
Despite all the advancements we have achieved globally in recent decades, as many as 750 million people still lack access to electricity. Tackling energy poverty requires far more than linking communities to an electric grid. Closing the massive disparity in opportunity for people around the world will require building energy abundance, not just access. Energy is prosperity, and one way to measure it is by the Modern Energy Minimum. Developed by the Energy for Growth Hub, this benchmark posits that a truly modern life requires at least 1,000 kilowatt-hours per person, per year—10 to 20 times the amount typically used to define electricity access. Here at the Center on Global Energy Policy we're partnering with the Rockefeller Foundation to launch a High-Level Panel on Universal Energy Abundance. The panel is dedicated to providing decision-makers with the insights needed to drive industrialization, job creation, and broad-based prosperity across emerging economies. So how can we develop and invest in energy infrastructure globally in a way that supports prosperity? What role should governments play? Do the right tools to improve access exist? And how do we navigate the tension between energy growth and climate policy? Today on the show, Jason speaks with Katie Auth about energy's role in driving lasting economic change and why the modern energy minimum model could produce a meaningfully better standard of living in developing economies. Katie is the deputy executive director at the Energy for Growth Hub, which works to end poverty through sustainable development and climate resilience. She's also a non-resident fellow on US-Africa relations at the Carnegie Endowment for International Peace and a member of the Economic Advisory Council for the U.S. Millennium Challenge Corporation. Previously, she spent seven years at the U.S. Agency for International Development, including as senior development finance advisor and acting deputy coordinator of Power Africa. Credits: Hosted by Jason Bordoff and Bill Loveless. Produced by Mary Catherine O'Connor, Caroline Pitman, and Kyu Lee. Engineering by Gregory Vilfranc.
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