11336 modules
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CHEM6145 2026-27
Supramolecular Chemistry of Functional Molecules and Materials
This module will explore the fundamental basis of intermolecular interactions and illustrate how these can be exploited to form diverse supramolecular assemblies ranging from small molecules, soft gels and hard extended inorganic solids. The course will provide a research-led overview of the current state-of-the-art in supramolecular systems and give students an awareness and appreciation of the wider aspects of chemistry and functional materials accessible through combination and assembly of organic, inorganic, coordination and biological molecules and higher-level building units. -
CHEM6145 2028-29
Supramolecular Chemistry of Functional Molecules and Materials
This module will explore the fundamental basis of intermolecular interactions and illustrate how these can be exploited to form diverse supramolecular assemblies ranging from small molecules, soft gels and hard extended inorganic solids. The course will provide a research-led overview of the current state-of-the-art in supramolecular systems and give students an awareness and appreciation of the wider aspects of chemistry and functional materials accessible through combination and assembly of organic, inorganic, coordination and biological molecules and higher-level building units. -
CHEM6145 2025-26
Supramolecular Chemistry of Functional Molecules and Materials
This module will explore the fundamental basis of intermolecular interactions and illustrate how these can be exploited to form diverse supramolecular assemblies ranging from small molecules, soft gels and hard extended inorganic solids. The course will provide a research-led overview of the current state-of-the-art in supramolecular systems and give students an awareness and appreciation of the wider aspects of chemistry and functional materials accessible through combination and assembly of organic, inorganic, coordination and biological molecules and higher-level building units. -
SESG6034 2031-32
Surface Engineering
From reducing friction in engines to improving corrosion resistance in offshore structures, surface engineering plays a critical role in enhancing reliability, efficiency and durability. The performance and lifetime of many engineering components are determined not by the bulk material, but by the properties of their surfaces. This module explores the principles and applications of modern surface engineering technologies.
You will investigate how surface treatments, coatings and material modifications are used to improve wear resistance, reduce friction and protect components from oxidation and corrosion. Alongside the scientific principles underpinning surface engineering, you will examine the practical selection of surface technologies, considering both engineering performance and economic factors. Industrial case studies will demonstrate how these techniques are applied across a wide range of engineering sectors to improve product performance and extend service life.
By the end of the module, you will be able to evaluate and select appropriate surface engineering solutions for demanding engineering applications, developing specialist knowledge that supports advanced materials design, tribology and structural integrity engineering. -
SESG6034 2027-28
Surface Engineering
From reducing friction in engines to improving corrosion resistance in offshore structures, surface engineering plays a critical role in enhancing reliability, efficiency and durability. The performance and lifetime of many engineering components are determined not by the bulk material, but by the properties of their surfaces. This module explores the principles and applications of modern surface engineering technologies.
You will investigate how surface treatments, coatings and material modifications are used to improve wear resistance, reduce friction and protect components from oxidation and corrosion. Alongside the scientific principles underpinning surface engineering, you will examine the practical selection of surface technologies, considering both engineering performance and economic factors. Industrial case studies will demonstrate how these techniques are applied across a wide range of engineering sectors to improve product performance and extend service life.
By the end of the module, you will be able to evaluate and select appropriate surface engineering solutions for demanding engineering applications, developing specialist knowledge that supports advanced materials design, tribology and structural integrity engineering. -
SESG6034 2026-27
Surface Engineering
From reducing friction in engines to improving corrosion resistance in offshore structures, surface engineering plays a critical role in enhancing reliability, efficiency and durability. The performance and lifetime of many engineering components are determined not by the bulk material, but by the properties of their surfaces. This module explores the principles and applications of modern surface engineering technologies.
You will investigate how surface treatments, coatings and material modifications are used to improve wear resistance, reduce friction and protect components from oxidation and corrosion. Alongside the scientific principles underpinning surface engineering, you will examine the practical selection of surface technologies, considering both engineering performance and economic factors. Industrial case studies will demonstrate how these techniques are applied across a wide range of engineering sectors to improve product performance and extend service life.
By the end of the module, you will be able to evaluate and select appropriate surface engineering solutions for demanding engineering applications, developing specialist knowledge that supports advanced materials design, tribology and structural integrity engineering. -
SESG6034 2025-26
Surface Engineering
This module covers the aspects of surface engineering, to develop fundamental understanding and the role of materials to allow surface selection for mechanical contacts and their surrounding environmental conditions.
The module will explore a range of surface treatments and advanced coatings that are designed minimise wear, friction and surface oxidation / corrosion. Applications and economics of surface treatments will be addressed by means of industrial case studies. -
SESG6034 2028-29
Surface Engineering
This module covers the aspects of surface engineering, to develop fundamental understanding and the role of materials to allow surface selection for mechanical contacts and their surrounding environmental conditions.
The module will explore a range of surface treatments and advanced coatings that are designed minimise wear, friction and surface oxidation / corrosion. Applications and economics of surface treatments will be addressed by means of industrial case studies. -
SESG6034 2029-30
Surface Engineering
From reducing friction in engines to improving corrosion resistance in offshore structures, surface engineering plays a critical role in enhancing reliability, efficiency and durability. The performance and lifetime of many engineering components are determined not by the bulk material, but by the properties of their surfaces. This module explores the principles and applications of modern surface engineering technologies.
You will investigate how surface treatments, coatings and material modifications are used to improve wear resistance, reduce friction and protect components from oxidation and corrosion. Alongside the scientific principles underpinning surface engineering, you will examine the practical selection of surface technologies, considering both engineering performance and economic factors. Industrial case studies will demonstrate how these techniques are applied across a wide range of engineering sectors to improve product performance and extend service life.
By the end of the module, you will be able to evaluate and select appropriate surface engineering solutions for demanding engineering applications, developing specialist knowledge that supports advanced materials design, tribology and structural integrity engineering. -
SESG6034 2030-31
Surface Engineering
From reducing friction in engines to improving corrosion resistance in offshore structures, surface engineering plays a critical role in enhancing reliability, efficiency and durability. The performance and lifetime of many engineering components are determined not by the bulk material, but by the properties of their surfaces. This module explores the principles and applications of modern surface engineering technologies.
You will investigate how surface treatments, coatings and material modifications are used to improve wear resistance, reduce friction and protect components from oxidation and corrosion. Alongside the scientific principles underpinning surface engineering, you will examine the practical selection of surface technologies, considering both engineering performance and economic factors. Industrial case studies will demonstrate how these techniques are applied across a wide range of engineering sectors to improve product performance and extend service life.
By the end of the module, you will be able to evaluate and select appropriate surface engineering solutions for demanding engineering applications, developing specialist knowledge that supports advanced materials design, tribology and structural integrity engineering.