8588 modules
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NPCH6009 2027-28
Complex Care in Children and Young People (MSc)
This module will consider the underpinning factors that have contributed to increased complexity within most healthcare systems around the world. Long-term conditions and multi-morbidity in children and young people will be explored, alongside their causes and common management approaches. This will involve opportunities to present engage in a series of case studies across the module to consider patient complexity in a variety of different contexts, how it is best managed, who should be involved and how children, young people and their families can be supported and empowered to manage their own health and wellbeing. Specialist nursing roles will be considered, including those roles within acute care settings and the community. -
NPCH6009 2027-28
Complex Care in Children and Young People (MSc)
This module will consider the underpinning factors that have contributed to increased complexity within most healthcare systems around the world. Long-term conditions and multi-morbidity in children and young people will be explored, alongside their causes and common management approaches. This will involve opportunities to present engage in a series of case studies across the module to consider patient complexity in a variety of different contexts, how it is best managed, who should be involved and how children, young people and their families can be supported and empowered to manage their own health and wellbeing. Specialist nursing roles will be considered, including those roles within acute care settings and the community. -
MATH6094 2028-29
Complex Function Theory
This is a structured reading module designed for MMath students in their fourth year. The module introduces the basic concepts and techniques of Complex Function Theory based on rational and elliptic functions, viewed as meromorphic functions on the sphere and the torus.
A rational function is the quotient of two polynomials and can be characterised as the meromorphic functions (holomorphic functions whose only singularities are poles) on the sphere. A bijective rational function is a Möbius transformation, and they play an important role in geometry.
Elliptic functions are doubly-periodic meromorphic functions defined on the complex plane, and these may be viewed as meromorphic functions on the torus. Elliptic functions lead naturally to the study of elliptic curves, the modular group (Möbius transformations with integer coefficients) and modular forms. These in turn appear in Number Theory, where they play a crucial role in the proof of Fermat’s Last Theorem. -
STAT6134 2025-26
Complex Survey Data Analysis
The aim of this module is to provide an introduction to the finite-population inference and modelling approaches for survey data. -
STAT6134 2026-27
Complex Survey Data Analysis
The aim of this module is to provide an introduction to the finite-population inference and modelling approaches for survey data. -
STAT6134 2027-28
Complex Survey Data Analysis
The aim of this module is to provide an introduction to the finite-population inference and modelling approaches for survey data. -
SESG6039 2026-27
Composites Engineering Design and Mechanics
This module provides an in depth coverage of the mechanics of fibre-reinforced polymer materials and structures. The core of the course encompass modelling of the 2D orthotropic lamina reduced from 3D continuum mechanics for anisotropic solids, classical laminate theory and the assumption of orthotropic material behaviour, structural analysis of composite laminates, and consideration of damage and prediction of failure. The students will gain an understanding of the deformation and failure behaviour of composite materials and structures through application to specific design problems. The concepts of damage and failure will be introduced along with details of assessing material behaviour through mechanical testing. A laboratory class will introduce some manufacturing processes. The laboratory activity also will facilitate the characterisation of mechanical behaviour of composite materials. -
SESG6039 2025-26
Composites Engineering Design and Mechanics
This module provides an in depth coverage of the mechanics of fibre-reinforced polymer materials and structures. The core of the course encompass modelling of the 2D orthotropic lamina reduced from 3D continuum mechanics for anisotropic solids, classical laminate theory and the assumption of orthotropic material behaviour, structural modelling of composite beams and plates, and consideration of damage and prediction of failure. The students will gain an understanding of the deformation and failure behaviour of composite materials and structures through application to specific design applications in project work. The concepts of damage and failure will be introduced along with details of assessing material behaviour through mechanical testing and microscopic evaluations. A laboratory class will introduce the effects of manufacturing processes and material construction. Assignments based on the laboratory will enable student to analyse and predict the behaviour of specific materials configurations using a rational mechanics based approach. -
SESG6039 2028-29
Composites Engineering Design and Mechanics
This module provides an in depth coverage of the mechanics of fibre-reinforced polymer materials and structures. The core of the course encompass modelling of the 2D orthotropic lamina reduced from 3D continuum mechanics for anisotropic solids, classical laminate theory and the assumption of orthotropic material behaviour, structural modelling of composite beams and plates, and consideration of damage and prediction of failure. The students will gain an understanding of the deformation and failure behaviour of composite materials and structures through application to specific design applications in project work. The concepts of damage and failure will be introduced along with details of assessing material behaviour through mechanical testing and microscopic evaluations. A laboratory class will introduce the effects of manufacturing processes and material construction. Assignments based on the laboratory will enable student to analyse and predict the behaviour of specific materials configurations using a rational mechanics based approach. -
SESG6039 2031-32
Composites Engineering Design and Mechanics
This module provides an in depth coverage of the mechanics of fibre-reinforced polymer materials and structures. The core of the course encompass modelling of the 2D orthotropic lamina reduced from 3D continuum mechanics for anisotropic solids, classical laminate theory and the assumption of orthotropic material behaviour, structural analysis of composite laminates, and consideration of damage and prediction of failure. The students will gain an understanding of the deformation and failure behaviour of composite materials and structures through application to specific design problems. The concepts of damage and failure will be introduced along with details of assessing material behaviour through mechanical testing. A laboratory class will introduce some manufacturing processes. The laboratory activity also will facilitate the characterisation of mechanical behaviour of composite materials.