Measuring Density (Cambridge (CIE) IGCSE Combined Science: Physics): Revision Note

Exam code: 0653

Measuring density

  • This is a list of equipment used in these experiments:

Apparatus

Purpose

Regular and irregularly shaped objects

Objects used to measure the density of

A suitable liquid (e.g. sugar or salt solution)

Liquid to use to measure the density

A 30 cm ruler

To measure objects up to 30 cm in length

Vernier callipers

To measure objects to around 15 cm in length

Micrometer

To measure objects to around 3 cm in length

Digital balance

To measure the mass of objects

Displacement "Eureka" can

To measure the displacement of water of irregularly shaped objects

Measuring cylinders

To measure the volume of liquid

  • Resolution of measuring equipment:

    • 30 cm ruler = 1 mm

    • Vernier callipers = 0.1 mm

    • Micrometer = 0.01 mm

    • Digital balance = 0.01 g

Experiment 1: measuring the density of regularly shaped objects

  • The aim of this experiment is to determine the densities of regular objects by using measurements of their dimensions

Variables:

  • Independent variable = Type of shape / volume

  • Dependent variable = Density of the object

Method

Equipment needed to measure the density of regularly shaped objects

Digital vernier calliper reading 12.70 mm and a yellow electronic balance with metal samples, showing equipment for measuring dimensions and mass in physics experiments.

Apparatus for measuring the dimensions and mass of regularly shaped objects

  1. Place the object on a digital balance and note down its mass

  2. Use either the ruler, Vernier callipers or micrometer to measure the object’s dimensions (width, height, length, radius) – the apparatus will depend on the size of the object

  3. Repeat these measurements and take an average of these readings before calculating the density

Results

An example results table to measure the density of regularly shaped objects

Cuboid

Sphere

Cylinder

Mass readings / g

Average mass / g

Average mass / kg

Dimension reading / cm

Height

Radius

Radius

Width

Length

Length

Average dimensions / m

Height =

Width =

Length =

Radius =

Radius =

Length =

Volume / m3

H × W × L

43 × π × R3

π × R2 × L

A suitable results table must contain space for multiple readings and any calculations that need to be performed

Analysis of results

  • Calculate the volume of the object depending on whether it is a cube, sphere, cylinder (or other regular shape)

  • Then use the formula for density to calculate the density of each object 

    • The formulae for volume and density are explained in the revision note Density

Experiment 2: measuring the density of irregularly shaped objects

  • This experiment aims to determine the densities of irregular objects using a displacement technique

Variables:

  • Independent variable = Different irregular shapes / mass

  • Dependent variable = Volume of displaced water

Method

Equipment needed to measure the density of irregularly shaped objects

Diagram of a Eureka can on a stand filled with water. Water will overflow through a spout into a measuring cylinder to show displaced volume.

Apparatus for measuring the density of irregular objects

  1. Place the object on a digital balance and note down its mass

  2. Fill the eureka can with water up to a point just below the spout

  3. Place an empty measuring cylinder below its spout

  4. Carefully lower the object into the eureka can and let it sink in the liquid

  5. Measure the volume of the displaced water in the measuring cylinder

  6. Repeat these measurements and take an average before calculating the density

  • Alternatively, the object can be placed in a measuring cylinder containing a known volume of liquid, and the change in volume then measured

Diagram showing 24 cm3 of water in a measuring cylinder, and a reading of 31 cm3 when an object is placed in the measuring cylinder. The object has a mass of 55 g from the digital scale. The density of object is calculated as 7.9 g/cm³ and identified as iron.

When an irregular solid is placed in a measuring cylinder, it will sink in the liquid and the level of the liquid will rise by an amount equal to the volume of the solid

  • Once the mass and volume of the shape is known, its density can be calculated

Results

An example results table to measure the density of irregularly shaped objects

Object

Mass of object / g

Average mass / kg

Volume of water displaced / m3

Average volume of water displaced / m3

1

2

3

1

2

3

1

2

3

A suitable results table must contain space for multiple readings and any calculations that need to be performed

Analysis of results

  • The volume of the water displaced is equal to the volume of the object

  • Once the mass and volume of the shape are known, the density can be calculated using:

ρ = mV

Experiment 3: measuring the density of liquids

  • This experiment aims to determine the density of a liquid by finding a difference in its mass

Variables:

  • Independent variable = Volume of water added

  • Dependent variable = Mass of cylinder

Method

Equipment needed to measure the density of liquid

Two diagrams of a measuring cylinder on a digital balance: left cylinder is empty with a mass of 78 g, right cylinder is filled with liquid showing a mass of 193 g.

Apparatus for determining the density of a liquid

  1. Place an empty measuring cylinder on a digital balance and note down the mass

  2. Fill the cylinder with the liquid and note down the volume

  3. Note down the new reading on the digital balance

  4. Repeat these measurements and take an average before calculating the density

Results

An example results table to measure the density of a liquid

Mass of cylinder before / g

Average mass / kg

Volume of water added / m3

Mass of cylinder with water / g

Average mass of cylinder with water / kg

1

2

3

1

2

3

A suitable results table must contain space for multiple readings and any calculations that need to be performed

Analysis of results

  • Find the mass of the liquid by subtracting the original reading from the final reading

Mass of liquid = Mass of cylinder with water – mass of cylinder

  • Once the mass and volume of the liquid are known, the density can be calculated using the equation for calculating density

    • This is explained in the revision note Density

Evaluating the experiments

  • Systematic errors:

    • Ensure the digital balance is set to zero before taking measurements of mass

      • This includes when measuring the density of the liquid – remove the measuring cylinder and zero the balance before adding the liquid

  • Random errors:

    • A main cause of error in this experiment is in the measurements of length

      • Ensure to take repeat readings and calculate an average to keep this error to a minimum

    • Place the irregular object in the displacement can carefully, as dropping it from a height might cause water to splash, which will lead to an incorrect volume reading

Safety considerations

  • There is a lot of glassware in this experiment, ensure this is handled carefully

  • Water should not be poured into the measuring cylinder when it is on the digital balance

    • This could lead to electric shock

  • Make sure to stand up during the whole experiment, to react quickly to any spills

Examiner Tips and Tricks

When writing about experiments, a good sequence is as follows:

  • If you need to use an equation to calculate something, start off by giving it as this will give you some hints about what you need to mention later

  • List the apparatus that you need

  • State what measurements you need to make (your equation will give you some hints) and how you will measure them

  • Finally, state that you will repeat each measurement several times and take averages

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