Access the official OCR AS Further Mathematics B (MEI) Y414/01 Numerical Methods question paper from the June 2025 examination series. This downloadable PDF contains the complete OCR AS Level Numerical Methods assessment sat on Friday 6 June 2025, including all original interpolation, numerical differentiation, integration, iteration, extrapolation, spreadsheet modelling, and approximation questions exactly as presented in the live examination.
The paper covers a wide range of OCR Numerical Methods topics including interval bisection, Newton-Raphson iteration, relaxed iteration, convergence analysis, Lagrange interpolation, Newton forward difference interpolation, central difference methods, extrapolation, relative error, trapezium rule, Simpson’s rule, spreadsheet formula construction, finite differences, and polynomial modelling. It also includes OCR “show detailed reasoning” questions designed to assess numerical reasoning, approximation accuracy, and structured mathematical communication under timed exam conditions.
Question contexts include cooling models for tea temperature, spreadsheet-generated root approximations, interpolation of experimental data, convergence of numerical sequences, integration approximations using Simpson’s rule, and iterative methods involving logarithmic equations. The paper features realistic spreadsheet outputs, error-analysis tasks, and multi-stage approximation problems commonly used in OCR Further Mathematics numerical analysis assessments.
Use this OCR Y414/01 June 2025 question paper to practise authentic OCR Numerical Methods questions under timed conditions and improve exam technique using real examiner-standard assessment materials. Pair it with the matching OCR Y414/01 June 2025 mark scheme on markscheme.net for complete revision and self-assessment. Optimised for 2025/2026 OCR Further Mathematics revision, mobile-friendly, and instantly downloadable.
This document is designed for OCR AS Further Mathematics students studying the Numerical Methods module within the OCR MEI specification, including Year 12 students preparing for 2026 examinations, resit candidates, independent learners, and home-educated students targeting high grades in OCR Further Mathematics.
It is also highly valuable for teachers, tutors, sixth forms, mathematics departments, and revision centres using OCR Further Mathematics numerical methods materials for classroom teaching, mock examinations, retrieval practice, exam-technique training, and advanced approximation-method revision sessions.
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