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Most stable allotropic form of sulphur i...

Most stable allotropic form of sulphur is rhombic sulphur. Explain

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Which is the most thermodynamically stable allotropic form of phosphorus ?

Which allotropic form of sulphur is thermodynamically stable at room temperature ?

Sulphur exists in more than one solid form. The stable form at room temperature is rhombic sulphur. But above room temperature the following reaction occurs : S (rhombic) rarr S (monoclinic) If Delta H = 276.144 J at 298 K and 1 atm and Delta G = 75.312 J Assume that Delta H and Delta S do not vary significantly with temperature, calculate T_(eq) , the temperature at which rhombic and monoclinic sulphur exist in equilibrium with each other.

Sulphur exists in more than one solid form. The stable form at room temperature is rhombic sulphur. But above room temperature the following reaction occurs. S ("rhombic") rarrS("monoclinic") If DeltaH^(Theta) = 276.144J at 298 K and 1atm and DeltaG^(Theta) = 75.312J a. Calculate DeltaS^(Theta) at 298K . b. Assume that DeltaH^(Theta) and DeltaS^(Theta) do not vary significantly with temperature, calculate T_(eq) , the temperature at which rhombic and monoclinic sulphur exist in equilibrium with each other.

Sulphur exists is more than one solid form. The stable form at room temperature is rhombic sulphur. But above room temperature the following reaction occurs. S ("rhomic") rarrS("monoclinic") If DeltaH^(Theta) =- 276.144J at 298 K and 1atm and DeltaG^(Theta) = 75.312J a. Calculate DeltaS^(Theta) at 298K .

A : The valency and oxidation number of sulphur in S_(8) respectively are 2 and 0 . R : S_(8) Rhombic is the most stable allotropic form of sulphur .

Which allotropic form of sulphur is most stable at room temperature?

Colloidal sulphur exhibits Brownian movement while a solution of sulphur in carbon disulphide does not. Explain.

The number oFIGURE bonds between sulphur and oxygen atoms is S_(2)O_(8)^(2-) and the number oFIGURE bonds between sulphur and sulphur atoms in rhombic sulphur, respectively, are:

The hybridisation of sulphur in sulphur dioxide is