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Predicted paper
AQA A-Level Biology 2026 Predicted Practice Paper — Paper 1
A-Level Biology · AQA-style · 120 minutes · 91 marks
Modelled component: 7402/1 · Calculator permitted
7402/1 model: 91 marks, 120 minutes.
Prediction type: predicted_paper · Evidence mode: historical · Full-length original StudyVector predicted-practice paper modelled on public exam-board structure. It is not official, leaked or guaranteed.
Evidence basis: public exam-board specification structure, historical topic weighting patterns, StudyVector practice-quality review.
74
0–100 model (higher = more demanding)
- Biological Molecules
- Cells
- Exchange & Transport
- Genetics
- Immune System
I completed a StudyVector A-Level Biology derived predicted-practice paper (2026) and scored 0/91. This is practice-only and not an official paper:
Section A
Short-answer and structured questions. Answer ALL questions.
Question SECTION-A1 (3 marks)
A-Level A-Level Biology Biological Molecules question. A student studies a process linked to biological molecules. Explain the biological mechanism, interpret the data or practical setup described, and state how the conclusion is supported by evidence.
Question SECTION-A2 (5 marks)
A-Level A-Level Biology Cells question. A student studies a process linked to cells. Explain the biological mechanism, interpret the data or practical setup described, and state how the conclusion is supported by evidence.
Question SECTION-A3 (5 marks)
A-Level A-Level Biology Exchange & Transport question. A student studies a process linked to exchange & transport. Explain the biological mechanism, interpret the data or practical setup described, and state how the conclusion is supported by evidence.
Question SECTION-A4 (6 marks)
A-Level A-Level Biology Genetics question. A student studies a process linked to genetics. Explain the biological mechanism, interpret the data or practical setup described, and state how the conclusion is supported by evidence.
Question SECTION-A5 (7 marks)
A-Level A-Level Biology Immune System question. A student studies a process linked to immune system. Explain the biological mechanism, interpret the data or practical setup described, and state how the conclusion is supported by evidence.
Question SECTION-A6 (8 marks)
A-Level A-Level Biology Biological Molecules question. A student studies a process linked to biological molecules. Explain the biological mechanism, interpret the data or practical setup described, and state how the conclusion is supported by evidence.
Question SECTION-A7 (9 marks)
A-Level A-Level Biology Cells question. A student studies a process linked to cells. Explain the biological mechanism, interpret the data or practical setup described, and state how the conclusion is supported by evidence.
Question SECTION-A8 (10 marks)
A-Level A-Level Biology Exchange & Transport question. A student studies a process linked to exchange & transport. Explain the biological mechanism, interpret the data or practical setup described, and state how the conclusion is supported by evidence.
Question SECTION-A9 (12 marks)
A-Level A-Level Biology Genetics question. A student studies a process linked to genetics. Explain the biological mechanism, interpret the data or practical setup described, and state how the conclusion is supported by evidence.
Section B
Extended response and synoptic questions. Answer ALL questions.
Question SECTION-B1 (9 marks)
A-Level A-Level Biology Immune System question. A student studies a process linked to immune system. Explain the biological mechanism, interpret the data or practical setup described, and state how the conclusion is supported by evidence.
Question SECTION-B2 (9 marks)
A-Level A-Level Biology Biological Molecules question. A student studies a process linked to biological molecules. Explain the biological mechanism, interpret the data or practical setup described, and state how the conclusion is supported by evidence.
Question SECTION-B3 (8 marks)
A-Level A-Level Biology Cells question. A student studies a process linked to cells. Explain the biological mechanism, interpret the data or practical setup described, and state how the conclusion is supported by evidence.
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