Quarterly Journal of the Chemical Society of London, Volume 7 |
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Page 1170
... concentration of cobalt complex ( C * , equiv./1 . ) sufficient to induce phase separation in sodium poly ( styrenesulphonate ) and poly ( vinylsulphonate ) solu- tions is plotted against the polymer concentration , Cp . In the case of ...
... concentration of cobalt complex ( C * , equiv./1 . ) sufficient to induce phase separation in sodium poly ( styrenesulphonate ) and poly ( vinylsulphonate ) solu- tions is plotted against the polymer concentration , Cp . In the case of ...
Page 1171
... concentration is increased beyond stoichiometry with the reagent ions [ below this poly ( styrenesulphonate ) concentration precipitation of polyelectrolyte occurs ] , while with the poly ( vinylsulphonate ) and poly ( phosphate ) the ...
... concentration is increased beyond stoichiometry with the reagent ions [ below this poly ( styrenesulphonate ) concentration precipitation of polyelectrolyte occurs ] , while with the poly ( vinylsulphonate ) and poly ( phosphate ) the ...
Page 1274
... concentration - dependence of ye can be estimated by conversion from the molal to the molar fraction concentration scale ( ye XTBP / XTBP fe , XTBP is the molar fraction of tributyl phosphate in tributyl phosphate saturated with water ) ...
... concentration - dependence of ye can be estimated by conversion from the molal to the molar fraction concentration scale ( ye XTBP / XTBP fe , XTBP is the molar fraction of tributyl phosphate in tributyl phosphate saturated with water ) ...
Contents
Inorganic physical and theoretical chemistry | 1001 |
J ROBINSON and C H L KENNARD | 1008 |
Nearestneighbour model for transfer of electronic excitation energy | 1016 |
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absorption acid Acta adducts Amer anion aqueous assigned atoms band benzene bond calculated cancrinite carbon cation Chem chemical chemical shifts Chemistry chloride cm.¹ co-ordination cobalt(II complex compounds concentration configuration crystals density effect electron energy enthalpy equation equilibrium ethanol experimental Figure fluorine formation frequency H₂O hydrogen i.r. spectrum increase Inorg intensity interaction iron(II k₁ ligand linear magnetic measured metal methaemoglobins method methyl mixture modes mole mole-¹ molecular molecule n.m.r. spectra niobium nitrogen Nujol observed obtained orbitals oxidation oxygen parameters peak perchlorate perchloric acid phenyl phosphine phosphorus Phys potassium prepared present proton pyridine radical Raman rate constant reaction resonance ring room temperature salt sample shift shown sodalite sodium solid solution solvent species spectra structure studied sulphur symmetry Table thiocyanate tion trans tributyl phosphate triphenylphosphine values vanadium(IV vibrations X-ray zeolite