Sibanye Stillwater Ltd vs Nuscale Power Corporation — how do they compare? Sibanye Stillwater Ltd trades at $8.59 (market cap $5.66B), while Nuscale Power Corporation trades at $8.83 (market cap $2.76B). The key difference: Sibanye Stillwater Ltd is far larger — about 2.1× Nuscale Power Corporation's market cap, and Sibanye Stillwater Ltd pays a 3.89% dividend while Nuscale Power Corporation pays none. Which is the better fit depends on your goals.
| SBSW | SMR | |
|---|---|---|
Market Cap | $5.66B | $2.76B |
Sector | Basic Materials | Utilities |
52-Week High | $21.12 | $53.43 |
52-Week Low | $7.27 | $7.64 |
Enterprise Value | $7.28B | $1.87B |
Dividend Yield | 3.89% | — |
Trailing returns across standard periods
Latest headlines on both assets
Sibanye Stillwater Ltd is a South Africa-focused mining company. The Group currently owns and operates five underground and surface gold operations in South Africa: the Cooke, DRDGOLD, Driefontein, and Kloof operations in the West Witwatersrand region, and the Beatrix Operation in the southern Free State province. In addition to mining, the company owns and manages extraction and processing facilities at its operations, where gold-bearing ore is treated and beneficiated to produce gold dore. The gold dore is further refined at Rand Refinery into gold bars with a purity of at least 99.5% and is then sold on international markets. Sibanye holds a 44% interest in Rand Refinery, global refiners of gold, and the largest in Africa. Rand Refinery markets gold to customers around the world.
Read more on SBSW →NuScale Power Corporation is a leading developer of Small Modular Reactor (SMR) technology. The company's flagship product is a light water reactor SMR designed to generate clean, reliable, and scalable nuclear power. NuScale's technology is poised to address the global demand for carbon-free energy by offering a safer, smaller, and more flexible alternative to traditional large-scale nuclear power plants, with applications in electricity generation, desalination, and process heat.
Read more on SMR →