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Exact(5)
A model based on boundedness, the density of roads at the 2000 m scale, and the amount of prairie dog colonies at the 200 m scale explained 73% of the variance in prairie dog burrow density.
The changes in electrical resistivity obtained from ERT measurements in this case study indicate that root water uptake (RWU) processes occur at the 0.1 m scale, and highlight the impact of different irrigation schemes.
Within the patch, local and micrometeorological gas exchange process studies (100 m scale) and physical variables such as near-surface turbulence, temperature microstructure at the interface, wave properties and windspeed were quantified to further assist the development of gas exchange models for high-wind environments.
Coefficients of the better-ranked models based on AIC indicated a positive relation between understory cover at 250 m scale and the habitat use of L. fulvipes, L. guigna and L. griseus, while a negative relation with the habitat use of L. culpaeus.
Thus, the authors use similar scales like those described in Table 1 but using only the filters numbered as (see Figure 2a): 1 (LPF), 2, 5 (in the H scale), 8, 11 (in the M scale) and 14 and 17 (in the L scale).
Similar(55)
This observation applies at both subregional (104 105 m) and regional (106 m) scales and reflects a finite bound to the effects of degradation on coral reef communities.
When Quickbird-derived 2.8 m estimates of vegetation fraction are integrated to 30 m scales and coregistered to Landsat-derived 30 m estimates, median estimates agree with the integrated fractions to within 5% for fractions > 0.2.
We analysed spatial variations in lichen height at the meter and 100 m scales, and calculated sample size requirements, and estimated effects of forest density and age, lichen moisture and lichen density on lichen height, and assessed the correspondence between lichen height and biomass.
The composite posterior given all m scales and a uniform prior over positions, Q m (x), will be given by the product Q m (x ) ∝ Π i = 1 m P (x | i ), assuming independent response noise across scales.
Based on Nonmetric Multidimensional Scaling, bird distribution pattern were strongly associated with habitat evenness and largest patch index for woodland at the 400-m scale and contagion index at the 400- and 1000-m scales in the two development types.
Percentage of shrub canopy cover at the nest site (15-m scale) and distances to natural gas wells and mesic areas had a positive relationship with DSR of nests, whereas distance to roads had a negative relationship with DSR of nests.
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Justyna Jupowicz-Kozak
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