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The data is counted and shown in different time scales from 1 to 10 min.
Sediment transport processes vary at a variety of time scales – from seconds, hours, days to months and years.
Space-based measurements indicate that the total solar irradiance changes at various time scales, from minutes to the solar cycle.
We mention without proof several foundational definitions and results in the calculus on time scales from an excellent introductory text by Bohner and Peterson [2].
This geomagnetic field changes over a wide range of time scales from a fraction of a second to millions of years.
Local activity coefficient K is introduced as the logarithm of PSD in the 0.3 0.5 mHz frequency range (time scales from 33 to 55 min).
Short-term variability with time scales from minutes to weeks is represented by solar flares, CMEs, geomagnetic storms, and atmospheric waves.
A Wind Power Prediction Tool (WPPT) is developed to predict the wind power on various time scales, from half an hour to 36 h ahead.
Analysis of these salinity data have revealed variations on time scales from tidal (~ 12 hour), seasonal, inter-annual, and multi-decadal, to centennial.
We describe a three-dimensional (3D) finite-element ocean model designed for investigating the large-scale ocean circulation on time scales from years to decades.
Variability is a key characteristic of the ionosphere, which varies over a wide range of time scales, from hours to years.
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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