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OCCT2038 2027-28
Occupations by Design
This module will build on the design concepts you were introduced to at level 4 and enable you to apply new knowledge to your understanding of occupational therapy practice to support and enhance occupational engagement for health and well-being.
You will also take part in workshops and receive presentations from external speakers to further your knowledge of design principles and processes. -
ISVR3070 2029-30
Ocean Acoustics & Biomedical Ultrasound
Sound is a vital tool for exploring and understanding the underwater environment, it also plays a key role in many biomedical applications. This module will describe the underlying physics of sound propagation in liquids and discusses the engineering challenges when designing and assessing underwater acoustic systems.
The module will consider the underlying physical principles explaining the phenomena observed in the ocean. It will consider the basic principles underlying how sound propagates and provide an understanding of some of the basics of understanding rudimentary models of sound transmission.
It will describe the different types of acoustic systems and will consider how man-made systems can be analysed to make design decisions. These design principles are then applied to understand how marine mammals echolocate in the ocean. The role of acoustic systems in the conservation of these animals is also discussed.
Ultrasound is widely used in medicine not only for diagnosis, but also for therapeutic purposes and for treatments. The sound fields employed in such systems typically result in non-linear propagation. This module considers how non-linearity affects sound fields and considers use of ultrasound in a biomedical context. -
ISVR3070 2030-31
Ocean Acoustics & Biomedical Ultrasound
Sound is a vital tool for exploring and understanding the underwater environment, it also plays a key role in many biomedical applications. This module will describe the underlying physics of sound propagation in liquids and discusses the engineering challenges when designing and assessing underwater acoustic systems.
The module will consider the underlying physical principles explaining the phenomena observed in the ocean. It will consider the basic principles underlying how sound propagates and provide an understanding of some of the basics of understanding rudimentary models of sound transmission.
It will describe the different types of acoustic systems and will consider how man-made systems can be analysed to make design decisions. These design principles are then applied to understand how marine mammals echolocate in the ocean. The role of acoustic systems in the conservation of these animals is also discussed.
Ultrasound is widely used in medicine not only for diagnosis, but also for therapeutic purposes and for treatments. The sound fields employed in such systems typically result in non-linear propagation. This module considers how non-linearity affects sound fields and considers use of ultrasound in a biomedical context. -
ISVR3070 2025-26
Ocean Acoustics & Biomedical Ultrasound
Sound is a vital tool for exploring and understanding the underwater environment, it also plays a key role in many biomedical applications. This module will describe the underlying physics of sound propagation in liquids and discusses the engineering challenges when designing and assessing underwater acoustic systems.
The module will consider the underlying physical principles explaining the phenomena observed in the ocean. It will consider the basic principles underlying how sound propagates and provide an understanding of some of the basics of understanding rudimentary models of sound transmission.
It will describe the different types of acoustic systems and will consider how man-made systems can be analysed to make design decisions. These design principles are then applied to understand how marine mammals echolocate in the ocean. The role of acoustic systems in the conservation of these animals is also discussed.
Ultrasound is widely used in medicine not only for diagnosis, but also for therapeutic purposes and for treatments. The sound fields employed in such systems typically result in non-linear propagation. This module considers how non-linearity affects sound fields and considers use of ultrasound in a biomedical context. -
ISVR3070 2026-27
Ocean Acoustics & Biomedical Ultrasound
Sound is a vital tool for exploring and understanding the underwater environment, it also plays a key role in many biomedical applications. This module will describe the underlying physics of sound propagation in liquids and discusses the engineering challenges when designing and assessing underwater acoustic systems.
The module will consider the underlying physical principles explaining the phenomena observed in the ocean. It will consider the basic principles underlying how sound propagates and provide an understanding of some of the basics of understanding rudimentary models of sound transmission.
It will describe the different types of acoustic systems and will consider how man-made systems can be analysed to make design decisions. These design principles are then applied to understand how marine mammals echolocate in the ocean. The role of acoustic systems in the conservation of these animals is also discussed.
Ultrasound is widely used in medicine not only for diagnosis, but also for therapeutic purposes and for treatments. The sound fields employed in such systems typically result in non-linear propagation. This module considers how non-linearity affects sound fields and considers use of ultrasound in a biomedical context. -
ISVR3070 2027-28
Ocean Acoustics & Biomedical Ultrasound
Sound is a vital tool for exploring and understanding the underwater environment, it also plays a key role in many biomedical applications. This module will describe the underlying physics of sound propagation in liquids and discusses the engineering challenges when designing and assessing underwater acoustic systems.
The module will consider the underlying physical principles explaining the phenomena observed in the ocean. It will consider the basic principles underlying how sound propagates and provide an understanding of some of the basics of understanding rudimentary models of sound transmission.
It will describe the different types of acoustic systems and will consider how man-made systems can be analysed to make design decisions. These design principles are then applied to understand how marine mammals echolocate in the ocean. The role of acoustic systems in the conservation of these animals is also discussed.
Ultrasound is widely used in medicine not only for diagnosis, but also for therapeutic purposes and for treatments. The sound fields employed in such systems typically result in non-linear propagation. This module considers how non-linearity affects sound fields and considers use of ultrasound in a biomedical context. -
ISVR3070 2028-29
Ocean Acoustics & Biomedical Ultrasound
Sound is a vital tool for exploring and understanding the underwater environment, it also plays a key role in many biomedical applications. This module will describe the underlying physics of sound propagation in liquids and discusses the engineering challenges when designing and assessing underwater acoustic systems.
The module will consider the underlying physical principles explaining the phenomena observed in the ocean. It will consider the basic principles underlying how sound propagates and provide an understanding of some of the basics of understanding rudimentary models of sound transmission.
It will describe the different types of acoustic systems and will consider how man-made systems can be analysed to make design decisions. These design principles are then applied to understand how marine mammals echolocate in the ocean. The role of acoustic systems in the conservation of these animals is also discussed.
Ultrasound is widely used in medicine not only for diagnosis, but also for therapeutic purposes and for treatments. The sound fields employed in such systems typically result in non-linear propagation. This module considers how non-linearity affects sound fields and considers use of ultrasound in a biomedical context. -
SOES3035 2029-30
Ocean and Earth Science Research Training
This module will develop the skills necessary to become an independent researcher, and provide the underpinning skills base needed to undertake MSci level independent research. It will introduce you to a number of topics that reflect the range of research skills utilised in Ocean and Earth Science. The module will provide you with opportunities to engage with active researchers. You will gain experience in individual and group research under the direction of a topic-specific tutor, and begin to develop and plan your own research ideas. -
SOES3035 2027-28
Ocean and Earth Science Research Training
This module will develop the skills necessary to become an independent researcher, and provide the underpinning skills base needed to undertake MSci level independent research. It will introduce you to a number of topics that reflect the range of research skills utilised in Ocean and Earth Science. The module will provide you with opportunities to engage with active researchers. You will gain experience in individual and group research under the direction of a topic-specific tutor, and begin to develop and plan your own research ideas. -
SOES3035 2028-29
Ocean and Earth Science Research Training
This module will develop the skills necessary to become an independent researcher, and provide the underpinning skills base needed to undertake MSci level independent research. It will introduce you to a number of topics that reflect the range of research skills utilised in Ocean and Earth Science. The module will provide you with opportunities to engage with active researchers. You will gain experience in individual and group research under the direction of a topic-specific tutor, and begin to develop and plan your own research ideas.