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3.5 Newton's Laws of Motion

3.5 Newton's Laws of Motion

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Question 24

A heavy-duty mining shuttle system consists of a power-lead unit of mass 1500 kg and an ore sled of mass 2500 kg, connected by a light, rigid coupling rod. The entire shuttle is pulled forward along a horizontal track by an overhead haulage cable attached to the front of the power-lead unit. The cable is inclined at an angle of 25∘ 25^\circ\,25∘ to the horizontal and exerts a constant tension of 24,000 N. The system accelerates from rest at a constant rate of 1.2 m s-2.

The power-lead unit experiences a constant resistance to motion of 8000 N.

a.

Show that the resistance to motion experienced by the ore sled is approximately 8950 N.

[3]
b.

At the instant the shuttle reaches a velocity of 6 m s-1, the haulage cable suddenly snaps. (i) Assuming the resistance forces on both units remain unchanged, calculate the tension (or thrust) in the coupling rod during the subsequent deceleration.

[3]
c.

(ii) Determine the total distance, ddd, the shuttle travels from the moment the cable snaps until it comes to a complete halt.

[2]
d.

State one modelling assumption you have made concerning the coupling rod.

[1]
Markscheme

3.5 Newton's Laws of Motion Questions

  1. A Level
  2. /Maths
  3. /3.5 Newton's Laws of Motion

49 exam-style questions on OCR (MEI) A Level Maths 3.5 Newton's Laws of Motion, covering 3.5.1 Meaning of Newton's three laws, 3.5.2 Equation of motion, 3.5.3 Equation of motion for a particle in a straight line, 3.5.4 Model a system of connected particles, 3.5.5 Equations of motion for individual particles, 3.5.6 System with no relative motion as a single particle, and 3.5.7 Equation of motion in a straight line or plane (A-level only). Each one has a worked solution and a mark scheme showing where the marks go.

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