11312 modules
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COMP2311 2028-29
Theory of Computing
This module aims to provide a broad and stimulating introduction to the theory of computing. -
OCCT2039 2026-27
Therapeutic Engagement Skills
This module will build on all previous level 4 modules. It will enable you to engage therapeutically with individuals and groups, drawing on and consolidating your occupational therapy skills. This will provide you with the opportunity to improve your competency and confidence while delivering occupational therapy interventions. -
OCCT2039 2028-29
Therapeutic Engagement Skills
This module will build on all previous level 4 modules. It will enable you to engage therapeutically with individuals and groups, drawing on and consolidating your occupational therapy skills. This will provide you with the opportunity to improve your competency and confidence while delivering occupational therapy interventions. -
OCCT2039 2027-28
Therapeutic Engagement Skills
This module will build on all previous level 4 modules. It will enable you to engage therapeutically with individuals and groups, drawing on and consolidating your occupational therapy skills. This will provide you with the opportunity to improve your competency and confidence while delivering occupational therapy interventions. -
SESM6040 2025-26
Thermo-Fluid Engineering for Carbon Capture, Utilisation and Storage (CCUS)
Hydrocarbon fuels contribute more than 85% of world energy production, but also contribute more than 60% of anthropogenic greenhouse gas emissions. As research continues to find alternative and more sustainable energy production technologies hydrocarbon fuels will continue to be the primary energy supplier therefore measures need to be taken to improve their efficiency and minimise anthropogenic greenhouse gas emissions.
This module addresses thermo-fluid processes underlying technologies which use hydrocarbon fuels in a more sustainable manner, including carbon capture, utilisation and storage, and enhanced oil and gas recovery. To enable students to develop technology for these applications, this module equips students with physical insight and engineering methods for heat and mass transport, chemically-reacting flows, multi-phase flows, and porous media flows. -
SESM6040 2026-27
Thermo-Fluid Engineering for Carbon Capture, Utilisation and Storage (CCUS)
Hydrocarbon fuels will continue to play a significant role in the global energy system while society transitions towards lower-carbon energy sources. Improving the efficiency of fuel-based technologies and reducing their environmental impact therefore remains a major engineering challenge. This module explores the thermo-fluid processes that underpin cleaner and more sustainable energy technologies.
You will investigate the engineering science behind heat and mass transfer, chemically reacting flows, multiphase flows and porous media, developing the analytical tools needed to understand complex energy systems. These principles will be applied to technologies including carbon capture, utilisation and storage, enhanced oil and gas recovery, and other approaches aimed at improving energy efficiency and reducing greenhouse gas emissions. Throughout the module, you will strengthen your ability to analyse coupled thermal, fluid and chemical processes while considering their role within the wider transition to sustainable energy.
By the end of the module, you will be able to apply advanced thermo-fluid engineering methods to evaluate and develop technologies that improve energy efficiency and reduce environmental impact, equipping you with specialist skills for careers in sustainable energy and process engineering. -
SESM6040 2030-31
Thermo-Fluid Engineering for Carbon Capture, Utilisation and Storage (CCUS)
Hydrocarbon fuels will continue to play a significant role in the global energy system while society transitions towards lower-carbon energy sources. Improving the efficiency of fuel-based technologies and reducing their environmental impact therefore remains a major engineering challenge. This module explores the thermo-fluid processes that underpin cleaner and more sustainable energy technologies.
You will investigate the engineering science behind heat and mass transfer, chemically reacting flows, multiphase flows and porous media, developing the analytical tools needed to understand complex energy systems. These principles will be applied to technologies including carbon capture, utilisation and storage, enhanced oil and gas recovery, and other approaches aimed at improving energy efficiency and reducing greenhouse gas emissions. Throughout the module, you will strengthen your ability to analyse coupled thermal, fluid and chemical processes while considering their role within the wider transition to sustainable energy.
By the end of the module, you will be able to apply advanced thermo-fluid engineering methods to evaluate and develop technologies that improve energy efficiency and reduce environmental impact, equipping you with specialist skills for careers in sustainable energy and process engineering. -
SESM6040 2031-32
Thermo-Fluid Engineering for Carbon Capture, Utilisation and Storage (CCUS)
Hydrocarbon fuels will continue to play a significant role in the global energy system while society transitions towards lower-carbon energy sources. Improving the efficiency of fuel-based technologies and reducing their environmental impact therefore remains a major engineering challenge. This module explores the thermo-fluid processes that underpin cleaner and more sustainable energy technologies.
You will investigate the engineering science behind heat and mass transfer, chemically reacting flows, multiphase flows and porous media, developing the analytical tools needed to understand complex energy systems. These principles will be applied to technologies including carbon capture, utilisation and storage, enhanced oil and gas recovery, and other approaches aimed at improving energy efficiency and reducing greenhouse gas emissions. Throughout the module, you will strengthen your ability to analyse coupled thermal, fluid and chemical processes while considering their role within the wider transition to sustainable energy.
By the end of the module, you will be able to apply advanced thermo-fluid engineering methods to evaluate and develop technologies that improve energy efficiency and reduce environmental impact, equipping you with specialist skills for careers in sustainable energy and process engineering. -
SESM6040 2027-28
Thermo-Fluid Engineering for Carbon Capture, Utilisation and Storage (CCUS)
Hydrocarbon fuels will continue to play a significant role in the global energy system while society transitions towards lower-carbon energy sources. Improving the efficiency of fuel-based technologies and reducing their environmental impact therefore remains a major engineering challenge. This module explores the thermo-fluid processes that underpin cleaner and more sustainable energy technologies.
You will investigate the engineering science behind heat and mass transfer, chemically reacting flows, multiphase flows and porous media, developing the analytical tools needed to understand complex energy systems. These principles will be applied to technologies including carbon capture, utilisation and storage, enhanced oil and gas recovery, and other approaches aimed at improving energy efficiency and reducing greenhouse gas emissions. Throughout the module, you will strengthen your ability to analyse coupled thermal, fluid and chemical processes while considering their role within the wider transition to sustainable energy.
By the end of the module, you will be able to apply advanced thermo-fluid engineering methods to evaluate and develop technologies that improve energy efficiency and reduce environmental impact, equipping you with specialist skills for careers in sustainable energy and process engineering. -
SESM6040 2028-29
Thermo-Fluid Engineering for Carbon Capture, Utilisation and Storage (CCUS)
Hydrocarbon fuels contribute more than 85% of world energy production, but also contribute more than 60% of anthropogenic greenhouse gas emissions. As research continues to find alternative and more sustainable energy production technologies hydrocarbon fuels will continue to be the primary energy supplier therefore measures need to be taken to improve their efficiency and minimise anthropogenic greenhouse gas emissions.
This module addresses thermo-fluid processes underlying technologies which use hydrocarbon fuels in a more sustainable manner, including carbon capture, utilisation and storage, and enhanced oil and gas recovery. To enable students to develop technology for these applications, this module equips students with physical insight and engineering methods for heat and mass transport, chemically-reacting flows, multi-phase flows, and porous media flows.