Introduction to the ANU Masters in Energy Transformation

2022/02/2610:04:25 education 2267

Rely on ANU Energy Transition graduate students to place themselves at the forefront of energy reform. Climate change is one of the greater challenges of the 21st century and can only be dealt with as the world adjusts to a carbon-free energy approach. In this interdisciplinary degree programme, you will tailor a curriculum to suit your personal interests, professional skills and aspirations, shaping your understanding of the current policy, legal, technical, natural and regulatory aspects of the energy transition. professional skill.

The importance of the energy transition has long been established, but relatively few people have the multi-course expertise needed to reasonably briefly describe or rationalize this complex issue. Fresh graduates of the energy transition graduate school can find jobs in government departments, current policies, scientific research, development trends and support institutions, foreign-funded enterprises and other related industries.

Learning Outcomes

Demonstrate cognitive, technical and creative expertise to investigate, dissect and synthesize complex energy-related information content, questions, definitions and underlying theories. Applies a multi-course approach to more complex real-world energy-related issues. Demonstrate high-quality process expertise in disciplines related to energy and climate change. Use a range of communication media and software to communicate effectively with friends, other professionals and the wider community. Demonstrate expertise in research ideas and conduct scientific research in the energy, climate change and/or sustainable industries.

Introduction to the ANU Masters in Energy Transformation - DayDayNews

Energy transition graduate students must undertake 96 units of which:

Minimum 24 units must be derived from 8000-level course content

96 units must contain:

12 credits after taking the following compulsory courses:

ENGN6516 Energy Resources and Renewable Technologies (6 credits)

PHYS8013 Fundamentals of Energy Generation and Transformation (6 credits)

Energy from the following list Transition and Climate Law Course Content Minimum 6 units:

LAWS8037 Sustainable Energy Law (6 credits)

LAWS8146 Overall Planning and Environmental Hazard Assessment (6 credits)

LAWS8180 International Climate Law (6 credits)

LAWS8181 Australian Climate Law (6 credits)

LAWS8189 Fundamentals of Natural Environment and Sustainable Development (6 credits)

LAWS8264 International Environmental Law (6 credits)

LAWS8278 Natural Environment Objection Handling (6 credits)

POGO8212 Management Approaches to Energy Transition Development (6 credits)

A minimum of 6 units from the Economics of Energy Transition from the following list:

EMDV8080 International Current Policy and Social Economics of Climate Change (6 credits) _span5 span

EMDV8081 Current Policy and Social Economics of Climate Change in China (6 credits)

IDEC8089 Energy Economics (6 credits)

Minimum 6 units of climate change course content from the list below :

ENVS6307 Climate Change: Science, Social Development and Current Policy (6 credits)

ENVS8003 Climate Change Vulnerability and Integration (6 credits)

Take a minimum of 6 courses from the list below Units:

PHYS6010 Hydrogen Economy Development (6 units)

ENVS6025 Complex Environmental Pollution Issues in Action (6 units)

Do more of the lessons in the following list to get 60 units:

BUSN7017 Sustainable Development Concepts and Social Responsibility, Obligation and Reporting (6 credits)

COMP7310 ICT Sustainability (6 units)

ECON8040 Resource and Environmental Economics (6 credits)

EMDV8013 Development Trends and Environmental Pollution Issues (6 units)

EMDV8078 Introduction to Social Economics of Environment and Resources (6 credits)

EMDV8101 my country, Social Development and Ecological Resources (6 units)

EMSC6021 Fundamentals of Climate Science (6 credits)

span4sp an ENGN6224 Fluid Dynamics and Thermal Conduction (6 units)

ENGN6334 Semiconductor Materials (6 units)

ENGN6524 Solar Power Technology (6 units)

ENGN6525 Solar Power Technology (6 units)

ENGN6548 Wind (6 units)

ENGN8527 Solar Power Generation Technical Advanced Theme Style (6 credits)

ENG38602 Scientific Research New Project (6 units)

ENGN with span84span Power Supply System and Microgrid Integration (6 units)

ENGN8832 Energy and Energy Efficiency in Large Cities (6 credits)

ENGN8833 Energy Efficiency and Carburization in Industrial Production (6 units)

ENGN8830 Photovoltaic Power Stations (6 units)

ENVS6005 Sustainable Big City System Software (6 units)

ENVS6013 Social Development and Environmental Destruction (6 credits)

ENVS6015 GIS and Data Mining Technology (6 credits)

ENVS6021 Participatory Resource Allocation: Collaboration with Community and Stakeholders (6 credits)

ENVS6033 Current Policies for the International Natural Environment (6 credits)

ENVS6319 Advanced Remote Sensing Techniques and GIS (6 units) _span 5span

ENVS8015 Scientific Perspectives of Today's Natural Environment (6 credits)

ENVS8016 Contemporary Perspectives of Interaction between Natural Environment and Social Development (6 credits)

MGMT7007 Sustainable Development Perspective Management Methods (6 units)

PHYS8202 nuclear reactor science (6 credits)

PHYS8205 nuclear fuel cycle (6 units)

SCOM6027 science sociology (6 credits)

SCOM650

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