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In essence, the behaviour of each substance in the system is described as a separate pi-calculus process.
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Significant inter-method differences were observed in electrochemical behaviour of standard substance – gallic acid – and phenolic constituents of real wine samples in the presence of tartaric acid.
Despite much higher rates of drinking, drug use and risky sexual behaviour (but not smoking) in the later cohort, relationships between use of each substance and risky sexual behaviour showed little or no change over time.
The year of initiation of each substance was also gathered.
Three disc samples of each substance were used.
The multi-substance use variable was created by first dichotomizing the original responses of each substance to 'never' or 'ever' having used each substance during the past year.
Two types of experimental evidence gave support to the atomic hypothesis: first, the detailed behaviour of gaseous substances and, second, the quantitative weight relationships observed with a variety of chemical reactions.
Thermal behaviour of active substances was studied and presented in a previous paper [15].
Evaporation and degradation are assumed to contribute to the fate and behaviour of these substances in the environment.
For radiopharmaceuticals where the radionuclide has a longer physical half-life, the differences between various substances are larger and more dependent on the biokinetic behaviour of the substances.
As done in other chapters, the behaviour of specific substances, such as hydrogen sulphide, has specifically been analysed.
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CEO of Professional Science Editing for Scientists @ prosciediting.com