper 4/Newton's Laws of Motion
CAIEAS Level9709-as · Paper 4

Newton's Laws of Motion

269 questions· page 1 of 27

Q62025 Feb/Mar·P422 partsMedium
(a)

It is given that μ=0.15\mu = 0.15 and X=20X = 20.

Find the time that it takes for the block to move 2m2\text{m} down the plane from rest.

(b)

It is given instead that μ0.15\mu \neq 0.15 and that when X=10X = 10, the block is on the point of moving down the plane.

Find the value of μ\mu and the value of XX for which the block is on the point of moving up the plane.

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Q12025 May/Jun·P414MMedium

A block of mass 12 kg12\text{ kg} is being pulled by a rope up a rough plane. The plane is inclined at an angle of 2020^\circ above the horizontal. The rope pulling the block is parallel to a line of greatest slope of the plane. The coefficient of friction between the block and the plane is 0.40.4. The acceleration of the block is 2 m s22\text{ m s}^{-2}.

Find the tension in the rope.

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Q52025 May/Jun·P423 partsMedium-Easy
(a)

Find the tensions in each of the strings.

(b)

Find the coefficient of friction between AA and the inclined plane.

(c)

When the system has been in motion for 1.5s1.5\text{s}, the string attached to AA breaks.

Find the total distance that AA travels up the plane from the instant that the system is released from rest to the instant that AA comes to instantaneous rest.

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Q22025 May/Jun·P434MMedium-Easy

A van of mass 4500 kg4500\text{ kg} is towing a trailer of mass 350 kg350\text{ kg} along a straight horizontal road. The van and trailer are connected by a light rigid tow-bar which is parallel to the road. There are resistance forces of X NX\text{ N} on the van and 120 N120\text{ N} on the trailer. The driving force produced by the van's engine is 2500 N2500\text{ N}. The tension in the tow-bar is T NT\text{ N}, and the acceleration of the van is 0.4 ms20.4\text{ ms}^{-2}.

Find the value of XX and the value of TT.

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Q52025 May/Jun·P432 partsMedium
(a)

The steady speed that the van could maintain when moving along a straight horizontal road is 50 ms150\text{ ms}^{-1}.

Show that k=0.5k = 0.5, and find the acceleration of the van when its speed is 25 ms125\text{ ms}^{-1} on this straight horizontal road.

(b)

The van begins to ascend a hill inclined at an angle θ\theta^\circ to the horizontal. The van travels along a line of greatest slope of the hill. The speed of the van at the start of the hill is 20 ms120\text{ ms}^{-1}, and its acceleration is 5a ms25a\text{ ms}^{-2}. Later, on the same hill, the speed of the van is 30 ms130\text{ ms}^{-1}, and its acceleration is a ms2a\text{ ms}^{-2}. The power of the van's engine remains at 62.5 kW62.5\text{ kW}, and the resistance force remains at 0.5v2 N0.5v^2\text{ N}.

Find the value of aa and the value of θ\theta.

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Q62025 Oct/Nov·P416MMedium-Hard

A particle AA of mass 2.5 kg2.5\text{ kg} is released from rest from the top of a smooth plane, which makes an angle of sin10.2\sin^{-1} 0.2 with the horizontal. The particle AA collides 22 seconds later with a particle BB, of mass 3 kg3\text{ kg}, which is moving up a line of greatest slope of the plane. The speed of BB immediately before the collision is 3.5 m s13.5\text{ m s}^{-1}. Immediately after the collision, BB has a velocity of 0.5 m s10.5\text{ m s}^{-1} down the plane.

Find the distance AA moves up the plane after the collision.

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Q82025 Oct/Nov·P412 partsMedium-Easy
(a)

Find the tension in the string.

(b)

Find the coefficient of friction between AA and the surface.

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Q22025 Oct/Nov·P425MMedium

A railway locomotive of mass 240000 kg240\,000\text{ kg} is towing a coach of mass 36000 kg36\,000\text{ kg} down a hill inclined at an angle of sin10.04\sin^{-1} 0.04 to the horizontal. The driving force produced by the locomotive is 450000 N450\,000\text{ N} and there are resistances to motion of 120000 N120\,000\text{ N} on the locomotive and 15000 N15\,000\text{ N} on the coach. The coupling between the locomotive and the coach is light, rigid and parallel to the hill.

Find the acceleration of the locomotive and the tension in the coupling.

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Q52025 Oct/Nov·P426MMedium

A block of mass 5 kg5\text{ kg} is being pulled straight down a line of greatest slope of a rough plane by a force of magnitude 20 N20\text{ N}. The plane is inclined at an angle of 1010^\circ to the horizontal and the 20 N20\text{ N} force acts at an angle of 3535^\circ above the line of greatest slope of the plane (see diagram). The coefficient of friction between the block and the plane is 0.40.4. The speed of the block when it passes a point OO is 2 m s12\text{ m s}^{-1}.

Find the speed of the block when it has moved 3 m3\text{ m} down the plane from OO.

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Q22025 Oct/Nov·P432 partsMedium-Easy
(a)

Show that c=80c = 80.

(b)

The motorcyclist now travels up a straight hill under maximum engine power. The hill makes an angle of sin1(320)\sin^{-1}\left(\frac{3}{20}\right) with the horizontal.

Find the steady speed at which the motorcyclist travels up the hill.

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