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Here it is important to distinguish between different orders of activity: while it is easier than ever before to do things with data on computers and on the web (scrape it, visualise it, publish it), this does not necessarily entail that it is easier to know what a given dataset means.
The orders of activity were found to be: oxidation — presence or absence of ceria, Pt > Pd > three-way > Rh; steam reforming — no ceria in the catalysts, Pd > Rh > Pt; steam reforming — ceria in the catalyst, three-way ∼ Rh > Pd > Pt; water-gas shift — no ceria, Pd > Pt > Rh; water-gas shift — ceria, three-way > Pt > Pd > Rh.
Similar(58)
The order of activity of these active groups and the other computational results are in agreement with experiments.
Given the most active as the reference, the others were ordered in decreasing order of activity.
It would be a difficult movie to make, in part because of the very notion (common on the part of critics) that "critique" is a higher and more moral order of activity than the exertion and display of creative power.
The order of activity is APMS/AlMCM-41 > 2APMS/AlMCM-41 > 3APMS/AlMCM-41.
The order of activity is Na-Norit < Cs-Norit.
The order of activity is as follows: LaMnO3 > LaCoO3 > LaFeO3 > CB (carbon black).
The order of activity is Ni, NiCo, NiCe > NiCu〉 NiFe.
The order of activity in both electrolytes is: Fe > Co ≈ Ru > Mn > Pd ≈ Pt > Zn.
It was found that the order of activity was Pt/TiO2 ≫ Rh/TiO2 > Pd/TiO2 > Au/TiO2 ≫ TiO2.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com