IB Physics SL Topic B.1 — Heat & Thermal Transfer Paper 1 & 2 States of Matter ~7 min read

States of Matter

Solid, liquid or gas — every substance is really just the same particles, arranged and moving differently. The kinetic theory of matter is the model that explains why.

📘 What you need to know

The Kinetic Theory of Matter

The kinetic theory of matter is a model used to explain the observed properties of solids, liquids and gases. In this model, particles are treated as small, rigid spheres. What changes between the three states isn’t the particles themselves, but how closely they’re packed, how they’re arranged, and how much kinetic energy they carry.

Solids

In a solid, particles are:

SOLID
Particles in a solid sit in a fixed lattice, with no space between them, and can only vibrate about their fixed positions

These features give solids their familiar behaviour: a fixed shape (though some solids can be deformed under enough force), a fixed volume, strong resistance to compression, and the highest densities of the three states.

Liquids

In a liquid, particles are:

LIQUID
Particles in a liquid stay close together but are randomly arranged, allowing them to flow past one another

As a result, liquids take the shape of whatever container holds them, but still have a fixed volume. They’re difficult to compress, and sit at a medium density — lower than solids, but higher than gases.

Gases

In a gas, particles are:

GAS
Particles in a gas are widely spaced and move freely in all directions, occasionally colliding with each other and the container walls

This gives gases no fixed shape and no fixed volume — they expand to fill whatever space is available. Because there’s so much empty space between particles, gases can be compressed easily, and have by far the lowest densities — roughly a thousand times smaller than solids or liquids.

Quick recap: Solids — fixed shape, fixed volume, high density. Liquids — no fixed shape, fixed volume, medium density. Gases — no fixed shape, no fixed volume, low density. The difference always comes down to particle spacing, arrangement and energy.
WE 1

A sample of gas is compressed into a much smaller container without changing its temperature. Explain, using the kinetic theory of matter, why this is possible for a gas but would not be possible for a solid.

Reasoning In a gas, particles are far apart with large amounts of empty space between them, so pushing them closer together is mostly a matter of reducing that empty space. Contrast with a solid In a solid, particles are already closely packed with no space between them, so there’s essentially nothing left to compress. Gases compress easily; solids effectively don’t
WE 2

Explain, in terms of particle arrangement, why a liquid takes the shape of its container but a solid does not.

Reasoning Particles in a liquid are randomly arranged and free to flow past one another, so the liquid has no rigid internal structure to hold a shape of its own. Contrast with a solid Particles in a solid are locked into a fixed lattice and can only vibrate about set positions, giving the solid a shape that doesn’t change on its own. Liquids flow into their container’s shape; solids hold their own

💡 Top tips

⚠ Common mistakes

Up next: Density — where we turn today’s ideas about particle packing into an actual number you can calculate.

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