IB Biology HL Energy & Matter in Ecosystems Paper 1 & 2 Practical skill ~9 min read

Pyramids of Energy

This is a skills page. Drawing a pyramid of energy is worth easy marks, and losing them almost always comes down to the same three things: scale, units and labels. Get those right and the shape draws itself.

📚 What you need to know

What the pyramid is showing

Each bar stands for one trophic level. The length of the bar is the energy contained in the biomass of the organisms at that level. Longer bar, more energy.

Where the missing energy goes

LossWhat it means
Incomplete consumptionNot every part of the organism gets eaten
Incomplete digestionSome of what is eaten cannot be digested, so it leaves as faeces
Heat loss during respirationEnergy released by respiration is lost to the environment as heat
ExcretionWaste products of metabolism such as carbon dioxide, water and urea carry energy away

Drawing one properly

🧩 The method

  1. Pick a scale that makes the largest bar fit the space you have. Write the scale down.
  2. Calculate each bar length as a fraction of the largest one: bar length = (energy at that level ÷ energy at level 1) × length of level 1 bar.
  3. Draw the bars centred on the same vertical line, widest at the bottom, stacked upwards.
  4. Keep the sides stepped, not sloped. Each bar is a rectangle with its own width.
  5. Label each level: producer, primary consumer, secondary consumer, tertiary consumer.
  6. Write the units on the diagram: energy per unit area per year, e.g. kJ m−2 year−1.
A pyramid of energy drawn honestly to scale Each bar is one tenth of the one below it. Look what happens.the top two bars are here TERTIARY CONSUMERS 10 kJ m⁻² yr⁻¹ SECONDARY CONSUMERS 100 kJ m⁻² yr⁻¹ PRIMARY CONSUMERS 1 000 kJ m⁻² yr⁻¹ PRODUCERS 10 000 kJ m⁻² yr⁻¹This is why real pyramids of energy look like a plinth with a pin on top. In an exam you may be told to sketch it roughly instead, so the top levels stay visible.
The bars really are 380, 38, 3.8 and 0.38 units wide here. Nothing is exaggerated – that is what a tenfold drop four times over looks like.
This is the honest version, and it is worth seeing once. In practice an exam will usually accept an approximate sketch, where each bar is a rough representation of the energy contained. Just never draw the top bar wider than the one below it.
What gains marks, and what throws them away Same data, two very different scores. CORRECT TERTIARY SECONDARY PRIMARY CONSUMERS PRODUCERS stepped sides, every level labelled bar length proportional to energy units shown: kJ m⁻² yr⁻¹ INCORRECT smooth sloping sides, no steps trophic levels not labelled no units, no scaleA pyramid of energy is a bar chart standing on end, not a triangle.
The triangle on the right is the single most common way students lose a drawing mark. Rectangles, always.

Worked examples

WE 1

Calculate bar lengths to scale

A grassland contains 8 000 kJ m−2 yr−1 in producers, 900 in primary consumers and 85 in secondary consumers. The producer bar is drawn 80 mm long. Calculate the length of the other two bars. (3 marks)

Step 1: find the scale 80 mm represents 8 000 kJ m−2 yr−1, so 1 mm = 100 kJ m−2 yr−1. Step 2: primary consumers 900 ÷ 8 000 × 80 = 9.0 mm Step 3: secondary consumers 85 ÷ 8 000 × 80 = 0.85 mm 9.0 mm and 0.85 mm yes, 0.85 mm really is that thin – say so in your answer rather than quietly drawing it bigger
WE 2

Calculate the percentage transferred

Using the same data, calculate the percentage of energy transferred from producers to primary consumers, and from primary to secondary consumers. (2 marks)

Step 1: producers to primary (900 ÷ 8 000) × 100 = 11.25 % Step 2: primary to secondary (85 ÷ 900) × 100 = 9.44 % Step 3: comment Both are close to the rough 10 % figure, so this ecosystem behaves as expected. 11.25 % and 9.44 % always divide by the level below, never by the producers, unless the question asks for the overall transfer
WE 3

Explain the shape

Explain why a pyramid of energy is always widest at the base and shows a stepped decrease. (3 marks)

Point 1: the base Producers contain the most energy in their biomass, because energy enters the ecosystem at this level. Point 2: the decrease Only about 10 % of the energy at one level is transferred to the biomass of the next, because of incomplete consumption, incomplete digestion, heat lost in respiration and excretion. Point 3: why stepped Each bar shows a fixed quantity of energy for one whole trophic level, so the change happens in steps between levels, not gradually within them. Energy only ever falls going up, and it falls in jumps naming two or three specific losses is usually worth more than repeating “energy is lost”

💡 Exam tips

⚠ Common mistakes

Up next: Energy Losses – the full account of where that missing 90 % goes, and why food chains run out of room after four or five levels.

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