11326 modules
Page 688
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CHEM6125 2026-27
Mass Spectrometry: Theory and Application
Mass spectrometry is the key enabling technology for the 21st century. It delivers practical and sustainable innovations to enable significant advancements in areas such as healthcare delivery, life sciences, environmental management, energy, food safety, and water quality. This module will explore the tenets of modern mass spectrometry and introduce advanced techniques and applications. -
CHEM6125 2025-26
Mass Spectrometry: Theory and Application
Mass spectrometry is the key enabling technology for the 21st century. It delivers practical and sustainable innovations to enable significant advancements in areas such as healthcare delivery, life sciences, environmental management, energy, food safety, and water quality. This module will explore the tenets of modern mass spectrometry and introduce advanced techniques and applications. -
CHEM6139 2028-29
Masters of Chemistry 1 year placement
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FEEG2005 2026-27
Materials and Structures
This second year module continues to develop the links between structures and materials, building on the fundamentals established in the first year course on mechanics, structures and materials. The relationship between composition, microstructure and properties of materials is linked to a deeper understanding of their structural performance. This assessment of structural performance is also developed through more advanced stress and deflection analyses for more complex engineering components and systems. This combination of approaches will strengthen the students’ understanding of the interplay between materials engineering and structural design. This module also develops the foundations for more advanced third year and fourth year modules in materials and solid mechanics. -
FEEG2005 2027-28
Materials and Structures
Successful engineering design depends on selecting the right materials and understanding how they perform in service. Building on the foundations established in your first year, this module will deepen your understanding of the relationship between materials, structures and mechanical performance.
You will explore how the composition and microstructure of engineering materials influence their properties, structural perfroamnce and durability, while developing more advanced methods for analysing stress, deformation and structural behaviour in engineering components. By combining materials science with structural analysis, you will gain a broader understanding of how engineers design safe, efficient and reliable structures.
Throughout the module, you will strengthen your analytical, modelling and engineering judgement skills, enabling you to evaluate both material selection and structural performance in real engineering applications. This knowledge provides an important foundation for advanced study in materials engineering, structural mechanics and engineering design. -
FEEG2005 2028-29
Materials and Structures
Successful engineering design depends on selecting the right materials and understanding how they perform in service. Building on the foundations established in your first year, this module will deepen your understanding of the relationship between materials, structures and mechanical performance.
You will explore how the composition and microstructure of engineering materials influence their properties, structural perfroamnce and durability, while developing more advanced methods for analysing stress, deformation and structural behaviour in engineering components. By combining materials science with structural analysis, you will gain a broader understanding of how engineers design safe, efficient and reliable structures.
Throughout the module, you will strengthen your analytical, modelling and engineering judgement skills, enabling you to evaluate both material selection and structural performance in real engineering applications. This knowledge provides an important foundation for advanced study in materials engineering, structural mechanics and engineering design. -
SESG6042 2030-31
Materials for Transport Applications
The performance of many engineering systems depends on selecting materials that can operate reliably under demanding mechanical and environmental conditions. This module explores the advanced metallic materials used in transport engineering, examining how their composition and microstructure determine their performance in service.
You will investigate aluminium, titanium, nickel-based alloys and steels, alongside emerging materials such as metal matrix composites, intermetallics and engineering ceramics. Through the concept of microstructural engineering, you will develop an understanding of how engineers tailor material properties through processing and composition to achieve specific performance requirements. Throughout the module, you will strengthen your ability to evaluate material selection for challenging engineering applications using examples from the aerospace, automotive and marine sectors.
By the end of the module, you will understand how advanced engineering materials are designed and selected to meet demanding service requirements, providing valuable knowledge for careers in materials engineering, manufacturing and high-performance engineering design. -
SESG6042 2026-27
Materials for Transport Applications
The performance of many engineering systems depends on selecting materials that can operate reliably under demanding mechanical and environmental conditions. This module explores the advanced metallic materials used in transport engineering, examining how their composition and microstructure determine their performance in service.
You will investigate aluminium, titanium, nickel-based alloys and steels, alongside emerging materials such as metal matrix composites, intermetallics and engineering ceramics. Through the concept of microstructural engineering, you will develop an understanding of how engineers tailor material properties through processing and composition to achieve specific performance requirements. Throughout the module, you will strengthen your ability to evaluate material selection for challenging engineering applications using examples from the aerospace, automotive and marine sectors.
By the end of the module, you will understand how advanced engineering materials are designed and selected to meet demanding service requirements, providing valuable knowledge for careers in materials engineering, manufacturing and high-performance engineering design. -
SESG6042 2027-28
Materials for Transport Applications
The performance of many engineering systems depends on selecting materials that can operate reliably under demanding mechanical and environmental conditions. This module explores the advanced metallic materials used in transport engineering, examining how their composition and microstructure determine their performance in service.
You will investigate aluminium, titanium, nickel-based alloys and steels, alongside emerging materials such as metal matrix composites, intermetallics and engineering ceramics. Through the concept of microstructural engineering, you will develop an understanding of how engineers tailor material properties through processing and composition to achieve specific performance requirements. Throughout the module, you will strengthen your ability to evaluate material selection for challenging engineering applications using examples from the aerospace, automotive and marine sectors.
By the end of the module, you will understand how advanced engineering materials are designed and selected to meet demanding service requirements, providing valuable knowledge for careers in materials engineering, manufacturing and high-performance engineering design. -
SESG6042 2028-29
Materials for Transport Applications
The performance of many engineering systems depends on selecting materials that can operate reliably under demanding mechanical and environmental conditions. This module explores the advanced metallic materials used in transport engineering, examining how their composition and microstructure determine their performance in service.
You will investigate aluminium, titanium, nickel-based alloys and steels, alongside emerging materials such as metal matrix composites, intermetallics and engineering ceramics. Through the concept of microstructural engineering, you will develop an understanding of how engineers tailor material properties through processing and composition to achieve specific performance requirements. Throughout the module, you will strengthen your ability to evaluate material selection for challenging engineering applications using examples from the aerospace, automotive and marine sectors.
By the end of the module, you will understand how advanced engineering materials are designed and selected to meet demanding service requirements, providing valuable knowledge for careers in materials engineering, manufacturing and high-performance engineering design.