WorksheetsIdeal Gas and Non-Ideal Gas (Real Gas) Behaviour
Total questions: 10
Worksheet time: 10mins
By sealing gas in a container so the amount of gas is constant, what kind of system is created?
a closed system
an open system
an isolated system
a lymphatic system
An ideal gas follows all the assumptions of Kinetic Molecular Theory of Gases.
True
False
Even more so when they're close together, particles in real gases are ___
attracted to each other
repelled by each other
massless
mystical vapors
Under which conditions of temperature and pressure does carbon dioxide behave most like an ideal gas?
Low temperature and low pressure
Low temperature and high pressure
High temperature and low pressure
High temperature and high pressure
Under which conditions of temperature and pressure does a sample of neon behave most like an ideal gas?
100K and 0.25 atm
100K and 25 atm
400K and 0.25 atm
400K and 25 atm
A real gas differs from an ideal gas because the molecules of a real gas have
A) Some volume and no attraction for each other
B) Some volume and some attraction for each other
C) No volume and no attraction for each other
D) No volume and come attraction for each other
One reason that a real gas deviates from an ideal gas is that the molecules of a real gas have
a straight-line motion
no net loss of energy on collision
a negligible volume
forces of attraction for each other
Which statement describes the particles of an ideal gas based on the kinetic molecular theory?
The gas particles are relatively far apart and have negligible volume.
The gas particles are in constant, nonlinear motion.
The gas particles have attractive forces between them.
The gas particles have collisions without transferring energy.
A real gas behaves more like an ideal gas when the gas molecules are
close and have strong attractive forces between them
close and have weak attractive forces between them
far apart and have strong attractive forces between them
far apart and have weak attractive forces between them
The faster the gas particles move...
the lower the force with which they collide with the walls of their container.
the greater the force with which they collide with the walls of their container.
has no impact on the force with which they collide with the walls of their container.
