Lesson MC5-MC7
MC5-MC7 Variable forces and power Quiz: AQA Further Maths, Unit 3
20 questions
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Lesson MC5-MC7, Variable forces and power: 20 multiple choice questions for the AQA Further Maths (7367), Unit 3: Optional application 1: mechanics, written with Revision Ninja.
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The 20 questions
-
Which expression gives the work done by a variable force F(x) on a particle moving from x = a to x = b?
- F(b) minus F(a)
- The integral of x F(x) with respect to x from a to b
- The integral of F(x) with respect to x from a to b
- The product F(a) times (b minus a)
-
A spring of stiffness k is extended by a distance x from its natural length. What is its elastic potential energy?
- kx/2
- kx^2/4
- kx^2/2
- 2kx^2
-
What is the SI unit of power?
- The watt
- The newton per metre
- The newton second
- The joule
-
A force F acts along the direction of motion of a particle moving with speed v. What is the power developed by the force?
- F divided by v
- F plus v
- F multiplied by v squared
- F multiplied by v
-
An elastic string has modulus of elasticity lambda and natural length l. When it is extended by x, what is its elastic potential energy?
- lambda l x^2 divided by 2
- lambda x^2 divided by l
- lambda x divided by 2l
- lambda x^2 divided by 2l
-
For an elastic spring of stiffness k, which expression gives the tension T when the spring is extended by x?
- T = k divided by x
- T = kx^2
- T = x divided by k
- T = kx
-
In a problem with no dissipative forces, which statement about mechanical energy is always true?
- Work done by the tension is always positive
- Potential energy always equals kinetic energy
- Kinetic energy is constant throughout the motion
- Total kinetic energy plus potential energy is constant
-
A variable force F = 3x^2 newtons acts along the x-axis. What is the work done as the particle moves from x = 0 m to x = 4 m?
- 24 J
- 16 J
- 64 J
- 48 J
-
A variable force F = 6x + 2 newtons acts along the x-axis. What is the work done as the particle moves from x = 0 m to x = 2 m?
- 14 J
- 16 J
- 20 J
- 12 J
-
A spring has stiffness 40 N/m. What is its elastic potential energy when extended by 0.2 m?
- 8 J
- 0.8 J
- 1.6 J
- 0.4 J
-
An elastic string has modulus 20 N and natural length 0.5 m. What is its elastic potential energy when extended by 0.1 m?
- 0.1 J
- 2 J
- 0.4 J
- 0.2 J
-
A car engine delivers a constant driving force of 1200 N at a speed of 15 m/s. What power is being delivered?
- 1.2 kW
- 80 W
- 180 kW
- 18 kW
-
A 0.5 kg particle on a smooth horizontal table is pushed from rest by a spring of stiffness 50 N/m compressed by 0.4 m. What is its speed when the spring reaches its natural length?
- 2 m/s
- 4 m/s
- 16 m/s
- 0.8 m/s
-
A car of constant power 30 kW moves at a constant speed of 25 m/s on a level road. What is the resistive force opposing its motion?
- 1500 N
- 12000 N
- 1200 N
- 750 N
-
A variable force F = 2 + 3x newtons acts along the x-axis. What is the work done as the particle moves from x = 0 to x = 2 metres?
- 13 J
- 6 J
- 10 J
- 8 J
-
A variable force F = 6 sqrt(x) newtons acts along the x-axis. What is the work done as the particle moves from x = 0 to x = 4 metres?
- 16 J
- 32 J
- 48 J
- 24 J
-
A particle of mass 0.5 kg is on a smooth table attached to a spring of stiffness 80 N/m and natural length 1 m. It is released from rest when extended by 0.3 m. What is its speed at the natural length?
- 3.6 m/s
- sqrt(7.2) m/s
- sqrt(28.8) m/s
- sqrt(14.4) m/s
-
A car moves at constant speed v against a resistance proportional to its speed, R = 60v newtons. What power is needed to maintain a speed of 20 m/s?
- 1.2 kW
- 12 kW
- 48 kW
- 24 kW
-
An elastic string has modulus 50 N and natural length 1 m. What is the work done in stretching it from an extension of 0.1 m to an extension of 0.3 m?
- 2 J
- 8 J
- 0.5 J
- 4 J
-
A variable resistive force F = 4x - x^2 newtons acts on a particle from x = 0 to x = 3 metres. What is the work done against this force?
- 12 J
- 18 J
- 9 J
- 4.5 J
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