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The first tPAIR individual invades after year 5, and has its peak food intake from an intermediate patch size.
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At this point, solitary individuals obtain more food from large patches, while grouping individuals obtain more food from intermediate patch sizes and both types coexist.
Forest patch size increases with the average patch size of discontinuous dense urban fabric.
On average, patch size was 23 ha.
If the average patch size is only calculated from patches with natural boundaries within the reserve, then the average size of forest patches is only 23 ha.
Smaller patches and intermediate dispersal rates produced the highest number of cooperators, and both patch size and dispersal rate interacted with mating system in their effects on the evolution of cue-dependent cooperation.
At intermediate levels of vegetation cover, although species abundance and alpha diversity should be positively correlated to patch size, gamma diversity should remain high given the retention of most species at least in larger patches (Figure 1B).
The species-area relationship among forest patches was strongly dependent upon the total amount of remaining forest and was only observed at an intermediate level of forest cover (where gamma diversity was high but alpha diversity was dependent on patch size).
Patch size of Rs depended negatively on transect average SWC.
Illustrative examples also indicate the effect of patch location, i.e., internal and external patches, patch size and patch thickness.
Roads increased number of patches and patch density, and decreased mean patch size and largest patch index.
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