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Deriving the optimal decision rule in the canonical decentralized setting with correlated observations was shown to be complicated even for the simple case of two sensors.
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The observed patterns from January 2014 and from January 1988, the two wettest Januarys in observations, are shown (Fig. 6a, b).
Observations are shown by black line on left side, for JJA season and for August.
The Chandra spectra from the 2013 and 2017 observations are shown in an inset in the graphic.
The SNOE observations are shown however to be in excellent agreement with the EUVAC empirical model of solar irradiance.
Experimental observations are shown to be qualitatively well in accordance with numerical predictions, which justifies the adopted approach.
These observations are shown to be consistent with catalytic behaviour found in direct studies of carbon deposition.
The experimental observations are shown graphically with both the activation time and reaction duration at different curing temperatures.
The observations are shown for nanoscopic porous cell frustule (diatoms), for the direct study of bacteria (Escherichia coli), and for a time-lapse approach to explore the dynamics of living dendritic spines (neurones).
The observations are shown by the orange line, while the forecasts are shown by the dark blue line (1-month lead), blue-green line (4-month lead) and light blue line (7-month lead).
These observations were shown to be compatible with our independent evaluation of the characteristic times associated with the participating rate processes in this class of two-phase CDFs.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com