11318 modules
Page 917
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GGES2005 2030-31
Remote Sensing for Earth Observation
The module will look at the basic theory and practical application of remote sensing for monitoring the terrestrial environment. -
MEDI2044 2026-27
Renal
This module will consolidate and build on the basic medical sciences covered in Foundations of Medicine and Cardiopulmonary modules of Year 1. In particular, it will focus on the renal system, its associated diseases and treatment options. The module will be studied alongside the MIP2 module to enable students to consolidate their theoretical learning with practical patient based experience. Further details will be provided on Blackboard. -
MEDI2044 2027-28
Renal
This module will consolidate and build on the basic medical sciences covered in Foundations of Medicine and Cardiopulmonary modules of Year 1. In particular, it will focus on the renal system, its associated diseases and treatment options. The module will be studied alongside the MIP2 module to enable students to consolidate their theoretical learning with practical patient based experience. Further details will be provided on Blackboard. -
SESS6067 2029-30
Renewable Energy from Wind, Wave and Tide
Meeting global energy demands sustainably is one of the defining engineering challenges of our time. Renewable energy technologies that harness wind, waves and tidal flows are playing an increasingly important role in the transition to low-carbon energy systems.
In this module, you will investigate how energy can be extracted from atmospheric and ocean processes using modern engineering technologies. You will develop the analytical skills needed to evaluate renewable energy devices and large-scale energy developments, considering efficiency, cost-effectiveness, installation requirements and long-term performance in marine environments. Design studies and laboratory activities will help you connect engineering theory with practical renewable energy applications.
By the end of the module, you will be able to assess renewable energy technologies and evaluate their contribution to future energy systems. The module supports further study and careers in offshore renewable energy, sustainable engineering and energy system design. -
SESS6067 2027-28
Renewable Energy from Wind, Wave and Tide
Meeting global energy demands sustainably is one of the defining engineering challenges of our time. Renewable energy technologies that harness wind, waves and tidal flows are playing an increasingly important role in the transition to low-carbon energy systems.
In this module, you will investigate how energy can be extracted from atmospheric and ocean processes using modern engineering technologies. You will develop the analytical skills needed to evaluate renewable energy devices and large-scale energy developments, considering efficiency, cost-effectiveness, installation requirements and long-term performance in marine environments. Design studies and laboratory activities will help you connect engineering theory with practical renewable energy applications.
By the end of the module, you will be able to assess renewable energy technologies and evaluate their contribution to future energy systems. The module supports further study and careers in offshore renewable energy, sustainable engineering and energy system design. -
SESS6067 2026-27
Renewable Energy from Wind, Wave and Tide
Meeting global energy demands sustainably is one of the defining engineering challenges of our time. Renewable energy technologies that harness wind, waves and tidal flows are playing an increasingly important role in the transition to low-carbon energy systems.
In this module, you will investigate how energy can be extracted from atmospheric and ocean processes using modern engineering technologies. You will develop the analytical skills needed to evaluate renewable energy devices and large-scale energy developments, considering efficiency, cost-effectiveness, installation requirements and long-term performance in marine environments. Design studies and laboratory activities will help you connect engineering theory with practical renewable energy applications.
By the end of the module, you will be able to assess renewable energy technologies and evaluate their contribution to future energy systems. The module supports further study and careers in offshore renewable energy, sustainable engineering and energy system design. -
SESS6067 2030-31
Renewable Energy from Wind, Wave and Tide
Meeting global energy demands sustainably is one of the defining engineering challenges of our time. Renewable energy technologies that harness wind, waves and tidal flows are playing an increasingly important role in the transition to low-carbon energy systems.
In this module, you will investigate how energy can be extracted from atmospheric and ocean processes using modern engineering technologies. You will develop the analytical skills needed to evaluate renewable energy devices and large-scale energy developments, considering efficiency, cost-effectiveness, installation requirements and long-term performance in marine environments. Design studies and laboratory activities will help you connect engineering theory with practical renewable energy applications.
By the end of the module, you will be able to assess renewable energy technologies and evaluate their contribution to future energy systems. The module supports further study and careers in offshore renewable energy, sustainable engineering and energy system design. -
SESS6067 2031-32
Renewable Energy from Wind, Wave and Tide
Meeting global energy demands sustainably is one of the defining engineering challenges of our time. Renewable energy technologies that harness wind, waves and tidal flows are playing an increasingly important role in the transition to low-carbon energy systems.
In this module, you will investigate how energy can be extracted from atmospheric and ocean processes using modern engineering technologies. You will develop the analytical skills needed to evaluate renewable energy devices and large-scale energy developments, considering efficiency, cost-effectiveness, installation requirements and long-term performance in marine environments. Design studies and laboratory activities will help you connect engineering theory with practical renewable energy applications.
By the end of the module, you will be able to assess renewable energy technologies and evaluate their contribution to future energy systems. The module supports further study and careers in offshore renewable energy, sustainable engineering and energy system design. -
SESS6067 2025-26
Renewable Energy from Wind, Wave and Tide
The atmospheric and gravitational processes present on the earth generate flows of wind and water. This module studies these resources and practical methods/technologies for extracting cost-effective electrical and other energy conversions. The main focus is on wind, wave and tidal energy devices including the use of turbines for low and high head hydroelectric schemes. Systems considered include the vital aspect of marine energy in the offshore environment including installation and system survivability. A final section considers how large scale (up to GW scale) arrays of devices should be sited and operated together. Large offshore wind farms both fixed and floating is a particular focus. Design and laboratory assignments explore the physics and analytical methods used to assess device cost-effectiveness. -
SESS6067 2028-29
Renewable Energy from Wind, Wave and Tide
The atmospheric and gravitational processes present on the earth generate flows of wind and water. This module studies these resources and practical methods/technologies for extracting cost-effective electrical and other energy conversions. The main focus is on wind, wave and tidal energy devices including the use of turbines for low and high head hydroelectric schemes. Systems considered include the vital aspect of marine energy in the offshore environment including installation and system survivability. A final section considers how large scale (up to GW scale) arrays of devices should be sited and operated together. Large offshore wind farms both fixed and floating is a particular focus. Design and laboratory assignments explore the physics and analytical methods used to assess device cost-effectiveness.