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Physical vs. Chemical Properties

Hello. In the previous lesson, you classified mixtures by asking whether their composition was uniform or non-uniform. This lesson shifts the question: rather than asking what kind of sample is this?, we ask what characteristics does this material have?

By the end, you will be able to classify a stated characteristic as a physical property or a chemical property, and explain your choice using one central idea: Does observing or testing the characteristic require the substance to become a new substance?


Properties describe matter

A property is a feature of a material that can be observed, measured, or tested. For example, copper is reddish-brown, water has a particular boiling point, and iron can rust in moist air. Each statement tells us something about the material.

The two major categories are:

  • A physical property can be observed or measured without changing the material’s chemical identity.
  • A chemical property describes a material’s ability to undergo a chemical reaction and form new substances.

The wording “chemical identity” means what the substance fundamentally is. Ice, liquid water, and water vapour all consist of water molecules, . They differ in state, but they are still water. In contrast, when wood burns, substances in the wood react with oxygen and form ash, gases, and water vapour. The original material has changed chemically.

This gives you a dependable classification question:

Could I determine this characteristic while the material remains the same substance?

  • If yes, it is usually a physical property.
  • If the characteristic concerns reacting, burning, corroding, or otherwise making new substances, it is a chemical property.

Physical and Chemical Properties

Watch “Physical and Chemical Properties” from MooMooMath and Science for a compact overview and a useful list of common examples.

Watch the definitions first, listening for the contrast between external traits and characteristics shown through chemical change. Then watch physical examples, noting that each can be measured without a reaction. Finish with chemical examples, especially flammability, corrosiveness, toxicity, and acidity.


Physical properties: observe or measure, but keep the same substance

A physical property tells you about a material without requiring it to change into a different substance. Some physical properties can be noticed with your senses; others require measurement or a simple physical test.

Common physical properties include:

Physical propertyWhat it describesExample
Colour or lustreAppearance of a materialGold is shiny; sulfur is yellow.
StateWhether it is solid, liquid, or gas at a stated temperatureMercury is liquid at room temperature.
HardnessResistance to scratching or dentingDiamond is very hard.
DensityMass per unit volumeOil is less dense than water.
Electrical conductivityAbility to carry electric currentCopper conducts electricity well.
SolubilityAbility to dissolve in a solventSalt dissolves in water.
MalleabilityAbility to be hammered into sheetsAluminum can be made into foil.
DuctilityAbility to be drawn into wiresCopper can be made into wire.
Melting point and boiling pointTemperatures at which state changes occurWater boils at a particular temperature.

A state change is particularly important. When ice melts, its particles move more freely, but each particle is still a water molecule. Since no new substance forms, melting point is a physical property. The same applies to freezing point and boiling point.

This infographic contrasts physical properties, such as colour, length, volume, and opacity, with chemical properties, such as acidity, reactivity, flammability, and toxicity. The distinction depends on whether the substance’s chemical identity remains unchanged during observation or testing.

Notice that a physical property does not have to be visible. Density cannot usually be seen directly, but it can be calculated from mass and volume without chemically changing the sample. Likewise, electrical conductivity may need equipment to measure, yet it is still physical because the material does not need to react to reveal it.

There is also a useful distinction between a property of a material and a feature of a particular object. A stainless-steel spoon may have a curved shape and a certain mass, but another spoon made from the same steel can have a different shape or mass. In contrast, density, conductivity, and corrosion resistance help describe the material itself.


Chemical properties: the potential to react

A chemical property describes what a substance can do chemically. You discover it by observing a chemical reaction, in which new substances form.

For instance, iron has the chemical property of reacting with oxygen, especially when water is present, to form rust. Rust is not iron; it is a new substance called iron oxide. Therefore, the ability of iron to corrode is a chemical property.

Common chemical properties include:

Chemical propertyWhat it means
Flammability or combustibilityAbility to burn in a reaction with oxygen
Reactivity with acidsAbility to react when placed in an acid
CorrosivenessAbility to chemically damage materials, often metals
Tendency to oxidizeAbility to react with oxygen
ToxicityAbility to cause harmful chemical effects in living things
ExplosivenessAbility to undergo a very rapid energy-releasing chemical reaction
Acidity or basicityChemical behaviour associated with acids or bases

The key is that these are statements of ability or potential:

  • “Gasoline is flammable” describes a chemical property.
  • “Iron reacts with acid” describes a chemical property.
  • “Bleach is corrosive” describes a chemical property.

You should never test flammability, toxicity, corrosiveness, or chemical reactivity yourself. In a classroom question, you classify the stated characteristic from the information given; you do not need to perform the test.

