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The highly significant Diversity coefficient (even after controlling for base RECI values) confirms of our claim that the proposed "Diversity" index is able to capture the available variety in the system at the base year.
In other words, the effect of the negative diversity (or specialization in production) of the next 40 municipalities (after the top 10) is stronger than the effect of the positive diversity coefficient of the top 10 municipalities, so the overall coefficient is negative.
Instead of conventional transition/transversion bias indicators as benchmarks for comparison, we propose to use three indicators based on the subset of amino acid substitutions generated on the protein level: (1) protein structure indicator; (2) amino acid diversity indicator with a codon diversity coefficient; and (3) chemical diversity indicator.
Two quantities that describe channel diversity, channel diversity index (CDI) and channel diversity coefficient (CDC), were proposed in [15, 22].
Using the index we calculated a diversity coefficient for 38 African nations based on published ethno-linguistic data.
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Among the 38 nations examined, ethnic diversity coefficients ranged from 0.2982 0.9740.
Genetic diversity coefficients based on Nei's genetic diversity ranged from 0.0783 to 0.2142 and Shannon's information index ranged from 0.1293 to 0.3445.
Following the same order, the genetic diversity coefficients based on Nei's genetic diversity ranged from 0.0783 to 0.2142 and Shannon's information index ranged from 0.1293 to 0.3445 (Table 1).
With fertilization, plant diversity (correlation coefficient, −0.61), species richness (−0.49), and species evenness (–0.51) were all negatively linearly correlated with primary productivity.
Deforestation was negatively associated with diet diversity (regression coefficient (95% CI): − 0.47 (− 0.76, − 0.18)), as well as recent consumption of legumes and nuts, flesh foods, and fruits and vegetables among children aged 6 months to 24 months.
We consider the asymptotic case where each (bar {gamma }_{i} to infty ) for i∈{1,2,3}, and fading models where the diversity gain coefficient of the asymptotic approximations will be 1 – thus t=0 in the models from Table 2.
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