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3.4 Forces

3.4 Forces

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Question 31

In this question use g=9.8 m s−2g = 9.8 \text{ m s}^{-2}g=9.8 m s−2. A scientific payload of mass 40 kg40 \text{ kg}40 kg is being tested on a rough inclined trackway that is 20 m20 \text{ m}20 m long and makes an angle of 25∘25^\circ25∘ with the horizontal. The origin, point OOO, is located at the foot of the trackway.

A payload is initially at rest at point AAA on the trackway. A winch line, kept parallel to the trackway, pulls the payload directly up the slope.

a.

When the tension in the winch line is 320 N320 \text{ N}320 N, the payload is observed to accelerate up the slope at 1.2 m s−21.2 \text{ m s}^{-2}1.2 m s−2. Calculate the coefficient of friction, μ\muμ, between the payload and the trackway surface.

[7]
bi.

The payload takes 3.5 seconds3.5 \text{ seconds}3.5 seconds to reach the top of the trackway. Determine the distance OAOAOA.

[3]
bii.

Other than air resistance, state one assumption you have made about the payload in answering part (b)(i).

[1]
Markscheme

3.4 Forces Questions

  1. A Level
  2. /Maths
  3. /3.4 Forces

87 exam-style questions on OCR (MEI) A Level Maths 3.4 Forces, covering 3.4.1 Language relating to forces, 3.4.2 Acceleration due to gravity, 3.4.3 Identify forces and draw force diagrams, 3.4.4 Resultant of concurrent forces, 3.4.5 Equilibrium of a particle, 3.4.6 Resolve a force into components (A-level only), 3.4.7 Equilibrium condition for resultant zero (A-level only), 3.4.8 Forces in equilibrium sum to zero (A-level only), 3.4.9 Equations for a particle in equilibrium (A-level only), 3.4.10 Frictional force and normal contact force (A-level only), 3.4.11 Model friction with F ≤ μR (A-level only), and 3.4.12 Apply Newton's Laws to friction problems (A-level only). Each one has a worked solution and a mark scheme showing where the marks go.

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