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With reference to Eq. 1, comparison of results for the luminescence measurements at 77 K and room temperature 3. This is consistent with the evaluated kr values,

With regard to turnover frequency based on the total amount of acid, i. e. the activity per unit acid site, silica-occluded H3PW,2O40 has much higher activity than the resin catalyst. This suggests that silica-occluded H3PW12O40 acts as a very strong solid acid in water. The silica-occluded H3PW12O40 can be easily recovered from the reaction medium by simple filtration, and can also be used repeatedly without deactivation.

With the exception of the bare algal pavement at One Tree Reef the results suggest a reasonably uniform gross activity for seaward shallow water zones with little or no latitudinal variation and, significantly, little correlation with variation in community structure. However, net gain is quite variable with

With the measured yields the unique solutions to the C-C bond length, thickness, energy, m value, elastic modulus, and the wall interior melting point, which in turn verifies that the input data represent true values

Withdrawal - symptomatic management Chapter 44

Within- and between-bottle homogeneity

Within- and between-bottle homogeneity for CRM 58 f

Within-breed variation in the composition of cow s milk

Within-laboratory reproducibility of measurements at the contamination level of 0.1 mg kg, expressed with the standard deviation .

Within-laboratory reproducibility of measurements at the contamination level of 0.3

Withstand Voltages of Home Appliances

Wittig and Wittig-Horner Methods for the Preparation of 4-Aminobut-2-enoic Acids or Esters

Wittig olefination of support-bound aldehydes and ketones.

Wittig Reactions of Polymer- -Protected Dialdehydes

Wittig Reactions of Soluble Macromolecular Ylids

Wittig Reactions with Trifluoromethyl Ketones

Wittig Reammgement of Cyanohydrin Propargylic Ethers

Wittig Reanangement of Cyclohexanone Hydrazone Derivatives

Wittig Rearrangement of -8-Phenylmenthyl a-Allyloxyacetates R2

Wittig Rearrangement of 3.3-Difluoroallyl Ethers 23 to Highly

Wittig Rearrangement of a-Allyloxycarboxylic Acids

Wittig Rearrangement of Allyl Benzyl Ethers

Wittig Rearrangement of Allyl Propargyl Ethers

Wittig Rearrangement of Chiral Allyl Propargyl Ethers

Wittig Rearrangement of Cr3-complexed Benzyl Allyl Ethers



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