The onsets of growing seasons in Alaska have been shifting earlier, potentially enabling increased carbon dioxide () absorption through greater productivity of mooseberry (Viburnum edule) plants and other vegetation, but also potentially enabling increased output through greater heterotrophic respiration ( generated by the activity of soil microorganisms). Hydrologist Yonghong Yi and her colleagues modeled seasonal changes in net in Alaska in a landscape grid of square kilometer () cells and again in a grid of cells, which are finer resolutions than most models of net have achieved. The researchers concluded that variations in the landscape affect net in ways that most models are too coarse to capture.
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Verbal·Information and Ideas·Command of Evidence
hardWhich finding from the researchers’ study, if true, would most directly support the researchers’ conclusion?
A
Higher average heterotrophic respiration rates were found for summer months than for winter months when modeled using either a grid of 1 km2 cells or a grid of 10 km2 cells.
B
No correlations between seasonal variations in average heterotrophic respiration and CO2 absorption by V. edule and other plant species were found when modeled using either a grid of 1 km2 cells or a grid of 10 km2 cells.
C
Lower average heterotrophic respiration rates were found for autumn months when modeled using a grid of 1 km2 cells than when modeled using a grid of 10 km2 cells.
D
When seasonal fluxes in average CO2 absorption and heterotrophic respiration were modeled using a grid of 1 km2 cells, much more data were generated than when seasonal fluxes were modeled using a grid of 10 km2 cells, though the two models reported identical net CO2.