11312 modules
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EDUC2030 2026-27
Adult Learners and Learning
The module is aimed at providing a broad overview of adult learning and adult learners. It touches upon FE, HE and work based learning. It aims to explore the barriers and enablers to adult learning and how such learning is a vital part of the world of work. It considers the perspectives of learning from a range of stakeholders view points and examines how these factors compete and interact. It aims to explore the underpinning learning theory that most impacts upon adults and their learning environment. Finally, it considers why learning in organisations may be ineffective and how attempts can be made to maximise the impact of learning at work. -
EDUC2030 2027-28
Adult Learners and Learning
The module is aimed at providing a broad overview of adult learning and adult learners. It touches upon FE, HE and work based learning. It aims to explore the barriers and enablers to adult learning and how such learning is a vital part of the world of work. It considers the perspectives of learning from a range of stakeholders view points and examines how these factors compete and interact. It aims to explore the underpinning learning theory that most impacts upon adults and their learning environment. Finally, it considers why learning in organisations may be ineffective and how attempts can be made to maximise the impact of learning at work. -
EDUC2030 2028-29
Adult Learners and Learning
The module is aimed at providing a broad overview of adult learning and adult learners. It touches upon FE, HE and work based learning. It aims to explore the barriers and enablers to adult learning and how such learning is a vital part of the world of work. It considers the perspectives of learning from a range of stakeholders view points and examines how these factors compete and interact. It aims to explore the underpinning learning theory that most impacts upon adults and their learning environment. Finally, it considers why learning in organisations may be ineffective and how attempts can be made to maximise the impact of learning at work. -
SESA6087 2026-27
Advanced Aeronautics
Advanced Aeronautics further develops student’s knowledge in aerodynamics as applied to fixed wing aircraft and rotorcraft beyond the level achieved in Part II Aerodynamics, focusing on the application of basic fluid dynamics principles to flow over external aerodynamic surfaces. This includes methods to calculate the potential flow outside the boundary layer as well as method to calculate the boundary layer itself, with understanding of laminar and turbulent boundary layers as well as the process of transition to turbulence. These methods were applied to wings and rotorcraft dynamic analysis. -
SESA3043 2028-29
Advanced Aeronautics
Advanced Aeronautics further develops student’s knowledge in aerodynamics as applied to fixed wing aircraft and rotorcraft beyond the level achieved in Part II Aerodynamics, focusing on the application of basic fluid dynamics principles to flow over external aerodynamic surfaces. This includes methods to calculate the potential flow outside the boundary layer as well as method to calculate the boundary layer itself, with understanding of laminar and turbulent boundary layers as well as the process of transition to turbulence. These methods were applied to wings and rotorcraft dynamic analysis. -
SESA3043 2027-28
Advanced Aeronautics
Advanced Aeronautics further develops student’s knowledge in aerodynamics as applied to fixed wing aircraft and rotorcraft beyond the level achieved in Part II Aerodynamics, focusing on the application of basic fluid dynamics principles to flow over external aerodynamic surfaces. This includes methods to calculate the potential flow outside the boundary layer as well as method to calculate the boundary layer itself, with understanding of laminar and turbulent boundary layers as well as the process of transition to turbulence. These methods were applied to wings and rotorcraft dynamic analysis. -
SESA3043 2030-31
Advanced Aeronautics
Advanced Aeronautics further develops student’s knowledge in aerodynamics as applied to fixed wing aircraft and rotorcraft beyond the level achieved in Part II Aerodynamics, focusing on the application of basic fluid dynamics principles to flow over external aerodynamic surfaces. This includes methods to calculate the potential flow outside the boundary layer as well as method to calculate the boundary layer itself, with understanding of laminar and turbulent boundary layers as well as the process of transition to turbulence. These methods were applied to wings and rotorcraft dynamic analysis. -
SESA3043 2029-30
Advanced Aeronautics
Advanced Aeronautics further develops student’s knowledge in aerodynamics as applied to fixed wing aircraft and rotorcraft beyond the level achieved in Part II Aerodynamics, focusing on the application of basic fluid dynamics principles to flow over external aerodynamic surfaces. This includes methods to calculate the potential flow outside the boundary layer as well as method to calculate the boundary layer itself, with understanding of laminar and turbulent boundary layers as well as the process of transition to turbulence. These methods were applied to wings and rotorcraft dynamic analysis. -
SESA6087 2025-26
Advanced Aeronautics
Advanced Aeronautics further develops student’s knowledge in aerodynamics as applied to fixed wing aircraft and rotorcraft beyond the level achieved in Part II Aerodynamics, focusing on the application of basic fluid dynamics principles to flow over external aerodynamic surfaces. This includes methods to calculate the potential flow outside the boundary layer as well as method to calculate the boundary layer itself, with understanding of laminar and turbulent boundary layers as well as the process of transition to turbulence. These methods were applied to wings and rotorcraft dynamic analysis. -
SESA6087 2027-28
Advanced Aeronautics
Advanced Aeronautics further develops student’s knowledge in aerodynamics as applied to fixed wing aircraft and rotorcraft beyond the level achieved in Part II Aerodynamics, focusing on the application of basic fluid dynamics principles to flow over external aerodynamic surfaces. This includes methods to calculate the potential flow outside the boundary layer as well as method to calculate the boundary layer itself, with understanding of laminar and turbulent boundary layers as well as the process of transition to turbulence. These methods were applied to wings and rotorcraft dynamic analysis.