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Free Energies of Formation of the Components of Co - ordination Spheres FM - FM = j ( Fx − F'x ) + i ( Fy — F'y ) . ( 1 ) It is assumed that all ligands of the same kind are energetically equivalent .
Free Energies of Formation of the Components of Co - ordination Spheres FM - FM = j ( Fx − F'x ) + i ( Fy — F'y ) . ( 1 ) It is assumed that all ligands of the same kind are energetically equivalent .
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Change in the free energy of formation of Br , I , and Hg2 + ions during the formation of complexes of composition HgIjBrij Fig . 4 . change in free energy , cal 5000 -AF 4000 Ca 3000 2000 1000 -ΔΕ Br · AFI CdBr CdBr , CdBr , CdBrl Cdl ...
Change in the free energy of formation of Br , I , and Hg2 + ions during the formation of complexes of composition HgIjBrij Fig . 4 . change in free energy , cal 5000 -AF 4000 Ca 3000 2000 1000 -ΔΕ Br · AFI CdBr CdBr , CdBr , CdBrl Cdl ...
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8 shows the dependence of the logarithms of the formation constants of the complexes Cd ( NH ) -jI3 - 3 , and of the strength of the individual bonds , on the number of ligands . To calculate the strengths of the bonds , we used ...
8 shows the dependence of the logarithms of the formation constants of the complexes Cd ( NH ) -jI3 - 3 , and of the strength of the individual bonds , on the number of ligands . To calculate the strengths of the bonds , we used ...
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Journal | 767 |
Brief Communications 1724 878 Solubility isotherm of the ureacadmium sulphatewater system at 30 | 878 |
THE PAGE NUMBERS 1599 819 Preparation and thermographic study of complexes of cadmium halides with | 1080 |
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