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Showing posts from March, 2026

Welcome to Erasmus+ Høyanger Meeting 2026!

Natural Resources and the Green Transition Energy, minerals and sustainable development in a European perspective Welcome to Høyanger! A central aim of the Erasmus+ collaboration is to explore shared challenges and opportunities in Europe. During this visit, students will examine how natural resources are used and managed in the transition towards a more sustainable society. The programme focuses on three key themes: energy production, mineral resources and circular economy. Through visits, presentations and case work, students will explore both the opportunities and the dilemmas connected to resource use, industrial development and environmental sustainability. The final day will bring these themes together through discussions and case work, encouraging students to reflect on how societies can balance economic development, environmental protection and future needs. We are delighted to welcome you to Høyanger, Norway, for this inspiring Erasmus+ international meeting, taking place...

Plan for the week

Week plan for activities in Høyanger Monday: Welcome to Høyanger! 19:30            Arrival at Nordeide  – picked up by hosts and spend time with families                            Students- Time with hosts and host family                          Teachers dinner at hotel   Tuesday: Energy and Industry 8:00              Breakfast at school (optional)’ 8:15               Official start and welcome (Room 2404)                           Introduction to Theme and Topic for the days in Høyanger 10:00             Lecture with Kåre Hønsi for Statkraft 11:00     ...

Preparation for Your Erasmus+ Meeting in Høyanger, Norway

  We are excited to welcome you to Høyanger, Norway, for our Erasmus+ international meeting from March 16th to March 20th ! To ensure that you get the most out of this experience, we ask you to come prepared by researching important topics related to change and conflict in energy —the key theme of our project: " Europe’s Resource Dilemma: Energy, Minerals and the Green Transition " Before your arrival, we ask you to  explore the following questions about your home region and country: Energy and Industry: Different types, What is popular or used in your region Minerals and the Green Transition: New technology requires minerals to supply its own demands for production and more. what does this mean for your generation and those to come? Circular Economy and Future Solutions: What does it mean to be sustainable in an ever changing market in developing industries? Why This Matters Your insights will shape our discussions and activities throughout the week. By understanding...

Circular Economy and Future Solutions

Innovation , Sustainable Industry and Balancing Resource Use A circular economy focuses on reducing waste by reusing, repairing, and recycling materials instead of constantly extracting new resources. In Europe, this idea is important as countries expand renewable energy systems like wind, solar, and electric transport. These technologies require minerals such as copper and lithium. By recycling materials from old electronics and batteries, societies can reduce the need for new mining and lower environmental impacts. In the future, better recycling technologies and longer-lasting products may help make energy systems more sustainable. Researchers are also developing renewable technologies that require fewer rare minerals. These solutions could support the transition to clean energy while helping protect nature and reduce resource use.

Energy and Industry: Hydropower, Wind Power and the role of energy in Industrial Development

Energy and Industry: Hydropower, Wind Power and the role of energy in Industrial Development Hydropower and wind power are important renewable energy sources that support industrial development. Hydropower uses the movement of water to generate electricity, while wind power converts energy from the wind into power through turbines. In many European countries, these energy sources provide stable and low-carbon electricity that industries rely on for manufacturing, transportation, and technology production. Access to reliable energy has historically been a key factor in economic growth and industrial expansion. However, energy production can also create challenges for nature and local communities. Hydropower dams may change river ecosystems and affect fish migration, while large wind farms can alter landscapes and impact wildlife such as birds. Because of this, governments and industries must balance the need for energy with environmental protection. Careful planning and new technologie...

Minerals and the Green Transition

  Minerals and the Green Transition Mineral mining provides important raw materials used in technology, construction, and renewable energy systems. Metals such as copper and lithium are needed for electric cars, batteries, and wind turbines. Mining can also create jobs and economic growth in regions where minerals are found. At the same time, mining can damage nature. Large areas of land may be disturbed, habitats destroyed, and water or soil polluted by mining waste. Because of these risks, many people argue that mining should be strictly regulated and combined with recycling and more sustainable use of resources.

Group Work and Responsibilities

International Student Workshop: Energy & Sustainability Group 1: Renewable Energy vs. Nature Protection Yasmin, Chiara, Sofia, Nahoum Questions:   Why does Europe need more renewable energy?   What environmental impacts come from wind farms, hydropower, solar?   Why do some communities resist renewable projects?   How can conflicts between nature and energy be solved?   Example   cases :   wind   power  in Norway,  hydropower   expansion  ,  offshore  wind  in Europe   Group 2: Mining for the Green Transition Thomas, Alexander, Laetizia, Abi Questions:   Why do green technologies need minerals?   What minerals are important?   (lithium, copper, rare earth elements, nickel)   Should Europe mine more resources locally?   What are the environmental consequences of mining?   Example   cases :   lithium   mining  , rare  earth  minerals,  copper...