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the claim

Precipitation amounts are generally lower in cold weather than in warm weather

the verdict
SUPPORTED
the evidence backs this
Recorded sources
1 source for · 0 against

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A retrieved study indicates that precipitation intensity scales with temperature according to the Clausius-Clapeyron relation, supporting the claim that precipitation amounts are generally lower in cold weather than in warm weather.

The analysis

rails:sufficiency:supported:single_source:for=1+0p:against=0+0p | v55:sufficiency

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Evidence for · 1
Recorded source metadata

Atmospheric convection, dynamics and topography shape the scaling pattern of hourly rainfall extremes with temperature globally | Communications Earth & Environment. https://www.nature.com/articles/s43247-020-0003-0

Atmospheric convection, dynamics and topography shape the scaling pattern of hourly rainfall extremes with temperature globally | Communications Earth & Environment Download PDF ### Subjects - Climate change - Hydrology - Natural hazards ## Abstract Precipitation extremes are expected to intensify under climate change as ground temperature rises with a rate similar to the air’s water holding capacity ~7%/K (Clausius-Clapeyron). Recent studies have been inconclusive on the robustness and global consistency of this behavior. Here, we use hourly weather stations, 40 years of climate reanalysis and two convection permitting models to unravel the global pattern of rainfall extremes scaling with temperature at the hourly scale and identify hotspots of divergence from thermodynamical expectations. We show that in high- and mid-latitudes precipitation extremes closely follow a Clausius-Clapeyron scaling, while divergence occurs over the tropics and subtropics. Local features of atmospheric convection, larger-scale dynamics and orography, affect the dependence of extreme rainfall on surface temperature. ### The role of cyclonic activity in tropical temperature-rainfall scaling https:

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held for human review08 Aug 2026
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