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The extent of reduction of MTT was quantified by absorbance measurement at 550 nm according to the manufacturer's protocol.
The extent of reduction was determined from elemental analysis.
The extent of reduction was more in N22 than in NH219.
However, the extent of reduction was higher in N22 and IR64 than in NH219.
The extent of reduction per metal atom was in the following order: Pt>Pd>Rh.
The extent of reduction in the front face deformations depend upon the stiffness of foundation and backfill strata.
However, the extent of reduction was lesser in NH219 showing its ability to withstand heat stress better.
The catalytic activity of H2-reduced Pt/MoO3 for heptane isomerization was also dependent on the extent of reduction.
A maximum extent of reduction was found at 12 15 wt.% cobalt with little dependence on the addition of promoter.
There was also a direct relationship between the extent of reduction from temperature programmed reduction and catalyst performance.
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Fractions were collected automatically (60 fractions, 10 ml each) and analyzed by optical spectroscopy for the extent of reduction of the ferric form by ascorbate and dithionite.
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