OCR A Level Geology (H014/H414/2017) Past Papers 2026
Download free OCR A Level Geology H014/H414/2017 past papers from 7 exam sessions.
June 2024
Latest Session
4
Sessions
0–2026
15
Question Papers
12
Mark Schemes
80% coverage
0
Specimen Papers
Components & time pressure
Marks per minute shows how fast you have to work — the higher the number, the tighter the time pressure in that paper.
| Paper | Component | Marks | Duration | Marks / min | Pressure |
|---|---|---|---|---|---|
| H414/01 | Fundamentals of Geology | 110 | 2h 15m | 0.81 | Moderate |
| H414/02 | Scientific Literacy in Geology | 100 | 2h 15m | 0.74 | Moderate |
| H414/03 | Practical Skills in Geology | 60 | 1h 30m | 0.67 | Steady |
| Practical Endorsement (PAG) | Practical Activity Groups | null | Pass/fail — assessed throughout the course | — | — |
Component structure extracted from 6 official OCR documents (2023–2024). Timings and mark totals are taken from the papers themselves.
Yearly Exam Sessions
How is OCR A Level Geology examined?
OCR A Level Geology is examined through 4 paper components. Understanding each component helps you allocate revision time effectively.
H414/01
110 marksFundamentals of Geology
Duration: 2h 15m
H414/02
100 marksScientific Literacy in Geology
Duration: 2h 15m
H414/03
60 marksPractical Skills in Geology
Duration: 1h 30m
Practical Endorsement (PAG)
null marksPractical Activity Groups
Duration: Pass/fail — assessed throughout the course
What OCR examiners say about Geology
Verbatim quotes from 6 official OCR examiner reports (2023–2024). Every quote is attributable to a specific paper and session — these are the things OCR markers flag year after year.
Unit conversion errors in calculations
Only half the candidates could use the answer from Question 29 (c) (ii) and the distance in the question to convert to m s-1.
Level of Response answers covering only one or two…
Weaker answers focused on ridge push and slab pull with little or no link to the Wilson cycle of ocean development.
Imprecise geological terminology
Some candidates did not use the correct technical terms which limited the marks achieved.
Most Common Mistakes — Geology
Based on analysis of 6 official OCR examiner reports (2023, 2024). Avoid these errors to maximise your marks.
Unit conversion errors in calculations — failing to convert km to m, hours to seconds, or cm to m before computing a final answer
H414/01, H414/03 · Flagged in H414/01 June 2023 (tsunami velocity Q29), H414/01 June 2024 (evaporite thickness Q27, ore discharge Q26), H414/03 June 2023 and 2024 (maths questions)
Level of Response answers covering only one or two sub-topics instead of demonstrating a breadth of geological knowledge across the required strands
H414/01, H414/02, H414/03 · Flagged across all three papers in both 2023 and 2024 series
Imprecise geological terminology — using 'hard' instead of 'competent/strong', 'water table' instead of 'groundwater', 'strongest' instead of 'highest intensity', and generic rock names instead of specific mineral or texture names
H414/01, H414/02 · Flagged across H414/01 and H414/02 in both 2023 and 2024
Stereonet and rose diagram plotting: not labelling axes, missing scale bars, and confusing dip direction with current direction on rose diagrams
H414/02, H414/01, H414/03 · Flagged in H414/02 June 2023 (Q5 stereonet), H414/01 June 2024 (Q27 rose diagram), H414/03 June 2024 (Q3 rose diagram)
Cross-section drawing: omitting labels on faults and aureoles, plotting intrusions at the same dip as adjacent beds, and failing to show subsurface geology below eroded fold structures
H414/03 · Flagged in H414/03 June 2023 (Q2) and H414/03 June 2024 (Q4)
Topics Students Struggle With Most
Magnetic inclination, palaeolatitude and Curie point — linking remanent magnetism to plate position evidence
H414/01 June 2023 Q28c: 'Very few candidates understood the significance of magnetic inclination preserved in rocks and its link to palaeolatitude.' Many candidates knew that magnetic polarity reversals are recorded in rocks but could not explain what inclination angle indicates about the rock's original latitude.
H414/01
Oceanic core complexes, hydrothermal vents and black/white smoker formation processes at mid-ocean ridges
H414/01 June 2024 Q29c-d: 'Candidates are not confident when discussing aspects of oceanic core complexes.' Examiners note 'very few candidates could give detailed responses' to hydrothermal vent formation, with 'common misconceptions that vents were created by escaping gas from magma that was close to the surface' rather than the seawater-circulation mechanism.
