### Faint Young Sun Paradox
During the Archean Eon, approximately 4 billion years ago, the Sun's energy output was only about 70% of its current value. Under these conditions, global temperatures should have dropped below the freezing point of water, yet geological evidence shows that liquid oceans existed. Two scientists present opposing hypotheses to explain this phenomenon.
Scientist 1
The liquid oceans were maintained by a powerful greenhouse effect. Early Earth's atmosphere contained extremely high levels of carbon dioxide () and methane (). Intense volcanic outgassing released at rates far exceeding modern levels, while the lack of exposed continental crust limited silicate weathering, a process that removes from the atmosphere. Simultaneously, early methanogenic bacteria in the anaerobic oceans produced abundant . Together, these gases trapped outgoing infrared radiation, raising surface temperatures enough to prevent global glaciation.
Scientist 2
Greenhouse gases alone cannot explain the liquid oceans because high atmospheric concentrations of would have led to extensive cloud cover, increasing planetary albedo (reflectivity) and reflecting the limited sunlight back into space. Instead, the primary driver of warming was a low global albedo. Because early Earth lacked continental landmasses, it was almost entirely covered by dark liquid oceans. Since water absorbs far more solar radiation than land or ice, the ocean-dominated planet absorbed a high fraction of the dim solar energy, warming the surface above freezing.
According to the hypothesis of Scientist 2, which of the following conditions was a necessary prerequisite for early Earth to absorb enough solar energy to maintain liquid oceans?
- The absence of large continental landmasses, which kept planetary albedo lowCevap
- BThe condensation of thick cloud layers, which prevented infrared radiation from escaping
- CThe presence of methanogenic bacteria, which altered the absorption spectrum of the atmosphere
- DThe rapid weathering of silicate rocks, which regulated atmospheric temperature