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IV-8 Use of immunoprecipitation to purify antigens and antigen associated proteins.

IV-9 Using Protein A to purify antigen-antibody complexes.

IV-B-1 shows the available measurements, along with a nonlinear fit to the data of Atkinson and Ktts . We recommend the use of the rate coefficient defined by the equation

IV-B-1. Arrhenius plot for the rate coefficients for the OH CH2O reaction.

IV-B-12. Percentage abstraction by OH at the —CHO site, according to SAR calculations for straight-chain aUcanals.

IV-B-13 shows the mechanism of oxidation of butanal in a polluted atmosphere following reaction with OH. The minor abstraction reactions at the 2- and 4-positions have been omitted for clarity and the initial channel yields normalized, so that 82 of abstraction occurs at the aldehydic position and 18 at the 2-position.

IV-B-2. Arrhenius plot for the rate coefficients for the Cl CH2O reaction.

IV-B-3. Arrhenius plot for the rate coefficients for the OH 4- CH3CHO reaction.

IV-B-4. Arrhenius plot for the rate coefficients for the NO3 CH3CHO reaction.

IV-B-5. Arrhenius plot for the rate coefficients for the NO3 butanal reaction.

IV-B-9. Arrhenius plot for the rate coefficients for the OH 2,2-dimethylpropanal reaction.

IV-B-I3. Major channels in the mechanism for the oxidation of butanal at high NO concentrations.

IV-B-IO. Comparison of rate coefficients for reactions of OH, NO3, and Cl with straight chain alkanes and alkanals.

IV-C-I. Arrhenius plot for the rate coefficients for the OH hydroxyacetaldehyde reaction.

IV-curve and power density for direct methanol fuel cell with electrodes of carbon black coated on a carbon paper substrate, with Pt-Ru ratio 1

IV-D-1. Arrhenius plot for the rate coefficients for the OH glyoxal reaction. Feierabend et al. used two different sources of OH

IV-D-3. Postulated mechanism of oxidation of E-butenedial.

IV-E-1. Arrhenius plot for the rate coefficients for the NO3 -F acrolein reaction.

IV-E-2. Arrhenius plot for the OH 2-pentenal, 2-hexenal, and 2-heptenal reactions.

IV-F-2. Mechanism for the formation of phthalic anhydride in the oxidation of phthaldi aldehyde.

IV-F-I. Mechanism for the atmospheric oxidation of benzaldehyde.

IV-G-2. Simplified oxidation mechanism for Cj F2x iCHO illustrating the three possible mechanisms for perfluorocarboxylic acid formation

IV-G-3. Measurements of the rate coefficients for reaction of chlorine atoms with HC.

IV-G-4. Measurements of the rate coefficients for reaction of OH radicals with CCI3CHO. The line is a fit to the data from Balestra-Garcia et al. see text for details.

IV-G-I. Measurements of the rate coefficients for reaction of OH radicals with



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