Why certain mistakes keep appearing in examiner reports
Cambridge publishes examiner reports after every examination session, and the same errors appear year after year. These are not obscure slip-ups confined to weaker candidates. Many of them catch students who know the content perfectly well but express it imprecisely, skip a logical step, or fall into a trap set by the question's wording. The following ten mistakes account for a disproportionate share of lost marks across IGCSE Biology papers, and they appear consistently in the Cambridge IGCSE examiner reports. Each one is preventable, provided you know what to watch for.
Mistake 1: saying enzymes are "killed" by high temperatures
The wrong answer
"When the temperature gets too high, the enzyme is killed and stops working."
Why it loses marks
Enzymes are proteins, not living organisms. They cannot be killed. The correct term is denatured. Denaturation means the shape of the enzyme's active site has changed permanently due to the breaking of bonds that hold the protein in its three-dimensional shape. Because the active site is no longer complementary to the substrate, the enzyme-substrate complex cannot form, and the reaction stops.
The correct answer
"At high temperatures, the enzyme is denatured. The bonds holding its three-dimensional shape break, causing the active site to change shape so that it is no longer complementary to the substrate."
Mistake 2: confusing photosynthesis and respiration
The wrong answer
"Plants photosynthesise during the day and respire at night."
Why it loses marks
Plants respire all the time, day and night. Photosynthesis only occurs in the presence of light, but respiration is continuous. During daylight hours, plants carry out both processes simultaneously. The net gas exchange depends on which process is faster: in bright light, photosynthesis typically exceeds respiration, so the plant is a net absorber of carbon dioxide and a net producer of oxygen. At night, only respiration occurs, so the plant releases carbon dioxide.
The correct answer
"Plants respire continuously, both day and night. Photosynthesis occurs only in the presence of light. During the day, both processes happen at the same time."
| Feature | Photosynthesis | Respiration |
|---|---|---|
| When it occurs | Only in light | All the time (day and night) |
| Gas taken in | Carbon dioxide | Oxygen |
| Gas released | Oxygen | Carbon dioxide |
| Energy | Absorbed (light energy) | Released (chemical energy) |
| Where in the cell | Chloroplasts | Mitochondria (and cytoplasm) |
Mistake 3: skipping steps in the eutrophication sequence
The wrong answer
"Fertiliser runs off into the river and kills the fish."
Why it loses marks
Fertiliser does not kill fish directly. Eutrophication is a chain of events, and examiners award marks for each step in the sequence. Skipping from fertiliser to dead fish misses at least three intermediate stages, each worth a mark.
The correct answer
- Excess fertiliser (nitrates and phosphates) is washed into the water.
- The minerals cause rapid growth of algae on the surface (an algal bloom).
- The algal bloom blocks light to aquatic plants below, which die.
- Bacteria decompose the dead plant material, using up dissolved oxygen through aerobic respiration.
- Oxygen levels fall so low that fish and other aquatic organisms suffocate and die.
Mistake 4: ignoring command words
The wrong answer
A student asked to explain why the left ventricle has a thicker wall writes: "The left ventricle has a thicker wall than the right ventricle."
Why it loses marks
That answer restates the observation but does not explain it. "State" requires a brief factual answer. "Describe" requires you to say what happens. "Explain" requires you to say why or how something happens. "Suggest" requires you to apply your knowledge to an unfamiliar situation. Treating all four command words the same way is one of the most widespread reasons for lost marks across every paper.
The correct answer
"The left ventricle has a thicker muscular wall because it needs to generate a higher pressure to pump blood all the way around the body through the systemic circulation, whereas the right ventricle only pumps blood the shorter distance to the lungs."
| Command word | What the examiner expects | Example |
|---|---|---|
| State | A short factual answer, no explanation needed | "State the function of the ribs." Answer: "Protect the lungs." |
| Describe | Say what happens, step by step | "Describe how air enters the lungs." Answer: sequence of rib/diaphragm movements and pressure changes. |
| Explain | Give the reason or mechanism (how or why) | "Explain why exercise increases heart rate." Answer: muscles need more oxygen for aerobic respiration, so blood must circulate faster. |
| Suggest | Apply knowledge to a new or unfamiliar context | "Suggest why a plant kept in the dark for 48 hours would give a negative starch test." Answer: no light means no photosynthesis, so no glucose produced to convert to starch. |
Mistake 5: describing osmosis incorrectly
The wrong answer
"Water moves from a high concentration to a low concentration."
Why it loses marks
This statement is ambiguous and, depending on interpretation, wrong. Osmosis is the net movement of water molecules from a region of higher water potential (a more dilute solution) to a region of lower water potential (a more concentrated solution) through a partially permeable membrane. The phrase "high concentration" could refer to either the concentration of water or the concentration of solute, and examiners cannot award marks for ambiguous answers.
The correct answer
"Osmosis is the net movement of water molecules from a region of higher water potential (dilute solution) to a region of lower water potential (more concentrated solution) through a partially permeable membrane."
Mistake 6: incomplete Punnett squares in genetics questions
The wrong answer
A student writes the offspring genotypes without showing the parental genotypes, gametes, or the cross itself, then states "the ratio is 3:1."
