Russian Journal of Inorganic Chemistry, Tập 6,Số phát hành 7-12British Library Lending Division with the cooperation of the Royal Society of Chemistry, 1961 |
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... coordination sites , and assume that the angles between the coordinate bonds are about 90 ° in octahedral or square complexes , we find that the M - S and M - O distances in the ring should be smaller than the S - O distance in the ...
... coordination sites , and assume that the angles between the coordinate bonds are about 90 ° in octahedral or square complexes , we find that the M - S and M - O distances in the ring should be smaller than the S - O distance in the ...
Trang 1176
coordination position , we hoped to prepare a thiocyanato- uranium compound with a coordination number of 8 , the maximum for uranium ( IV ) . Although this coordination number has been accepted for many uranium compounds , usually ...
coordination position , we hoped to prepare a thiocyanato- uranium compound with a coordination number of 8 , the maximum for uranium ( IV ) . Although this coordination number has been accepted for many uranium compounds , usually ...
Trang 1259
... coordination positions , and the vertices by CO2 groups , each filling one coordination position . This is confirmed by the penta- carbonatouranates ( IV ) being readily oxidised , even when in large crystals , to uranyl tricarbonato ...
... coordination positions , and the vertices by CO2 groups , each filling one coordination position . This is confirmed by the penta- carbonatouranates ( IV ) being readily oxidised , even when in large crystals , to uranyl tricarbonato ...
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Journal | 767 |
A P KOCHETKOVA V G TRONEV and O N GILYAROV | 811 |
1671 855 | 836 |
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acid Akad alcohol alkali alloys aluminium ammonia ammonium analysis anion aqueous solution Blagorod bromide cadmium caesium calculated carbonate cerium Chem chemical chloride cobalt coefficient complex ion composition concentration corresponding cristobalite crystallisation crystals CuCl decomposition determined dissociation electrode equilibrium diagram ether ethyl eutectic formation formed gallium glauberite H₂O heating curve hydrogen hydroxide increase indium Inorg Inst instability constant ionic strength isotherms Khim ligands liquid lithium melting metal method molar volumes mole molecules MTPC Na₂SO₄ NaCl Nauk SSSR neodymium Neorg NH NH nitrate nitrilotriacetic acid Obshch obtained oxide platinum Platiny Drug polyhalite potassium praseodymium precipitate prepared pyridine reaction reagent refractive refractive indices Russ salt saturated shows sodium solid phase solid solutions solubility solvents stability studied sulphate sulphide Table temperature thallium thermal TiCl4 tin selenide tion titanium trans effect uranyl values X-ray Zhur zinc zirconium