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To obtain observations over these longer time scales is a challenging task for glaciologists.
Our ability to look over such a wide range of time scales is unprecedented.
Research to date suggests that our understanding of this error across different time scales is limited.
Friction at different force, length, and time scales is of great interest in tribology.
In between these two time scales is the "new kid on the block": decadal, or near-term climate change prediction.
A map of the distribution of vibrational modes in wavelength and time scales is presented.
Using some Gronwall's integral inequalities, the uniform exponential stability of the closed-loop systems on arbitrary time scales, is guaranteed.
The adaptive optimal control of unknown nonlinear system with different time scales is considered in this paper.
Variability of Ob River flow on long time scales is poorly understood, however, because gaged flow records are short.
However, the separation in time scales is not large enough to support the notion of a solvent-decorated polymer.
These "polyploid" lineages are common and often ecologically highly successful, but their performance over evolutionary time scales is unclear (and highly contentious).
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