Quarterly Journal of the Chemical Society of London, Volume 19 |
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Page 3152
... molecular axes and the crystal axes must be specified . Suppose that each molecule lies on a pseudo - mirror plane which , by inspection of Figure 2 , is parallel to the crystal ab plane . As it is evident from the previous discussion ...
... molecular axes and the crystal axes must be specified . Suppose that each molecule lies on a pseudo - mirror plane which , by inspection of Figure 2 , is parallel to the crystal ab plane . As it is evident from the previous discussion ...
Page 3579
... molecular ionization potentials have been calculated directly . Usually the ionization potentials are evaluated from the molecular wavefunction by use of Koopmans ' theorem , according to which the energy required to remove an electron ...
... molecular ionization potentials have been calculated directly . Usually the ionization potentials are evaluated from the molecular wavefunction by use of Koopmans ' theorem , according to which the energy required to remove an electron ...
Page 3901
... molecular structure of bis- ( methoxyacetato ) tetrakis ( imidazole ) copper ( 11 ) , 3331 . Part VII , crystal and molecular structures of copper ( II ) meso - tartrate trihydrate and copper ( 11 ) D- tartrate trihydrate , 3336. Part ...
... molecular structure of bis- ( methoxyacetato ) tetrakis ( imidazole ) copper ( 11 ) , 3331 . Part VII , crystal and molecular structures of copper ( II ) meso - tartrate trihydrate and copper ( 11 ) D- tartrate trihydrate , 3336. Part ...
Contents
Inorganic physical and theoretical chemistry | 2963 |
Structure of radicals produced by yradiolysis Part I 3Methylpentyl 2methylpentyl and isopentyl | 2971 |
Structure and conformational analysis of coordination complexes Part II XRay crystal structure of cis | 2981 |
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absorption acetate acetonitrile acid Acta Cryst adducts Amer angles anion aqueous assigned axis band benzene bond lengths calculated carbon carbonyl cation chelate Chem Chemical chemical shifts Chemistry chloride cm-¹ cm¹ co-ordination cobalt complexes compounds copper atom copper(II correlation coupling crystal derivatives deuterium diethyl ether doublet electron energy equation experimental Figure formation frequency H₂O halide hydrogen hydrogen bonding i.r. spectra indium(III Inorg intensity interaction iron(III isomer kinetic ligand magnetic metal methanol methyl mixture mmol mmoles molecular molecule n.m.r. spectra nitrogen Nujol observed obtained orbital oxide oxygen parameters phosphite Phys plane prepared present protons pyridine Raman reaction resonance rhodium ring room temperature salts shift shows similar SnCl sodium solid solution solvent space group species spectra spectrum stretching mode structure studies symmetry Table trans transition triphenylphosphine values vanadium(IV vibrational yellow