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Experimental results corresponding to such dipolar compounds are mainly considered in this review.
Phenolic compounds are mainly derived from coal tar, petroleum, and coal liquefaction oil.
The pharmacological effects of phenolic compounds are mainly due to their antioxidant activity and their inhibition of certain enzymes.
The calculated Poisson's ratio varies from 0.26 to 0.39 for PtxAly phases and the bonds in the compounds are mainly metallic and covalent types.
In blue green algae (hereafter cyanobacteria) and higher plants, these two nitrogenous compounds are mainly connected to each other via polyamine catabolism.
Cadmium compounds are mainly ionic, but cadmium also forms complex ions with ligands (atoms, ions, or molecules that donate electrons to a central metal ion); e.g., the complex ion with ammonia NH3, having the formula [Cd(NH3 4]2+, or with the cyanide ion, the formula [Cd CN 4]2−.
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Our results showed that the bonds in these compounds were mainly of metallic and covalent type.
These compounds were mainly characterized by 1H NMR, 13C NMR, DEPT135°.
Xenobiotic organic compounds were mainly phenoxy acid herbicides, while petroleum hydrocarbons and chlorinated solvents were found at very few boreholes.
The most up-regulated genes common across the three compounds were mainly related to lipid and xenobiotic metabolisms.
Ketone compounds were mainly biosynthesized by carotenoid.
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