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This reaction appears to be activation-controlled.
However, this reaction appears to be highly solvent dependent.
This reaction appears to be useful for CO2 utilisation programmes.
However, the slow kinetics for this reaction appears to be the limiting step.
An interesting reaction of the Schrock carbenes is the alkene metathesis reaction: This reaction appears to proceed through a four-membered ring intermediate containing carbon atoms and the metal atom.
We can get demotivated, uncertain, depressed even by negative reactions or interactions, and it can lead to developers stepping away from the project, taking a break or even leaving for good". Part of this reaction appears to be fueled by negative feedback that was received in response to the recent logo and website redesign.
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Good electrocatalytic properties of the Ir/Ti alloy for this reaction appear to be related to the presence of Ir4+ and Ti4+ at the surface.
This reaction appeared about 2.9 billion years ago, along with an oxygen-producing enzyme called manganese catalase.
Due to high reaction cross-sections in the energy range of 10 to 20 MeV [8], this reaction appeared suitable in spite of the long half-life of the product nuclide which usually requires a long irradiation.
Despite this encouraging result, this reaction appeared limited and was reported later to lead to a complex mixture of products due to the excess of diaryl phosphite used to avoid nucleoside dimerization.
NiSOD is also inhibited by hydrogen peroxide, but in this case the reaction appears to be reversible because SOD activity is restored when peroxide is removed.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com