What specific logistical and technical strategies are embedded in the Danish legal framework to ensure the safe, long-term containment of nuclear waste?
How does Denmark reconcile the economic opportunity of its uranium reserves in Greenland with its stated commitment to nuclear disarmament and non-proliferation?
Since PSH relies on specific topographical features, what alternative methods or 'closed-loop' systems are being developed to implement this technology in geographically unsuitable areas?
How does the round-trip efficiency of Pumped Storage Hydropower compare to emerging storage technologies like lithium-ion batteries or hydrogen storage?
Could the strategic risk of uranium volatility accelerate the commercialization of alternative fuel technologies, such as thorium-based reactors or molten salt reactors, to bypass traditional uranium supply chains?
To what extent is the 'processing lag' caused by a lack of physical infrastructure versus the regulatory and environmental hurdles required to permit new conversion and enrichment facilities?
Which specific nations or geographic regions currently hold the highest concentration of uranium reserves, and which are most susceptible to the 'resource nationalism' mentioned in the text?
Beyond traditional baseload and intermittent sources, what role should long-duration energy storage (LDES) or green hydrogen play in providing the 'diverse backup' required to stabilize the grid?
What specific demand-side management strategies, such as smart grid technologies or dynamic pricing, could be most effective in mitigating the volatility caused by data centers and the electrification of transport?
How might the deployment of Small Modular Reactors (SMRs) address the specific need for operational flexibility that traditional, large-scale nuclear plants often lack?
Beyond standard emergency AC power systems, what emerging technologies or alternative energy storage solutions could be integrated into nuclear plants to mitigate the risk of a total Station Blackout?