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Much of it probes the intricate delicacies of the things of the Earth – how a formation of passing clouds can look; the wonder of certain species of jellyfish.
On the other hand, such macro data has no place when you're looking at the formation of clouds over a single locality, or why a storm seems to have struck with unnatural fierceness there.
For example, while atmospheric thermodynamics may suffice to explain the formation of clouds, it fails to provide a solid framework for accurate deterministic predictions of the intensity and spatial extent of storms.
The results point to the importance of a detailed knowledge of the underlying microphysical processes in order to understand the formation of clouds and precipitation more accurately.
The formation of clouds and rain.
These cosmic rays would then have seeded the formation of clouds, which cools the planet.
It also promotes the formation of clouds, and generates further warming by dimming the reflective surface of snow and ice.
Such aerosols may also contribute to the formation of clouds, which also reflect sunlight.
In addition, aerosols can influence the formation of clouds, known as the "aerosol indirect effect".
That promotes the formation of clouds, which reflect sunlight back into space.
Notice the lack of clouds around the fires in the upper image; it is possible that heat rising from the fires has prevented the formation of clouds.
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Since I tried Ludwig back in 2017, I have been constantly using it in both editing and translation. Ever since, I suggest it to my translators at ProSciEditing.

Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com