Book a tutor

Investigating light, carbon dioxide and temperature

Plant nutrition · Photosynthesis · note 6 of 7

Investigating light, carbon dioxide and temperatureSpec 6.1.8

In short

The rate of photosynthesis can be measured by counting the oxygen bubbles released by pondweed such as Elodea per minute, or by collecting and measuring the gas. Change light intensity by moving a lamp, carbon dioxide with sodium hydrogencarbonate, or temperature with a water bath, keeping the other factors constant. Collecting the gas is more accurate.

Photosynthesis can be investigated by measuring the rate at which an aquatic plant such as Elodea (pondweed) releases oxygen. Bubbles of oxygen come from the cut end of the stem. Count the bubbles in a set time, or collect the gas and measure its volume.

Changing one factor at a time
Independent variableHow to change itKeep constant
Light intensityMove a lamp to different distances from the plant, measured with a ruler (a closer lamp gives a higher light intensity)Temperature, carbon dioxide concentration, the same plant
Carbon dioxide concentrationAdd different amounts of sodium hydrogencarbonate to the water (it releases carbon dioxide)Light intensity, temperature, the same plant
TemperatureStand the beaker in a water bath at different temperatures and check with a thermometerLight intensity, carbon dioxide concentration, the same plant

The dependent variable is the number of bubbles (or the volume of oxygen) produced per minute. Allow the plant to adjust for a few minutes after each change. Repeat each condition at least three times and calculate a mean.

Apparatus for the light intensity practical: a lamp, a ruler measuring the distance from lamp to pondweed, pondweed under an inverted funnel in a beaker of water, a measuring tube collecting oxygen bubbles, and a larger water bath around the beaker as a heat shield. (opens full size in a new tab)
Investigating light intensity: change the distance of the lamp and measure the oxygen produced.
Three line graphs of rate of photosynthesis / arbitrary units: against light intensity and against carbon dioxide concentration the rate rises then levels off; against temperature / °C the rate rises to an optimum then falls sharply. (opens full size in a new tab)
Typical results: light intensity and carbon dioxide concentration give a rise then level off; temperature gives an optimum then a sharp fall.

Typical results: as light intensity or carbon dioxide concentration increases, the rate increases and then levels off. As temperature increases, the rate rises to an optimum and then falls as enzymes are denatured.

Calculating a rate

A piece of pondweed releases 24 cm³ of oxygen in 6 minutes. Calculate the rate of photosynthesis in cm³ per minute.

  1. rate = volume of oxygen ÷ time
  2. rate = 24 ÷ 6

Answer: 4 cm³ per minute

Practical skill:

A lamp heats the water, so control the temperature by placing a beaker of water between the lamp and the plant, or use a cool LED lamp. When describing results, state the trend and quote figures from the table or graph.

Common mistake:

Counting bubbles is not very accurate because bubbles differ in size. Collecting and measuring the volume of gas is more accurate.

Written and checked against the Cambridge IGCSE Biology (0610) specification · Updated October 2026

Frequently asked questions

What are the products of photosynthesis used for?

The glucose made in photosynthesis is used for respiration, stored as starch, built into cellulose for cell walls, converted to sucrose for transport in the phloem, and used to make nectar to attract insects. Oxygen is released as a by-product. Glucose is also combined with nitrogen from nitrate ions to make amino acids.

How does light intensity affect the rate of photosynthesis?

Supplement As light intensity increases, the rate of photosynthesis increases, because light provides the energy for the process. The rate then levels off, because another factor, such as carbon dioxide concentration or temperature, becomes limiting. You can show this by moving a lamp closer to pondweed and counting the oxygen bubbles released per minute.

How does temperature affect the rate of photosynthesis?

Supplement As temperature rises, the rate of photosynthesis increases up to an optimum, because photosynthesis is controlled by enzymes and molecules move faster with more collisions. Above the optimum, the rate falls sharply because the enzymes are denatured. On a cold bright day, temperature is likely to be the limiting factor.

All 5 questions on Photosynthesis