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S i species equation source term.
Such behaviour was interpreted in terms of the incipient hydrous oxide mediator theory of electrocatalysis, the mediator for formaldehyde oxidation being a Cu(I) species while that for hydrazine oxidation was a Cu II) species.
Our discussion is organised across three themes: (i) species selection and the sourcing of forest reproductive material; (ii) increasing resilience by fostering natural selection, ecological connectivity and species associations; and (iii) measuring the success of restoration activities.
Our study design compared the relative similarities between remnant, unrestored and different aged restoration sites with a particular investigative focus on (i) species composition of woody seedlings and (ii) composition of woody functional groups with buds, flowers or fruits present.
The related product 4 was obtained by the reaction of P4 with a low valent Al(i) species (Fig. 2).
The capability of matching (i) species, (ii) reactions, and (iii) compartments is essential during model comparisons prior to model composition.
We designed conservation areas to cover two types of measures for overall biodiversity: (i) species occurrences and (ii) intraspecific genetic and morphological variation.
The electrophilic I species is generated in the water layer at pH 3.5 and rapidly extracted into the EtOAc layer for subsequent electrophilic aromatic substitution reaction.
These tools allowed: (i) species level identification of 95 Clostridium sp. which are presently classified up to genus level, (ii) identification of 84 novel Clostridium spp. and (iii) potential reduction in the number of Clostridium species represented by small populations.
This study concluded a continuum character of the organogold(i) species ranging from metal stabilized singlet carbene to metal coordinated carbocation depending on the substitution pattern and the ligand on gold.
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Three data sets were assembled from the sequences available in GenBank: (i) species-level mitochondrial supermatrix; (ii) genus-level mitochondrial supermatrix; and (iii) genus-level nuclear supermatrix.
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