8596 modules
Page 583
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SOES2025 2026-27
Ocean Data Analysis and Modelling
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SOES2025 2027-28
Ocean Data Analysis and Modelling
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SOES2025 2028-29
Ocean Data Analysis and Modelling
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LAWS2063 2027-28
Ocean Sustainability, Climate Change and Environmental Governance
This module provides an advanced and critical examination of the legal and governance frameworks regulating the marine environment, with a particular focus on sustainability challenges in the ocean space. The ocean covers approximately 71% of the Earth’s surface and constitutes one of the planet’s most valuable natural resources. Its estimated economic value is at least US$24 trillion; it absorbs around 90% of the excess heat generated by global warming, sequesters approximately 25–30% of anthropogenic carbon dioxide emissions, and produces over 50% of the oxygen that humans breathe. An estimated 50–80% of all life on Earth is found in the ocean, yet less than 10% of ocean space has been explored. Against this scientific backdrop, the module examines how international and domestic legal regimes respond to accelerating ecological pressures on the global ocean, including climate change, ocean acidification and biodiversity loss, positioning law both as a mechanism for environmental protection and as a site of political, economic and institutional contestation.
Centred on United Nations legal and policy regimes, the module invites students to critically assess how these frameworks regulate human activities such as exploitation of seabed resources, renewable energy, fishing, shipping, and marine scientific research in order to safeguard the long-term health, resilience and productivity of marine ecosystems. In response to the growing global demand for rare earth minerals and other strategic resources, the module further examines emerging governance challenges associated among others with, shipping, deep-sea mining, and analyses how these developments impact communities — including effects on food security, property, and cultural practices. These developments raise profound legal and ethical questions concerning environmental protection, intergenerational equity, and the adequacy of existing legal frameworks governing areas beyond national jurisdiction.
Throughout, the module emphasises the role of law and policy in improving ocean sustainability while amplifying the societal benefits derived from marine ecosystems. Ocean governance is situated within the broader framework of the United Nations Sustainable Development Goals, with particular attention to poverty reduction, zero hunger, climate action, reduced inequalities and the protection of life below water. Upon completion, students will possess specialist legal knowledge and critical policy insight enabling them to engage with the complex governance of the global ocean in an era of ecological crisis. -
SESS6070 2025-26
Offshore Engineering & Analysis
Offshore infrastructure forms a key part of our global communication, energy generation, material transport and environment monitoring networks. This module examines the general engineering concepts and analytical techniques that are fundamental to design, operate and decommission offshore fixed, floating and seabed infrastructure in a safe, sustainable way. This includes learning about the different types of sites, platforms, and monitoring/decommissioning requirements. The module introduces analytic and numeric methods for predicting the wind, wave and current loads on offshore structures and the engineering design of different systems to ensure their safety and performance under these expected loads. The module suits a range of career pathways linked to our marine, maritime and offshore energy industries. -
SESS6070 2026-27
Offshore Engineering & Analysis
Offshore infrastructure forms a key part of our global communication, energy generation, material transport and environment monitoring networks. This module examines the general engineering concepts and analytical techniques that are fundamental to design, operate and decommission offshore fixed, floating and seabed infrastructure in a safe, sustainable way. This includes learning about the different types of sites, platforms, and monitoring/decommissioning requirements. The module introduces analytic and numeric methods for predicting the wind, wave and current loads on offshore structures and the engineering design of different systems to ensure their safety and performance under these expected loads. The module suits a range of career pathways linked to our marine, maritime and offshore energy industries. -
SESS6070 2028-29
Offshore Engineering & Analysis
Offshore infrastructure forms a key part of our global communication, energy generation, material transport and environment monitoring networks. This module examines the general engineering concepts and analytical techniques that are fundamental to design, operate and decommission offshore fixed, floating and seabed infrastructure in a safe, sustainable way. This includes learning about the different types of sites, platforms, and monitoring/decommissioning requirements. The module introduces analytic and numeric methods for predicting the wind, wave and current loads on offshore structures and the engineering design of different systems to ensure their safety and performance under these expected loads. The module suits a range of career pathways linked to our marine, maritime and offshore energy industries. -
SESS6070 2030-31
Offshore Engineering & Analysis
Offshore infrastructure forms a key part of our global communication, energy generation, material transport and environment monitoring networks. This module examines the general engineering concepts and analytical techniques that are fundamental to design, operate and decommission offshore fixed, floating and seabed infrastructure in a safe, sustainable way. This includes learning about the different types of sites, platforms, and monitoring/decommissioning requirements. The module introduces analytic and numeric methods for predicting the wind, wave and current loads on offshore structures and the engineering design of different systems to ensure their safety and performance under these expected loads. The module suits a range of career pathways linked to our marine, maritime and offshore energy industries. -
SESS6070 2029-30
Offshore Engineering & Analysis
Offshore infrastructure forms a key part of our global communication, energy generation, material transport and environment monitoring networks. This module examines the general engineering concepts and analytical techniques that are fundamental to design, operate and decommission offshore fixed, floating and seabed infrastructure in a safe, sustainable way. This includes learning about the different types of sites, platforms, and monitoring/decommissioning requirements. The module introduces analytic and numeric methods for predicting the wind, wave and current loads on offshore structures and the engineering design of different systems to ensure their safety and performance under these expected loads. The module suits a range of career pathways linked to our marine, maritime and offshore energy industries. -
HLTH6215 2025-26
Open learning (10 ECTS)
This is an open, flexible independent learning module. You will be allocated an academic advisor who will be available for up to 2 contact hours. These contact hours may be face to face (in person or online), by telephone and by email depending upon need, preference and availability. You will work with your academic coach to:
• Identify a health-related topic.
• Apply the module learning outcomes to your topic of study.
• Agree an appropriate method of assessment from a list of those deemed suitable to the nature of the topic.
• Agree a learning contract which details a proposed schedule for attainment.
NB Where students undertaking the MSc in Professional Practice in Health Sciences select to undertake more than one Open Learning module they must demonstrate to the Programme Lead that the topic of each subsequent open module is relevant to the overall aim or trajectory of the programme of study. Additional Open Learning m modules must not have the same module code. Thus additional modules can only be selected if they bear different credit weightings.