IMA National Celebration of the Best Maths Project 2025

Event


Date:

Time : 4:00 pm - 5:30 pm

University of Manchester (and hybrid online via Zoom)

Oxford Road, Manchester, M13 9PL, UK

Organiser: IMA

Organiser Email: emma.emmerton@ima.org.uk

Wednesday December 10, 2025 4:00 pm Wednesday December 10, 2025 5:30 pm Europe/London IMA National Celebration of the Best Maths Project 2025 University of Manchester (and hybrid online via Zoom) , Oxford Road, Manchester, M13 9PL, UK The IMA National Best Maths Project Competition took place this year on 25 July 2025. This competition recognises the most outstanding undergraduate project work in Mathematics, Statistics, and Operational Research from across UK universities. Event Link: https://ima.org.uk/26947/ima-national-celebration-of-the-best-maths-project-2025-2/ IMA emma.emmerton@ima.org.uk

IMA National Celebration of the Best Maths Project 2025


For those who were unable to attend this event, a recording has now been added to the IMA YouTube Channel here.

The IMA National Best Maths Project Competition took place this year on 25 July 2025. This competition recognises the most outstanding undergraduate project work in Mathematics, Statistics, and Operational Research from across UK universities. Rebecca Sheppard (University of Liverpool) and Rebecca Maver (University of Manchester) were awarded first and second place respectively and will deliver talks based on their respective projects at this celebration event.

Abstracts

Not Your Usual Circle: Geometry on the Integer Grid
Rebecca Sheppard (University of Liverpool)

Integer geometry explores objects whose vertices lie on the integer lattice $\mathbb Z^2$, with congruence defined by lattice-preserving affine transformations. In this project, I introduced remarkable geometric objects called integer circles: discrete analogues of Euclidean circle. These objects challenge our geometric intuition regarding circles. Unlike their classical counterparts, integer circles are unbounded, exhibit nontrivial arithmetic structure, and possess positive density in the plane.

In this talk, I will define integer circles, illustrate their unusual behaviour, and demonstrate how to rigorously compute their densities and intersection patterns. I use various number-theoretic tools, such as zeta functions, Dirichlet series, and continued fractions. These results reveal surprising links between discrete geometry and analytic number theory, pointing toward new directions in the study of lattice-invariant structures.

Finite Difference Methods for Solving Convection-Diffusion Equations
Rebecca Maver (University of Manchester)

Abstract: Convection–diffusion equations are a type of partial differential equation which describes the progression of important physical processes, such as the distribution of heat in a convective wind or the movement of gas particles. As with many partial differential equations, analytical solutions are often complex or unavailable. The implementation of numerical methods is, therefore, crucial. This project is an introduction to applying the technique of finite differences to convection–diffusion equations and how one analyses their performance through classical notions of consistency, stability and convergence. The second half will also derive, implement and analyse various time-stepping schemes used in conjunction with finite difference methods to investigate the behaviour of convection–diffusion equations through time. The implicit Euler, Crank-Nicolson and semi-implicit methods will be used, in particular. The scope of problems tackled begins with steady, one-dimensional equations with known exact solutions, culminating in the time-dependent, two-dimensional double glazing problem, which can only be solved by numerical means.

Registration

This talk will be given in-person at the University of Manchester, followed by a short reception. It was also be shared online, via Zoom.

If you wish to attend in-person, please register with the University directly by completing this Microsoft form.

If you wish to register for online attendance at this talk, please register via myIMA. A joining link will be sent 24 hours before the event.  If you are an IMA Member or you have previously registered for an IMA conference, then you are already on our database. Please “request a new password” using the email address previously used, to log in.

No charge is made to attend this event. Non-IMA members are welcome.

Please note – timings are subject to change.

Published