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If we assume that the resulting OMO angle is 90 ° and that the structure of the SO , group remains unchanged by ring ... In practice we can expect the S - O bond lengths and the angles between the S - O bonds to change , as well as the ...
If we assume that the resulting OMO angle is 90 ° and that the structure of the SO , group remains unchanged by ring ... In practice we can expect the S - O bond lengths and the angles between the S - O bonds to change , as well as the ...
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The sulphite ion has practically the same structure ( S - O bond length , angle ẞ ) and the same properties ( force ... ( force constant ƒ increased , S - O bond length decreased ) and the OSO angles are increased , as was predicted .
The sulphite ion has practically the same structure ( S - O bond length , angle ẞ ) and the same properties ( force ... ( force constant ƒ increased , S - O bond length decreased ) and the OSO angles are increased , as was predicted .
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The angles B ' were calculated on a purely valence - force model ( for details , see preceding paper 1 ) . ... B ' is the angle between the height and the edge of the SO , pyramid ; ƒ is the force constant and r ' is the length of the S ...
The angles B ' were calculated on a purely valence - force model ( for details , see preceding paper 1 ) . ... B ' is the angle between the height and the edge of the SO , pyramid ; ƒ is the force constant and r ' is the length of the S ...
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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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absorption acid added addition Akad alcohol alkali alloys ammonia ammonium analysis anion aqueous atom bismuth bond calculated carbonate Chem chemical chloride complex components composition compounds concentration conductivity confirmed constant containing coordination corresponding crystallisation crystals curve decomposition decrease density dependence determined diagram dissolved effect equilibrium excess experiments formation formed given gives H₂O heating hydrogen hydroxide increase indices initial Inorg ions Khim lines liquid measured melting metal method mixture molar mole molecules Nauk SSSR Neorg nitrate observed obtained optical oxide peritectic phase platinum potassium precipitate prepared presence pressure pure quantity ratio reaction Received reduction refractive region Russ salt separated shown shows sodium solid solutions solubility solution specimens stability structure studied substance sulphate Table temperature thermal tion values washed X-ray yield Zhur