![]() ![]() ![]() When radioactive elements such as uranium, thorium, and plutonium undergo the natural process of fission or radioactive decay, they are transformed into other elements while releasing vast amounts of energy. Let's talk next about energy from nuclear fission, a major global generator of electrical power today and for the past 50 years. Finally, you will bring all these issues together to examine how the energy transition process is progressing and what we must do to create pathways to achieve our goals. ![]() Examine competing viewpoints (“realities”) to enable energy transition, focusing on the practical challenges in bringing about change on a global basis. Find out what roles energy storage must play to support the transition, and discuss how we can optimize transition processes. In this course from the University of Alberta and Canadian Society for Evolving Energy, you will join us to learn about the many energy sources available, and where technology is providing exciting new solutions to energy and environmental challenges. Climate change, environmental sustainability, and energy poverty are all important – and sometimes conflicting – drivers as we strive to supply more energy to more people with fewer negative impacts on Earth’s environments. But now, even while half of humanity cannot access adequate energy supplies, we are beginning a profound transition to more diverse energy sources. For the past 150 years, more and more people have gained access to energy, primarily in the form of fossil fuels – coal, petroleum and natural gas. Affordable, abundant and reliable energy is fundamental to human well-being and prosperity. ![]()
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