IB Biology HL Energy & Matter in Ecosystems Paper 1 & 2 ~10 min read

Energy Flow in Ecosystems

Energy does not travel through a food chain as a glowing beam. It travels as molecules – sugars, fats and proteins that get eaten, digested and rebuilt. Once you picture it that way, every arrow in a food chain makes sense.

📚 What you need to know

Where the chemical energy comes from

Photosynthesis is the process of converting light energy into chemical energy. Plants use light to power reactions that build organic molecules, also called carbon compounds:

The key idea Energy is not stored on its own. It is stored inside the bonds of carbon compounds, so wherever those molecules go, the energy goes too.

Passing it on by being eaten

Here is the chain of events, and it is worth learning as a chain because that is how “explain” questions are marked:

🧩 From plant to predator

  1. The plant is ingested by a primary consumer.
  2. The consumer digests the plant tissue and absorbs the carbon compounds, which still contain the stored chemical energy.
  3. Those compounds are either used to fuel respiration, or used to build up animal tissue.
  4. Building tissue means the chemical energy is now stored in the consumer’s own body.
  5. When that consumer is eaten, its carbon compounds and their energy pass to the secondary consumer, and so on up the chain.

And if nothing eats it? When an organism dies, the chemical energy stored in the carbon compounds of its tissues passes to detritivores and saprotrophs instead.

How energy moves through a food chain HEAT LOST TO THE ENVIRONMENT AT EVERY STAGE SUN light energy PRODUCER photosynthesis PRIMARY consumer SECONDARY consumer TERTIARY consumer feeding feeding feeding death, faeces and uneaten parts DETRITIVORES AND SAPROTROPHS they get the energy nothing else tookEnergy flows one way through the chain. It never comes back. Every box leaks heat upwards, and every box leaks dead material downwards. That is why the arrows always point away from the food and towards the feeder.
Two things leave every trophic level: heat, which is gone for good, and dead material, which the decomposers deal with.

Food chains

A food chain shows the feeding relationships between organisms in an ecosystem.

What the arrow means The arrow shows the transfer of energy (as chemical energy in carbon compounds) and biomass, from one trophic level to the next, by the process of feeding.

So the arrow always points from the thing being eaten towards the thing eating it. Grass rabbit means “energy moves from the grass into the rabbit”. Students who read the arrow as “eats” draw every chain backwards.

If a question asks what the arrows represent, do not just write “eats” or “is eaten by”. Say transfer of energy and biomass by feeding. That exact phrase is what gets the mark.

Food webs

A woodland food web Follow any single path through it and you have picked out one food chain. GRASS OAK LEAVES RABBIT WOOD MOUSE CATERPILLAR APHID FOX OWL BLUE TIT LADYBIRD SPARROWHAWKEvery arrow points from the food towards the feeder, never the other way.
Oak leaves feed two different herbivores, and the wood mouse feeds two different predators. That branching is the whole point of a web.
Reading a web in the exam. To pull a food chain out of a web, put your finger on a producer and follow the arrows without ever going backwards. Every chain you can trace is a valid answer, so pick the one the question asks about.

Worked examples

WE 1

Explain how energy reaches a secondary consumer

Explain how energy from sunlight ends up stored in the tissues of a secondary consumer. (4 marks)

Point 1: trapping it Producers absorb light energy and convert it to chemical energy in carbon compounds during photosynthesis. Point 2: first transfer A primary consumer ingests the plant, digests the tissue and absorbs those carbon compounds. Point 3: storing it Some absorbed compounds are used to build animal tissue, so the energy is now stored in the primary consumer’s body. Point 4: second transfer When the primary consumer is ingested by the secondary consumer, those carbon compounds and their stored energy pass on again. Light → carbon compounds → eaten → new tissue → eaten again say “carbon compounds” at least once – vague answers about “energy passing along” lose marks
WE 2

State what an arrow represents

In the food web above, state what the arrow between the aphid and the ladybird represents. (2 marks)

Point 1: what moves The transfer of energy and biomass, stored as chemical energy in carbon compounds. Point 2: how and which way It moves by feeding, from the aphid (the trophic level being eaten) to the ladybird. Energy and biomass, transferred by feeding, in the direction of the arrow two marks means two things: what is transferred, and by what process
WE 3

Use the food web

Using the food web above, construct one food chain containing four organisms, and suggest one effect of a disease killing all the wood mice. (3 marks)

Part 1: the chain Oak leaves → aphid → ladybird → blue tit Part 2: the effect Foxes and owls lose a food source, so their numbers would fall, or foxes would feed more heavily on rabbits instead. Part 3: why the web matters Because foxes have another food source in this web, the effect on foxes is smaller than the effect on owls, which only feed on wood mice here. Species with more food sources are less affected when one disappears start every chain with a producer, and never draw an arrow backwards

💡 Exam tips

⚠ Common mistakes

Up next: Obtaining Carbon Compounds in Ecosystems – where organisms actually get their carbon compounds from, and how autotrophs, heterotrophs and decomposers each solve that problem differently.

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