Quarterly Journal of the Chemical Society of London, Part 1, Pages 1033-2076 |
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Page 1271
... given absorption coefficient in any cylinder of given size . The absorption coefficient of y - rays in iodobenzene is given by equation ( 17 ) where 6μcmc + 5μAмH + μIMI MPhi PhI = ( 17 ) is the absorption coefficient ( cm.2 g . - 1 ) ...
... given absorption coefficient in any cylinder of given size . The absorption coefficient of y - rays in iodobenzene is given by equation ( 17 ) where 6μcmc + 5μAмH + μIMI MPhi PhI = ( 17 ) is the absorption coefficient ( cm.2 g . - 1 ) ...
Page 1725
... given in Tables 1 and 2 , respectively . The anisotropic thermal parameters given in Table 2 correspond to ellipsoids of vibration with the lengths of the principal axes lying in the range 0.112—0.275 Å . The observed amplitudes and ...
... given in Tables 1 and 2 , respectively . The anisotropic thermal parameters given in Table 2 correspond to ellipsoids of vibration with the lengths of the principal axes lying in the range 0.112—0.275 Å . The observed amplitudes and ...
Page 1976
... given value of a , the total number of states of the two groups groups not undergoing transition is nC [ ( n / 2 ) − a + 1 ] × nC [ ( n / 2 ) —a ] ] . We thus obtain equation ( 16 ) : g ( ta ) = n 6 Σ [ r . ( " C , ) 2 . " Cr - 1 ] If ...
... given value of a , the total number of states of the two groups groups not undergoing transition is nC [ ( n / 2 ) − a + 1 ] × nC [ ( n / 2 ) —a ] ] . We thus obtain equation ( 16 ) : g ( ta ) = n 6 Σ [ r . ( " C , ) 2 . " Cr - 1 ] If ...
Contents
Dolcetti G See Peloso A 1506 | 1031 |
Structures of cyclic amides Part III Thio and selenolactams | 1033 |
Equilibria in solutions which contain a metal ion and an aminoacid | 1039 |
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¹H n.m.r. spectrum absorption acetaldehyde acetone acid adduct Amer anion aqueous atoms bands benzene bond bromine trifluoride calculated carbon catalyst cation Chem chemical Chemistry chloride cm.¹ co-ordination cobalt(II coefficients complexes compounds concentration configuration corresponding coupling constant crystals cyanide dehy gel dichloromethane dilute doublet electronic energy equation ethanol ether experimental Figure five-co-ordinate fluorine formation frequencies halide heat hydrogen hydrogen cyanide hydrolysis i.r. spectra Inorg iodide iodobenzene isomers k₁ kcal lactams ligand magnetic Mc./sec measured metal methyl mixture mmoles mole-¹ molecular molecule n.m.r. spectra nickel nickel(II nitric oxide nitrogen observed obtained octahedral orbital oxygen parameters phosphine phosphorus Phys plexes PMe,Ph potassium prepared present proton Raman reaction resonance room temperature sample scandium(III showed shown similar sodium solid solution solvent species structure sulphur Table thallium thio thiocyanate thiocyanogen thiolactams titration trans trimethylsilyl tris(trimethylsilyl values yellow