Lesson 3.03u
3.03u Connected particles Quiz: OCR Maths, Unit 18
20 questions
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Lesson 3.03u, Connected particles: 20 multiple choice questions for the OCR Maths (H240), Unit 18: Forces and Newton's Laws, written with Revision Ninja.
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The 20 questions
-
Two particles are connected by a taut inextensible string. What property do their accelerations share?
- Equal direction
- Inverse magnitude
- Zero magnitude
- Equal magnitude
-
How does tension vary along a light string passing over a smooth pulley?
- It is constant
- It increases
- It decreases
- It is zero
-
What parameter of tension changes when a light string passes over a smooth pulley?
- Direction only
- Both magnitude and direction
- Magnitude only
- Neither magnitude nor direction
-
A suspended particle accelerates downwards. How does tension compare to its weight?
- Greater than weight
- Zero
- Less than weight
- Equal to weight
-
Two particles of masses m1 and m2 (m1 > m2) hang over a smooth pulley. Which expression gives their common acceleration?
- a = (m1 + m2)g/(m1 - m2)
- a = (m1 - m2)g/(m1 + m2)
- a = (m1 - m2)g
- a = m1 g/m2
-
A particle of mass 6 kg on a smooth horizontal table is connected by a light string over a smooth pulley to a particle of mass 2 kg hanging freely. Taking g = 9.8 m s^-2, what is the acceleration of the system?
- 19.6 m s^-2
- 9.8 m s^-2
- 2.45 m s^-2
- 4.9 m s^-2
-
In the set-up of a 6 kg particle on a smooth table connected to a 2 kg hanging particle, with a = 2.45 m s^-2, what is the tension in the string? Take g = 9.8 m s^-2.
- 14.7 N
- 19.6 N
- 4.9 N
- 29.4 N
-
A train engine of mass 10000 kg in total pulls a train with a driving force of 5000 N against a total resistance of 1000 N. What is the acceleration of the train?
- 0.1 m s^-2
- 0.5 m s^-2
- 0.6 m s^-2
- 0.4 m s^-2
-
A particle of mass 4 kg on a smooth horizontal table is connected over a smooth pulley to a particle of mass 2 kg hanging freely. Taking g = 9.8 m s^-2, what is the acceleration, to 2 decimal places?
- 6.53 m s^-2
- 4.90 m s^-2
- 3.27 m s^-2
- 1.96 m s^-2
-
For the 4 kg and 2 kg system on a smooth table with a = 3.27 m s^-2, what is the tension in the string, to 1 decimal place?
- 19.6 N
- 7.8 N
- 6.5 N
- 13.1 N
-
A particle of mass 4 kg rests on a rough horizontal table with coefficient of friction 0.2 and is connected over a smooth pulley to a particle of mass 2 kg hanging freely. Taking g = 9.8 m s^-2, what is the acceleration?
- 0.98 m s^-2
- 4.90 m s^-2
- 1.96 m s^-2
- 3.27 m s^-2
-
A particle of mass 3 kg on a smooth plane inclined at 30 degrees is connected over a smooth pulley at the top to a particle of mass 2 kg hanging freely. Taking g = 9.8 m s^-2, what is the acceleration?
- 2.45 m s^-2
- 4.90 m s^-2
- 1.96 m s^-2
- 0.98 m s^-2
-
In the set-up with the 3 kg particle on a smooth 30 degree plane and the 2 kg particle hanging, what is the tension in the string? Take g = 9.8 m s^-2.
- 14.7 N
- 19.6 N
- 9.8 N
- 17.6 N
-
Particles of masses 5 kg and 3 kg hang either side of a smooth pulley and are released from rest. Taking g = 9.8 m s^-2, how long does the 5 kg particle take to descend 2 m, to 2 decimal places?
- 2.56 s
- 0.90 s
- 1.28 s
- 1.63 s
-
A particle of mass 5 kg rests on a rough horizontal table with coefficient of friction 0.1 and is connected over a smooth pulley to a particle of mass 3 kg hanging freely. Taking g = 9.8 m s^-2, what is the acceleration, to 2 decimal places?
- 3.68 m s^-2
- 3.06 m s^-2
- 2.45 m s^-2
- 5.88 m s^-2
-
A train engine of mass 5000 kg pulls a truck of mass 3000 kg along a smooth horizontal track with a driving force of 4000 N on the engine and no resistance. What is the tension in the coupling between them?
- 2500 N
- 4000 N
- 1500 N
- 3500 N
-
When is the tension in a vertical string equal to the hanging particle's weight?
- Accelerating downwards
- In equilibrium
- In freefall
- Accelerating upwards
-
Two particles of equal mass 3 kg hang either side of a smooth pulley and remain at rest. Taking g = 9.8 m s^-2, what is the tension in the string?
- 14.7 N
- 58.8 N
- 29.4 N
- 0 N
-
Particles of masses 5 kg and 3 kg are connected over a smooth pulley and both accelerate. Taking g = 9.8 m s^-2, what is the tension in the string?
- 24.5 N
- 49 N
- 36.75 N
- 29.4 N
-
What is the tension in a connecting string when it becomes slack?
- Equal to weight
- Maximum
- Zero
- Constant
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