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For bimolecular reactions, two molecules collide and react with each other.
Therefore the rate of a bimolecular reaction for ideal gases will be:
These reactions are more likely to involve a series of bimolecular reactions.
A reaction involving two molecular entities is called bimolecular.
In applications that make use of bimolecular electron transfer the internal conversion is undesirable.
Bimolecular electron transfer always produces a reactive chemical species, free radicals.
Reactions in chemical processes are either unimolecular or bimolecular.
Bb and C4b.2a, which are bimolecular complexes formed early on in the complement cascade.
The most important elementary reactions are unimolecular and bimolecular reactions.
The reaction rate, influenced by both the alkyl halide and the base (bimolecular), is second order.
The rate constant for a bimolecular gas phase reaction, as predicted by collision theory is:
These structures, formed from two separate G-rich strands, are termed bimolecular quadruplexes.
This long lifetime leads to a high probability for reactions with other molecules - so-called bimolecular reactions.
Because the reaction rate is bimolecular there are two molecular species controlling the rate of the reaction.
E2 stands for bimolecular elimination.
The Woodward-Hoffmann rules can also explain bimolecular cycloaddition reactions through correlation diagram analysis.
The bimolecular kinetics implicate a so-called associative pathway.
The effect of explicit solute model on solute behavior in bimolecular simulations has been also extensively studied.
Since two reacting species are involved in the slow, rate-determining step of the reaction, this leads to the name bimolecular nucleophilic substitution, or S2.
Because excimer formation is dependent on a bimolecular interaction, it is promoted by high monomer density.
The bimolecular reactions that cause the indirect DNA damage are illustrated in the figure:
Furthermore, the "proximity effect", which accelerates bimolecular reaction, was shown to be distance-independent (at least within a distance of 30 nucleotides).
This enzyme is a bimolecular complex of complement fragment Bb with either C3b or cobra venom factor.
The reaction mechanism of the Biginelli reaction is a series of bimolecular reactions leading to the desired dihydropyrimidinone.
Because it involves the collision of two NO molecules, it is a bimolecular reaction with a rate law of .