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The spatially explicit land-cover data were interpreted from aerial photographs taken at three time points (1950s, 1970s and 2000s).
Land use data were interpreted from the 2013 high-resolution aerial images (0.25 m resolution) of Shanghai.
From a more general perspective, as articulated recently [ 24], the manner in which data were interpreted from a previous American dose/outcome study performed in the late 1970s should serve as an argument against a rush to judgment.
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Finally, researchers who were not from the same community as the study participants conducted the data analysis and this data was interpreted from their cultural perspective.
These data were interpreted using simulation results from a fate model including a seasonally variable forest canopy and snow pack, suggesting that the primary source is urban and that the "spring pulse" is the result of several interacting factors.
Findings from the patient data were interpreted in terms of the modeling results, in particular by comparing cortical regions where MEG and ECoG concordance was high to regions where large patch-size based simulated MEG amplitudes were high.
Data was interpreted by examining evidence from all the sources to build a "coherent justification" for themes (Creswell 2014).
These data are interpreted as resulting predominately from bulk-phase decomposition reaction rates in the lower temperature range, and from desorption/evaporation rates in the higher temperature range.
Data are interpreted in light of insights from an ongoing field study of diaspora return in eastern Ethiopia (information at the time of writing is based on the first eight months of a 14-month fieldwork period).
Once the images are analyzed and the signal intensities processed (including background subtraction and normalization), the data are interpreted to assess whether they are derived from perfect-match or mismatch targets.
Perhaps the most complicated part of modeling multiple, complementary data is interpreting the results from data modeled with different approaches and different earth model pa-rameterizations.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com