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In aspen, clonal vegetative propagation adds to the positive size correlations through spatial clustering of genotypes and growth rates.
It is shown that the strong positive size effects are predicted for the composites with smaller inclusions in the considered theories.
Solutes with positive size misfit diffuse faster compared to the self-diffusion of Mg due to the relaxation of solute towards vacancy while solutes with negative size misfit diffuse slower.
Thin-ply composites are rapidly gaining interest in the composite industry, not only because of the larger design possibilities that they offer, but also because of positive size effects that have been shown to improve performance in various loading conditions [1].
Previous work investigating the temperature tolerance of juvenile red drum ranging 18 50 mm TL found evidence for positive size dependence (smaller fish less tolerant to higher temperatures) suggesting smaller size classes (<18 mm TL) potentially may succumb to extreme summer water temperatures.
To test this potential effect of atmospheric oxygen concentration on positive size selection, we performed truncation selection for 11 generations on five populations of D. melanogaster in 10, 21 and 40 kPa aPO2 respectively.
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Interestingly, after controlling province dummies, a positive size-earnings correlation is established.
Polak and Taylor [54] show the positive size-scaling of fluctuating asymmetry that would be required to promote smaller size in the ML lines.
In particular, the use of stable isotopes in aquatic systems has suggested that strong positive size-trophic relationships exist within fish populations (e.g., juveniles as planktivorous and adults as piscivorous; see [13], [16] for reviews), albeit the information is still a "snapshot" on a time scale of population dynamics.
While negative size-selective mortality then selects against small individuals, positive size-selective mortality selects against large individuals, potentially shifting the populations mean weight towards the middle.
Linear models for the relationship between body size and growth reveal a similar pattern (Fig. 5); with strong positive size-dependent growth for the 0-3 to 0-4 interval, moderate positive size-dependent growth in interval 2-1 to 2-2 and weak size-dependent growth in all other intervals (Fig. 5).
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