11326 modules
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ELEC3216 2027-28
Mechanical Power Transmission and Vibration
The module provides an overview of relevant topics in mechanical power transmission and methodology of vibration analysis for such mechanical assemblies.
The main objective of the module is to learn methods of analysis and design of machines and their components, which are relevant to most industrial applications, including Automotive, Marine and Power Engineering transmissions.
This module is taught together with Mechanical Power Transmission and Vibration (MSc). The two modules are mutually exclusive. -
ELEC6257 2027-28
Mechanical Power Transmission and Vibration (MSc)
The module provides an overview of relevant topics in mechanical power transmission and methodology of vibration analysis for such mechanical assemblies. The main objective of the module is to learn methods of analysis and design of machines and their components, which are relevant to most industrial applications, including Automotive, Marine and Power Engineering transmissions.
This module is taught together with ELEC3216 Mechanical Power Transmission and Vibration. ELEC6257 has higher requirements on the desired learning outcomes, which will be assessed by a different coursework assignment.
This module is taught together with ELEC3216 Mechanical Power Transmission and Vibration. The two modules are mutually exclusive and you may not take both modules. -
ELEC6257 2025-26
Mechanical Power Transmission and Vibration (MSc)
The module provides an overview of relevant topics in mechanical power transmission and methodology of vibration analysis for such mechanical assemblies. The main objective of the module is to learn methods of analysis and design of machines and their components, which are relevant to most industrial applications, including Automotive, Marine and Power Engineering transmissions.
This module is taught together with ELEC3216 Mechanical Power Transmission and Vibration. ELEC6257 has higher requirements on the desired learning outcomes, which will be assessed by a different coursework assignment.
This module is taught together with ELEC3216 Mechanical Power Transmission and Vibration. The two modules are mutually exclusive and you may not take both modules. -
ELEC6257 2026-27
Mechanical Power Transmission and Vibration (MSc)
The module provides an overview of relevant topics in mechanical power transmission and methodology of vibration analysis for such mechanical assemblies. The main objective of the module is to learn methods of analysis and design of machines and their components, which are relevant to most industrial applications, including Automotive, Marine and Power Engineering transmissions.
This module is taught together with ELEC3216 Mechanical Power Transmission and Vibration. ELEC6257 has higher requirements on the desired learning outcomes, which will be assessed by a different coursework assignment.
This module is taught together with ELEC3216 Mechanical Power Transmission and Vibration. The two modules are mutually exclusive and you may not take both modules. -
GENG0003 2025-26
Mechanical Science
This module offers an introduction to the scientific principles and methods of mechanics. -
GENG0003 2026-27
Mechanical Science
Engineers use mechanical science to understand how forces, motion, and energy shape the behaviour of real systems. This module introduces some core principles you will rely on throughout your degree, building confidence in analysing structures, mechanisms, and machines. You will explore static systems, linear and rotational motion and the concepts of work, energy and power to predict how simple engineering systems respond to forces. As you practise applying these concepts, you will begin to see how mechanical science support modelling, design, and engineering problem‑solving. -
GENG0003 2027-28
Mechanical Science
This module offers an introduction to the scientific principles and methods of mechanics. -
SESM1016 2025-26
Mechanical Systems Analysis
This module builds upon the technical content of the other first year modules and develops skills needed for the professional application of Mechanical Engineering. The ability to solve new challenges through innovation and through application of scientific methods and technical analysis is the heart of Mechanical Engineering. Future Mechanical Engineers will face enormously important and diverse challenges that are difficult to anticipate, and will need to be able to develop their skillset throughout their career. The first part of this module introduces the professional context of Mechanical Engineering and starts the individual process of identifying and developing relevant skills through reflective practice. The second part of this module develops skills concerning the application of engineering analysis to practical mechanical systems. In particular, the ability to frame engineering problems so that relatively simple analysis, practical insight and intuition can be used to generate innovative solutions is developed through a serious of case studies. -
SESM1016 2027-28
Mechanical Systems Analysis
Successful mechanical engineers combine technical knowledge with professional judgement, creativity and the ability to solve unfamiliar problems. This module complements and builds on your first-year technical studies by developing the engineering mindset, professional skills and analytical approach needed to tackle real-world engineering challenges throughout your degree and career.
You will explore the role of the professional mechanical engineer, developing reflective practice and learning how to identify, evaluate and build the technical and employability skills needed for lifelong professional development. Through a series of engineering case studies, you will learn how engineers frame complex problems, apply scientific principles and use simplified analytical models to generate innovative and practical solutions. Through this, you will strengthen your technical reasoning, engineering judgement and communication skills while gaining confidence in applying engineering analysis to realistic mechanical systems.
By the end of the module, you will have developed the professional and analytical capabilities needed to approach mechanical engineering problems with confidence, providing a strong foundation for more advanced design, analysis and project work throughout your degree. -
SESM1016 2026-27
Mechanical Systems Analysis
Successful mechanical engineers combine technical knowledge with professional judgement, creativity and the ability to solve unfamiliar problems. This module complements and builds on your first-year technical studies by developing the engineering mindset, professional skills and analytical approach needed to tackle real-world engineering challenges throughout your degree and career.
You will explore the role of the professional mechanical engineer, developing reflective practice and learning how to identify, evaluate and build the technical and employability skills needed for lifelong professional development. Through a series of engineering case studies, you will learn how engineers frame complex problems, apply scientific principles and use simplified analytical models to generate innovative and practical solutions. Through this, you will strengthen your technical reasoning, engineering judgement and communication skills while gaining confidence in applying engineering analysis to realistic mechanical systems.
By the end of the module, you will have developed the professional and analytical capabilities needed to approach mechanical engineering problems with confidence, providing a strong foundation for more advanced design, analysis and project work throughout your degree.