Why it loses marks
Genetics questions award marks for the working, not just the final ratio. You must show: (a) the parental genotypes, (b) the gametes each parent can produce, (c) the completed Punnett square, and (d) the resulting genotypic and phenotypic ratios. Jumping straight to "3:1" without the intermediate steps forfeits multiple marks even if the ratio is correct.
The correct approach
- Write the parental phenotypes and genotypes clearly (e.g., Parents: Tall (Tt) x Tall (Tt)).
- List the gametes each parent can produce (T and t from each parent).
- Draw the Punnett square with gametes along the top and side.
- Fill in every cell of the square.
- State the genotypic ratio (1 TT : 2 Tt : 1 tt) and the phenotypic ratio (3 tall : 1 short).
- Use a capital letter for the dominant allele and the same lowercase letter for the recessive allele. Never use two different letters for alleles of the same gene.
Mistake 7: confusing cell wall and cell membrane
The wrong answer
"Animal cells have a cell wall that controls what enters and leaves the cell."
Why it loses marks
Animal cells do not have a cell wall. The cell wall is found in plant cells (made of cellulose), bacterial cells, and fungal cells, but never in animal cells. The structure that controls what enters and leaves the cell is the cell membrane, which is present in all cells, both plant and animal.
The correct answer
"All cells have a cell membrane, which is partially permeable and controls the movement of substances into and out of the cell. Plant cells also have a cell wall made of cellulose, which provides structural support but is fully permeable."
| Structure | Found in | Made of | Function |
|---|---|---|---|
| Cell membrane | All cells (plant and animal) | Phospholipid bilayer | Controls movement of substances (partially permeable) |
| Cell wall | Plant, bacterial, and fungal cells only | Cellulose (plants) | Provides structural support (fully permeable) |
Mistake 8: poor graph technique
Common errors
- Choosing a scale that does not use at least half the graph paper.
- Joining plotted points dot-to-dot when a smooth best-fit curve is required.
- Omitting units from axis labels (writing "Temperature" instead of "Temperature / degrees C").
- Plotting the independent variable on the y-axis instead of the x-axis.
- Using a pen instead of a pencil for plotted points.
Why it loses marks
Graph questions carry marks for each of these elements separately. A graph with correct data points but no axis units, a poor scale, and dot-to-dot lines can lose three or four marks before the examiner even looks at your data.
The correct approach
- Independent variable on the x-axis, dependent variable on the y-axis.
- Label each axis with the variable name and its unit, separated by a forward slash (e.g., "Time / minutes").
- Choose a scale that uses at least half the available graph paper in both directions.
- Plot each point with a small, neat cross (x), not a large dot.
- Draw a smooth best-fit curve or a ruled best-fit straight line. Do not join the points dot-to-dot unless the data is truly discrete (e.g., bar charts for discontinuous data).
Mistake 9: errors in magnification calculations
The wrong answer
A student measures the image of a cell as 30 mm and is told the actual size is 0.03 mm. They write: "Magnification = 0.03 / 30 = 0.001."
Why it loses marks
The formula has been applied upside down. The magnification formula is:
Magnification = Image size / Actual size
In this case: 30 / 0.03 = x1000. The student inverted the fraction and arrived at a magnification less than 1, which would mean the image is smaller than the specimen. A common additional error is failing to convert units so that both measurements are in the same unit before dividing.
The correct approach
- Write the formula: Magnification = Image size / Actual size.
- Ensure both measurements are in the same unit (both in mm, or both in micrometres).
- Substitute the values: 30 mm / 0.03 mm = x1000.
- State the magnification with the "x" prefix: x1000.
Unit conversions to remember: 1 mm = 1000 micrometres (um). 1 um = 1000 nanometres (nm).
Mistake 10: giving one point when two are needed
The wrong answer
A 2-mark question asks: "Explain why alveoli are efficient at gas exchange." The student writes: "They have a large surface area."
Why it loses marks
The answer provides one valid marking point but the question is worth 2 marks, which means the examiner expects at least two distinct points. The student has left a mark on the table by stopping too early.
The correct approach
"Alveoli have a large surface area, which increases the rate of diffusion. They also have thin walls (one cell thick), which provides a short diffusion distance for gases."
A final checklist before you hand in your paper
- Have you used correct scientific terminology (denatured, not killed; partially permeable membrane, not semi-permeable)?
- Have you matched the depth of your answer to the command word (state, describe, explain, suggest)?
- Have you counted your marking points against the marks available?
- Have you shown full working in calculations and Punnett squares?
- Have you labelled graph axes with units and drawn a best-fit line rather than dot-to-dot?
- Have you written legibly in the spaces provided, in black or dark blue ink?
These six checks take less than two minutes and can recover marks that would otherwise be lost to carelessness rather than ignorance. The difference between one grade boundary and the next in IGCSE Biology is often only a handful of marks, and eliminating preventable errors is the most efficient way to improve your result.
A detailed breakdown of the ten most costly errors IGCSE Biology candidates make in their Cambridge exams, with specific examples of wrong answers, explanations of why marks are lost, and the corrected approach for each.
Àsìkò méjì (Comment(s))