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Colours in complexes are decided by the constituents of the coordination sphere, right? So why do K4[Fe(CN)6] and Fe2[Fe(CN)6] differ in colour though coordination sphere is intact? ...
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Colours in complexes are decided by the constituents of the coordination sphere, right? So why do K4[Fe(CN)6] and Fe2[Fe(CN)6] differ in colour though coordination sphere is intact? ...
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Colours in complexes are decided by the constituents of the coordination sphere, right? So why do K4[Fe(CN)6] and Fe2[Fe(CN)6] differ in colour though coordination sphere is intact? ...
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Colours in complexes are decided by the constituents of the coordination sphere, right? So why do K4[Fe(CN)6] and Fe2[Fe(CN)6] differ in colour though coordination sphere is intact? ...
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Colours in complexes are decided by the constituents of the coordination sphere, right? So why do K4[Fe(CN)6] and Fe2[Fe(CN)6] differ in colour though coordination sphere is intact? ...
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Colours in complexes are decided by the constituents of the coordination sphere, right? So why do K4[Fe(CN)6] and Fe2[Fe(CN)6] differ in colour though coordination sphere is intact? ...
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Colours in complexes are decided by the constituents of the coordination sphere, right? So why do K4[Fe(CN)6] and Fe2[Fe(CN)6] differ in colour though coordination sphere is intact? ...
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an alkyl halide of molecular formula C_5H_11Cl on refluxing with EtOH gives 2 cmpds: A & B. A decolorises Br water. B does not . A on ozonolysis gives acetone & acetaldehyde. B on reaction with Na gives Hydrogen. It gives whi ...
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an alkyl halide of molecular formula C_5H_11Cl on refluxing with EtOH gives 2 cmpds: A & B. A decolorises Br water. B does not . A on ozonolysis gives acetone & acetaldehyde. B on reaction with Na gives Hydrogen. It gives whi ...
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an alkyl halide of molecular formula C_5H_11Cl on refluxing with EtOH gives 2 cmpds: A & B. A decolorises Br water. B does not . A on ozonolysis gives acetone & acetaldehyde. B on reaction with Na gives Hydrogen. It gives whi ...
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an alkyl halide of molecular formula C_5H_11Cl on refluxing with EtOH gives 2 cmpds: A & B. A decolorises Br water. B does not . A on ozonolysis gives acetone & acetaldehyde. B on reaction with Na gives Hydrogen. It gives whi ...
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an alkyl halide of molecular formula C_5H_11Cl on refluxing with EtOH gives 2 cmpds: A & B. A decolorises Br water. B does not . A on ozonolysis gives acetone & acetaldehyde. B on reaction with Na gives Hydrogen. It gives whi ...
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an alkyl halide of molecular formula C_5H_11Cl on refluxing with EtOH gives 2 cmpds: A & B. A decolorises Br water. B does not . A on ozonolysis gives acetone & acetaldehyde. B on reaction with Na gives Hydrogen. It gives whi ...
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an alkyl halide of molecular formula C_5H_11Cl on refluxing with EtOH gives 2 cmpds: A & B. A decolorises Br water. B does not . A on ozonolysis gives acetone & acetaldehyde. B on reaction with Na gives Hydrogen. It gives whi ...
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an alkyl halide of molecular formula C_5H_11Cl on refluxing with EtOH gives 2 cmpds: A & B. A decolorises Br water. B does not . A on ozonolysis gives acetone & acetaldehyde. B on reaction with Na gives Hydrogen. It gives whi ...
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an alkyl halide of molecular formula C_5H_11Cl on refluxing with EtOH gives 2 cmpds: A & B. A decolorises Br water. B does not . A on ozonolysis gives acetone & acetaldehyde. B on reaction with Na gives Hydrogen. It gives whi ...
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an alkyl halide of molecular formula C_5H_11Cl on refluxing with EtOH gives 2 cmpds: A & B. A decolorises Br water. B does not . A on ozonolysis gives acetone & acetaldehyde. B on reaction with Na gives Hydrogen. It gives whi ...