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Major changes in climate have been observed in the Arctic and climate models predict further amplification of the enhanced greenhouse effect at high-latitudes leading to increased warming.
In the last 3 decades the Earth's surface has warmed by approximately 0.6°C and climate models predict further rises between 1.1°C and 6.4°C over the 21st century [ 4].
Ever since industrialization, the global climate has undergone rapid changes in patterns and distributions, and climate models predict further large-scale changes on the basis of greenhouse emission scenarios.
Major changes in climate have already been observed in the Arctic and climate models predict further amplification of the enhanced greenhouse effect at high-latitudes leading to increased warming [ 9, 10].
Drought is a common stressor in many regions of the world and current climatic global circulation models predict further increases in warming and drought in the coming decades in several of these regions, such as the Mediterranean basin.
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The model predicted further that for constant mass flow combustion efficiency increased with pressure, and was more pronounced at lower pressures (2.5 10 bar) than at higher pressures (>10 bar).
Modeling predicts further declines in DO are likely to occur, based on increased isolation of bottom waters by strengthened thermal stratification and reduced vertical mixing [78].
The model predicts further that myocardial ATP synthesis shows substantial pulsatility, that OxPhos reacts slower if CK in the cytoplasm is overexpressed and faster if mitochondrial CK is overexpressed.
Based on the crystallographically determined binding mode of 11, modelling predicted further enhancements in activity could be achieved in particular by substituents on the 4- and 7-positions of the aminobenzimidazole filling hydrophobic pockets close to the scaffold.
As the authors point out, using a multi-step Markov model to predict further into the future lowers the prediction accuracy.
Observed data were applied to several mathematical models designed to predict further antibody decay for pertussis antigens.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com