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DP IB Physics: HL

Topic Questions

Home / IB / Physics: HL / DP / Topic Questions / 3. Thermal Physics / 3.1 Thermal Concepts / Multiple Choice


3.1 Thermal Concepts

Question 1

Marks: 1

A heater applies a constant power of 150m to a solid material with a specific heat capacity of 1.8 × 103 J kg–1 K–1. The graph below shows how the temperature of the material varies with time as the solid melts and becomes a liquid.

question-7

What is the specific latent heat of fusion of the substance?

  • 4.2 × 103 J kg–1

  • 6.0 × 103 J kg–1

  • 4.2 × 104 J kg–1

  • 6.0 × 104 J kg–1

Choose your answer
  

Question 2

Marks: 1

Liquid iron solidifies without a change in temperature.

Which of the following is correct for the molecules in the solid phase compared with molecules in the liquid phase?

 

Potential energy

Kinetic energy

A.

same

same

B.

same

less

C.

less

less

D.

less

same

    Choose your answer
      
    Key Concepts
    Internal Energy

    Question 3

    Marks: 1

    A liquid is initially at its boiling point. Energy is continuously supplied to the liquid at a uniform rate until it has completely evaporated.

    Which graph shows how the temperature of the liquid, T, varies with the energy, Q, supplied to the liquid?

    q13_thermal-concepts_ib-sl-physics-mcq

      Choose your answer
        
      Key Concepts
      Phase Change Graphs

      Question 4

      Marks: 1

      In a refrigerator, 2 kg of water cools from 30 °C to 0 °C and then freezes to form ice also at 0 °C. The whole process takes 4000 seconds.

      The specific heat capacity of water is 4200 J kg−1 K−1.

      The specific latent heat of fusion of ice is 3.4 × 105 J kg−1.

      What is the power required by the refrigerator during this process?

      • 233 W

      • 240 W

      • 932 W

      • 260 W

      Choose your answer
        

      Question 5

      Marks: 1

      A 2 kW kettle supplies energy to a water of mass 1 kg. The initial temperature of the water is 20 °C. The specific heat capacity of water can be taken to be 4000 J kg–1 K–1.

      How long does it take for the water to start boiling?

      • 80 s

      • 120 s

      • 160 s

      • 210 s

      Choose your answer
        
      Key Concepts
      Specific Heat Capacity

      Question 6

      Marks: 1

      A substance loses energy at a constant rate. The graph shows how the temperature, T, of the substance varies with time, t, as the state of the substance changes from liquid to solid. 

      q16_thermal-concepts_ib-sl-physics-mcq

      What can be deduced about this substance from the graph shown?

      • The specific latent heat of fusion of the substance is greater than its specific latent heat of vaporization

      • The specific heat capacity of the liquid is lower than the specific heat capacity of the solid

      • The specific latent heat of fusion of the substance is less than its specific latent heat of vaporization

      • The specific heat capacity of the liquid is greater than the specific heat capacity of the solid

      Choose your answer
        
      Key Concepts
      Phase Change Graphs

      Question 7

      Marks: 1

      Aluminium melts at 660 °C. A mass m of solid aluminium is initially at a temperature of 645 °C. The aluminium is heated and melts into liquid aluminium and continues to be heated up to a final temperature of 720 °C.

      • Specific latent heat of fusion of aluminium = Lf
      • Specific heat capacity of solid aluminium = cS
      • Specific heat capacity of liquid aluminium = cL

      Which expression gives the energy needed for this change to occur?

      • m(15cS + Lf + 60cL)

      • m(cS + 15Lf + 75cL)

      • m(15cS + 60Lf + cL)

      • m(15cS + Lf + 75cL)

      Choose your answer
        

      Question 8

      Marks: 1

      The graph shows how the temperature T of a liquid varies with energy Q supplied to the liquid at a constant rate P.

      The gradient of the graph is z and the liquid has a specific heat capacity, c.

      q18_thermal-concepts_ib-sl-physics-mcq

      What is the mass of the liquid?

      • z c

      • fraction numerator 1 over denominator z c end fraction

      • p over c

      • z over c

      Choose your answer
        
      Key Concepts
      Specific Heat Capacity

      Question 9

      Marks: 1

      A sealed cylinder contains water at 10 °C and ice at 0 °C. The system has been thermally isolated from the surroundings. The ice and the water reach thermal equilibrium.

      What happens to the total internal energy of the system in order for equilibrium to be reached?

      • It reduces

      • It increases

      • It increases until the ice has melted and then remains constant

      • It remains constant

      Choose your answer
        
      Key Concepts
      Internal Energy

      Question 10

      Marks: 1

      A flask contains a mass m of a fluid. When 2000 J of heat is provided the temperature of the water and the flask increases by 10 K.

      The mass of the fluid is doubled, and the experiment is repeated. This time 4500 J is required to increase the temperature by 10 K.

      The specific heat capacity of the fluid is 5000 J kg–1 K–1.

      What is the value of m

      • 5 g

      • 25 g

      • 40 g

      • 50 g

      Choose your answer
        
      Key Concepts
      Specific Heat Capacity