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Fire severity was determined to be a key factor in determining forest floor thickness by path analysis.
A new individual tree-based algorithm for determining forest biomass using small footprint LiDAR data was developed and tested.
Based on the results it is concluded that the validation of the first training data-based algorithm for determining forest biomass using small footprint LiDAR data was a success, and future refinement and testing are merited.
We conclude that forest structure (height) and resources (biomass) are more likely foundational characteristics supporting biodiversity rather than biodiversity determining forest productivity and/or biomass.
In "Main drivers determining forest C dynamics" section, we discuss the main drivers determining the forest C sink dynamic, further distinguished between harvest ("Harvest" section) and natural disturbances ("Natural disturbances" section).
Multiple predictor models predicting canopy attributes from climatic and disturbance predictors suggested that whilst climate, and in particular MWD, was the main driver of variability in canopy structure across plots, climate interacted with the protection status of a forest in determining forest canopy structure.
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The comparison was based on certain criteria that determine forest conservation value.
We removed the effect of the environmental factors first, assuming that the environment partially determines forest management and thus the forest attributes, and then we removed the combined effect of environment and the forest attributes, each time recalculating the correlations.
We used a high-intensity experimental wildfire to address this research gap, which enabled us to determine forest floor chemical transformations in a Canadian boreal forest in relation to temperature time profiles for 18 sampling points during the fire.
This article is an attempt to use Jørgensen Svirezhev theory as a new clue to the choice of variables that determines forest growth.
We determined forest recovery patterns by comparing species composition, richness and forest structure in early and late fallows formed following shifting cultivation and in an uncut forest site in a mid-elevation subtropical forest in the Indian Eastern Himalaya.
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