BSc Mathematics and Accounting
Entry requirements
A level: AAB IB: 34 points
About this course
BSc Honours in Mathematics and Accounting and Finance, combining quantitative methods with financial studies. Core topics include accounting, financial analysis, statistics, programming, and data analysis. The programme is taught jointly by the School of Mathematics, Statistics and Physics and the Newcastle University Business School, which holds triple-crown accreditation.
Modules
- Introduction to Financial Accounting
- Introduction to Management Accounting and Finance
- Introductory Algebra
- Real Analysis
- Introduction to Probability and Statistics
- Introductory Calculus and Differential Equations
- Multivariable Calculus
- Financial Control
- Intermediate Financial Accounting
- Interpreting Company Accounts
- Responsible Corporate Finance
- Frontiers in Data Science A
- Linear Algebra
- Complex Analysis
- Groups and Rings
- Curves and Surfaces
- Coding Theory
- Numerical Methods with Python
- Statistical Inference
- Stochastic Processes
- Data Visualisation
- Probability
- Regression
- Principles of Quantum Mechanics
- Vector Calculus
- Differential Equations, Transforms and Waves
- Fluid Dynamics I
- Advanced Financial Accounting and Reporting
- Management Accounting
- Case Studies in Finance, Accounting and Business
- International Financial Management
- Clinical Trials
- Decision Modelling for Health Data Science
- Topics in Medical Statistics and Health Data Science
- Curves and Surfaces
- Coding Theory
- Numerical Methods with Python
- Global Education in Mathematics and Statistics
- Group Theory
- Linear Analysis
- Matrix Analysis
- Metric Spaces and Topology
- Number Theory and Cryptography
- Matrix Representations of Groups
- Stochastic Financial Modelling
- Experimental Design
- Foundations of Machine Learning
- Extreme Value Theory
- Time Series
- Survival Analysis
- Statistical Genetics
- Mathematical Statistics
- Statistical Modelling
- Bayesian Statistics and Decision Theory
- Markov Processes
- Principles of Quantum Mechanics
- Mathematical Biology
- Advanced Quantum Mechanics
- Classical Fields
- Quantum Information
- Methods for Differential Equations
- Fluid Dynamics II
- Relativity and Fundamental Particles
- Hydrodynamic and Climate Instabilities
- Career Development for final year students