Lesson 5.1.3
5.1.3 Thermal properties of materials Quiz: OCR Physics, Unit 4
20 questions
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Lesson 5.1.3, Thermal properties of materials: 20 multiple choice questions for the OCR Physics (H156), Unit 4: Newtonian world and astrophysics, written with Revision Ninja.
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The 20 questions
-
What quantity is the energy required per unit mass to raise temperature by one kelvin?
- Internal energy
- Specific heat capacity
- Specific latent heat
- Thermal capacity
-
The equation for heating a substance with specific heat capacity c is:
- E = m v^2 / 2 always
- E = mc(delta theta)
- E = mL
- E = VIt only
-
How much energy is needed to raise the temperature of 2.0 kg of water by 10 K? Take c = 4200 J kg^-1 K^-1.
- 2.1 x 10^4 J
- 8.4 x 10^3 J
- 4.2 x 10^2 J
- 8.4 x 10^4 J
-
200 J of energy raises the temperature of 0.50 kg of a metal by 10 K. What is its specific heat capacity?
- 400 J kg^-1 K^-1
- 100 J kg^-1 K^-1
- 4.0 J kg^-1 K^-1
- 40 J kg^-1 K^-1
-
The specific latent heat of fusion of ice is 3.3 x 10^5 J/kg. How much energy melts 0.20 kg of ice at 0 C?
- 3.3 x 10^4 J
- 6.7 x 10^4 J
- 6.7 x 10^3 J
- 1.7 x 10^6 J
-
What process requires energy per unit mass while maintaining a constant temperature?
- Temperature rise
- Thermal expansion
- Phase change
- Heat transfer
-
In the method of mixtures without heat loss, energy lost by the hotter object equals energy gained by what?
- Cooler object
- Thermometer
- Surroundings
- Container
-
In an electrical method for specific heat capacity, the electrical energy supplied is found from:
- E = VIt
- E = m g h
- E = mc delta theta
- E = mL
-
A 12 V heater carries 2.0 A for 100 s. How much electrical energy is supplied?
- 24 J
- 2400 J
- 0.17 J
- 600 J
-
2400 J of electrical energy heats 0.50 kg of a metal block by 4.0 K. What is the specific heat capacity of the metal?
- 4800 J kg^-1 K^-1
- 120 J kg^-1 K^-1
- 240 J kg^-1 K^-1
- 1200 J kg^-1 K^-1
-
100 g of hot water at 80 C is mixed with 100 g of cold water at 20 C. Ignoring losses, the final temperature is:
- 30 C
- 40 C
- 60 C
- 50 C
-
Which process requires breaking almost all intermolecular bonds in a substance?
- Vaporisation
- Melting
- Freezing
- Fusion
-
A heater of power 60 W supplies energy for 200 s to melt 0.05 kg of a solid at its melting point. What is the specific latent heat of fusion?
- 6.0 x 10^5 J/kg
- 3.0 x 10^3 J/kg
- 1.5 x 10^2 J/kg
- 2.4 x 10^5 J/kg
-
0.30 kg of water at 60 C is mixed with 0.20 kg of water at 20 C with no losses. What is the final temperature?
- 60 C
- 44 C
- 40 C
- 30 C
-
To convert 1.0 kg of water at 100 C into steam at 100 C, with specific latent heat of vaporisation 2.3 x 10^6 J/kg, the energy needed is:
- 4.2 x 10^5 J
- 4.2 x 10^6 J
- 2.3 x 10^3 J
- 2.3 x 10^6 J
-
A 0.50 kg block receives 300 J of energy and its temperature rises by 2.0 K. What is its specific heat capacity?
- 1200 J kg^-1 K^-1
- 300 J kg^-1 K^-1
- 150 J kg^-1 K^-1
- 600 J kg^-1 K^-1
-
What is the main effect of uninsulated heat losses in a thermal mixture experiment?
- Higher temperature
- Increased mass
- Zero energy
- Inaccurate capacity
-
In an experiment to find the specific latent heat of fusion, 0.025 kg is melted in 90 s by a 40 W supply. What is the latent heat?
- 9.0 x 10^3 J/kg
- 3.6 x 10^5 J/kg
- 2.3 x 10^4 J/kg
- 1.4 x 10^5 J/kg
-
A 0.40 kg metal block cools from 100 C to 20 C, releasing 25.6 kJ. What is its specific heat capacity?
- 1600 J kg^-1 K^-1
- 80 J kg^-1 K^-1
- 800 J kg^-1 K^-1
- 400 J kg^-1 K^-1
-
Which is the correct unit of specific latent heat?
- kg J^-1
- J kg^-1
- J kg^-1 K^-1
- J m^-3
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