4.8: Physical and Chemical Properties - Chemistry LibreTexts

Read this Chemistry LibreTexts section to reinforce the identity-based definition and see how familiar examples are classified.

In the subsection “Physical Property,” read the definition and examples. Focus on why colour, conductivity, malleability, density, and melting point do not require a new substance to form. Then move to the “Chemical Properties” subsection. Read the explanation of reactivity, including the iron-rust example. Use the contrasting-properties table and the iron example that follow to check whether your reasoning matches the central test in this lesson.


Property versus change: a crucial distinction

The words property and change are related, but they are not the same.

A property describes what a substance is like or what it is capable of doing:

  • “Paper is flammable.”
  • “Iron corrodes in moist air.”
  • “Water has a boiling point.”
  • “Copper is ductile.”

A change describes an event that happened to a particular sample:

  • “The paper burned.”
  • “The iron nail rusted.”
  • “The water boiled.”
  • “The copper wire was bent.”

The next lesson will focus on classifying changes as physical or chemical. For now, notice the relationship:

Stated ideaWhat it isClassification
Water has a boiling point of at standard pressure.A propertyPhysical property
Water boils and becomes water vapour.A changePhysical change
Wood is flammable.A propertyChemical property
Wood burns and produces ash and gases.A changeChemical change

A property may involve a process, but the category depends on the identity of the material. Boiling involves a change of state but no new substance, so boiling point is physical. Burning forms new substances, so flammability is chemical.


A practical method for classification

When you encounter a characteristic in a question, use this short method.

  1. Identify the stated characteristic.
    Is it describing appearance, measurement, state, shape, or ability to react?

  2. Ask whether a new substance must form to reveal it.
    If not, classify it as physical. If yes, classify it as chemical.

  3. Give a reason tied to chemical identity.
    Do not rely only on memorizing lists.

Here is that reasoning applied to several examples:

CharacteristicClassificationReason
A liquid has a density of .PhysicalDensity is measured from mass and volume without creating a new substance.
A metal is shiny.PhysicalShine is observed while the material remains the same substance.
A substance can be hammered into thin sheets.PhysicalChanging shape does not change its chemical identity.
A gas has a boiling point of .PhysicalBoiling changes state, not chemical identity.
A metal reacts with hydrochloric acid.ChemicalThe reaction produces new substances.
A fuel is combustible.ChemicalCombustion is a chemical reaction with oxygen.
Iron can form rust in moist air.ChemicalRust is a new substance.
A solution is acidic.ChemicalAcidity describes chemical behaviour and reactivity.

A strong written explanation can use either of these sentence frames:

“This is a physical property because it can be observed or measured without changing the substance into a new substance.”

“This is a chemical property because it describes the substance’s ability to react and form new substances.”


Avoid the most common traps

“Anything involving heat is chemical.”

Not necessarily. Heating can cause melting or boiling, which are physical changes. A material’s melting point and boiling point are physical properties. Heat can also start a reaction, such as burning, but the deciding question is always whether new substances form.

“Anything that changes is chemical.”

Also not true. Cutting paper, crushing a can, dissolving sugar, and melting ice all change the sample physically. Chemical properties concern the ability to undergo a chemical reaction, not merely any kind of change.

“A property must be directly visible.”

No. Density, melting point, conductivity, and solubility are physical properties that often require measurement or testing. The test can still be physical if it leaves the substance chemically unchanged.

“Flammability is physical because you can see a flame.”

Seeing a flame is not the reason for the classification. Burning converts a fuel and oxygen into new substances, so flammability is chemical.

“Colour change is always a chemical property.”

Colour is a physical property. A colour change during an event can be evidence that a chemical change is happening, but that is a different claim. Context matters:

  • “Copper is reddish-brown” describes a physical property.
  • “The metal changed from grey to reddish-brown as it reacted” describes an observation of a change, possibly chemical.

Key takeaways

  • A physical property can be observed or measured without changing a substance’s chemical identity.
  • Common physical properties include colour, density, hardness, conductivity, solubility, malleability, and melting or boiling point.
  • A chemical property describes a substance’s capacity to undergo a chemical reaction and form new substances.
  • Common chemical properties include flammability, reactivity with acid, corrosion, toxicity, explosiveness, and acidity.
  • The best classification question is: Does identifying this characteristic require a chemical reaction that produces new substances?
  • Distinguish a property (“iron is corrosive”) from a change (“iron rusted”).

Next, you will use this foundation to classify observed events as physical changes or chemical changes.

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