H414/01
Walther's Law — linking lateral facies change in a meandering river to the vertical sequence preserved in the stratigraphic log
H414/01 June 2024 Q27c: 'Walther's Law always proves a challenge to candidates.' Only the strongest answers linked channel-lag gravels, point-bar sands and floodplain clays as lateral environments to their vertical equivalents in the sedimentary log. Many candidates produced a fining-upward log without explaining the Walther's Law principle.
H414/01
Earthquake intensity vs magnitude — confusing the two concepts when interpreting isoseismal maps, Mercalli intensities and building-damage data
H414/02 June 2023 Q6c and H414/02 June 2024 Q3a: Examiners flag 'confusion between magnitude and intensity' in both series. Candidates 'used the term strongest when it should be highest for intensity' and misidentified competent rocks as producing higher (rather than lower) intensity shaking.
H414/02
Gravity anomalies on a crustal scale — negative anomalies beneath mountain roots vs positive anomalies above dense metallic ore bodies (isostasy)
H414/02 June 2024 Q2b: 'A significant number thought mountain ranges would produce positive gravity anomalies due to the large thickness of crust in these areas.' The key point — less dense continental crust in place of denser mantle in mountain roots — was missed. Candidates conflated large-scale isostatic gravity anomalies with small-scale exploration gravity surveys.
H414/02
Evaporite mineral sequences and the role of repeated seawater influx in generating thick deposits
H414/01 June 2024 Q27d: 'Very few candidates knew about repeated influxes of seawater could lead to thick sequences of evaporites.' Most candidates memorised the crystallisation order (calcite → gypsum/anhydrite → halite → potash salts by increasing solubility) but did not link repeated basin flooding to the observed thickness of real evaporite successions.
H414/01
Stress-strain relationships and elastic rebound — distinguishing stress from strain, and explaining failure and seismic wave generation precisely
H414/02 June 2023 Q5b: 'Only a minority attained both marks for their response. Some did not distinguish between stress and strain, and there were incorrect references to tension. Few explained that failure occurs when accumulated strain overcomes the strength of the rock or that, afterwards, elastic rebound occurs.'
H414/02
Diagenesis — distinguishing physical processes (compaction) from chemical processes (cementation), and explaining pressure dissolution, stylolitisation and cement precipitation at grain contacts
H414/02 June 2024 Q1d: Candidates who named compaction first when asked only for physical processes had all subsequent answers ignored under the list rule. Pressure dissolution and stylolite formation were 'known by only a minority'. Many confused cement (secondary, crystalline, in solution) with matrix (primary, fine-grained, detrital).
H414/02
OCR A Level Geology (H014/H414/2017) — Full Archive 0–2026
This page contains all 40 OCR A Level Geology (H014) past papers and assessment resources — 7 exam sessions from 0 to 2026. Question papers, mark schemes, specimen papers, and sample materials are all free to download as PDF with no account required.
OCR A Level Geology is graded A*–E. OCR offers two main A Level pathways for many subjects — OCR A and OCR B — each with different specification content and assessment styles. Check your specification code (H014) to ensure you're practising with the correct papers.
OCR provides specimen papers (SQP) and Sample Assessment Materials (SAMs) for every specification. These are especially valuable when fewer past paper sessions are available, as they show the exact format, timing, and mark allocation the board intends. Specimen mark schemes follow the same conventions as live papers, so use them as part of your practice rotation.
Pay close attention to OCR command words when answering questions — 'state' requires a brief factual answer, 'explain' needs a reason or mechanism, 'evaluate' demands a balanced judgement with evidence, and 'analyse' means breaking a topic into components. Mark schemes penalise answers that don't match the command word, even if the subject knowledge is correct. After each timed practice paper, cross-reference your answers against the mark scheme and note which command words you handled poorly — this is often where the easiest marks are recovered.
Questions, answered.
PapersDaddy provides 40 free OCR A Level Geology (H014/H414/2017) files. That includes dated past-paper sessions, specimen papers, sample materials, and separate OCR assessment resources — all free to view or download as PDF.
We have 40 OCR A Level Geology (H014/H414/2017) files, including papers from 7 exam sessions.
OCR filenames follow the pattern {refId}-{description}.pdf. The reference ID is a unique OCR document number. The description includes the unit code (e.g., H014), unit name, and paper type (specimen, sample-assessment-material, mark-scheme, etc.). For example, a file like "234581-unit-h014-01-sample-assessment-material.pdf" is the SAM for Unit 1.