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When an alkali metal dissolves in liquid ammonia the solution can acquire different colours. Explain the reasons for this type of colour change.

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When an alkali metal dissolves in liquid ammonia, the solution can acquire different colours. Meaning, dilute solutions of alkali metals in liquid ammonia exhibit dark blue colour this is because of ammoniated electrons absorb energy in the visible region of light.e.g., M + (x + y)--->^+ + {ammoniated...
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When an alkali metal dissolves in liquid ammonia, the solution can acquire different colours. Meaning, dilute solutions of alkali metals in liquid ammonia exhibit dark blue colour this is because of ammoniated electrons absorb energy in the visible region of light.
e.g., M + (x + y)--->[M()x]^+ + [e-()y]{ammoniated electrons}
However, if the concentration increases above 3M, the colour changes to copper -bronze, and it becomes diamagnetic.

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When an alkali metal is dissolved in liquid ammonia, it results in the formation of a deep blue coloured solution. The ammoniated electrons absorb energy corresponding to red region of visible light. Therefore, the transmitted light is blue in colour. At a higher concentration (3 M), clusters of metal...
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When an alkali metal is dissolved in liquid ammonia, it results in the formation of a deep blue coloured solution.

The ammoniated electrons absorb energy corresponding to red region of visible light. Therefore, the transmitted light is blue in colour.

At a higher concentration (3 M), clusters of metal ions are formed. This causes the solution to attain a copper–bronze colour and a characteristic metallic lustre.

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Which of the alkali metal is having least melting point?

(a) Na (b) K (c) Rb (d) Cs

Atomic size increases as we move down the alkali group. As a result, the binding energies of their atoms in the crystal lattice decrease. Also, the strength of metallic bonds decreases on moving down a...
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Find the oxidation state of sodium in Na2O2.
Let the oxidation state of Na be x. The oxidation state of oxygen, in case of peroxides, is –1. Therefore, Therefore, the oxidation sate of sodium is +1.
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