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A grid (with random origin and orientation) that extended beyond the stand boundary was overlaid onto the stand.
Plots 0.02 - 0.04 ha in size, located systematically on a grid with random orientation and origin, gave some of the most unbiased and reliable estimates.
Sampling plots in the range of 0.02 to 0.04 ha, located systematically on a grid with random orientation and origin, produced some of the most unbiased and reliable estimates.
Maintaining an equal abundance and a fixed density, cells were placed on a spatial grid with random orientation, length, and species type.
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Neither hot-spot selection nor grids with random fields expose the variations based on morphological context.
Specifically, each recorded rate map was fitted by 1,000 ideal grids with random phase offsets between the two compartments.
For each cell/session conjunction with an independent fit >0.45, we then calculated the proportion of the 1,000 grids with random phase offsets which achieved a better fit than the local and global models.
To study finite-size effects, we simulated 5000 populations of 200 grid cells with random spatial phases.
Rather, we attacked the problem in a generic fashion (a Cartesian grid with some random jitter).
A grid with a systematic random sample of 300 points was then superimposed on the selected area using virtual graticule software (RandomSpot, University of Leeds, Leeds, UK).
A grid with a systematic random sample of 300 points was then superimposed on the selected area using newly developed virtual graticule software (RandomSpot, University of Leeds, Leeds, UK) to count the number of times the point fell over each of the categories.
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Justyna Jupowicz-Kozak
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