Lesson 5.1.2
5.1.2 Solid, liquid and gas Quiz: OCR Physics, Unit 4
20 questions
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Lesson 5.1.2, Solid, liquid and gas: 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
-
According to the kinetic model, how are gas molecules arranged and moving?
- Far apart randomly
- Vibrating in place
- Tightly packed randomly
- Close in grid
-
What model describes matter as small particles in continuous random motion?
- Wave model
- Atomic model
- Continuous model
- Kinetic model
-
What key idea does Brownian motion provide direct experimental evidence for?
- Nuclear decay
- Random molecular motion
- Gravitational attraction
- Electrostatic repulsion
-
In a smoke cell, why do smoke particles display random motion?
- Air molecule collisions
- Thermal convection currents
- Light radiation pressure
- Electrostatic repulsion
-
Internal energy is defined as the sum of random potential energy and which other energy?
- Translational momentum
- Macroscopic kinetic energy
- Random kinetic energy
- Gravitational potential energy
-
When the temperature of a body rises, its internal energy:
- becomes zero
- increases
- stays the same
- decreases
-
What happens to internal energy as a substance melts at constant temperature?
- Stays constant
- Decreases
- Drops to zero
- Increases
-
Which type of motion do atoms exhibit in a solid lattice?
- Rotational
- Stationary
- Vibrating
- Translational
-
How do particles move relative to each other in a liquid?
- Remain static
- Slide past
- Move freely
- Vibrate fixed
-
What is assumed about forces between ideal gas molecules between collisions?
- Strongly attractive
- Negligible
- Infinitely large
- Strongly repulsive
-
How are particles arranged in a liquid compared to a solid?
- Disordered far
- Ordered close
- Ordered far
- Disordered close
-
What change causes the Brownian motion of smoke particles to become more vigorous?
- Decreasing air pressure
- Decreasing air temperature
- Increasing air temperature
- Increasing smoke mass
-
Why do gases have a much lower density than solids?
- Lower average speed
- Smaller molecular radius
- Large molecular spacing
- Smaller atomic mass
-
Absolute temperature is directly proportional to which molecular property?
- Maximum potential energy
- Total internal energy
- Mean kinetic energy
- Total potential energy
-
Which molecules are most likely to escape a liquid during evaporation?
- Highest kinetic energy
- Lowest kinetic energy
- Highest potential energy
- Lowest potential energy
-
Why does rapid compression of a gas cause its temperature to rise?
- Molecules gain kinetic energy
- Potential energy decreases
- Volume increases
- Molecules lose mass
-
What causes molecules in a gas to have a distribution of speeds?
- Equal masses
- Uniform forces
- Fixed temperatures
- Random collisions
-
Why are gases much more compressible than liquids?
- Smaller particle mass
- Large molecular spacing
- Lower absolute temperature
- Weaker individual molecules
-
During a change of phase at constant temperature, energy supplied increases which quantity?
- Molecular potential energy
- Molecular kinetic energy
- Substance temperature
- Average particle speed
-
What causes the pressure exerted by a gas on container walls?
- Molecular collisions
- Gravitational pull
- Thermal expansion
- Intermolecular repulsion
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