The common name for potash alum is alum.
An alum stone is a subsulphate of alumina and potash - also known as alunite.
Potash alum is another name for potassium alum. Alum is a class of molecular compounds, and included in the class is potassium alum. So, they are not the same thing, but yet very similar in that potash alum is a member of the alum class.
A pH over 7.
Potash alum typically appears as colorless or white crystals with a slightly sweet, astringent taste. It is often found in a crystalline form resembling transparent octahedrons.
The common name for potash alum is alum.
When potash alum is dissolved in water, it forms a complex with water molecules which can give a greenish tint to the water. This color is due to the interaction between the chemicals in potash alum and the light passing through the water, resulting in a green color being perceived.
The theoretical yield of potash alum in a preparation reaction can be calculated using stoichiometry and the balanced chemical equation. The amount of potash alum produced will depend on the starting materials used and their quantities in the reaction. It is important to consider the limiting reactant to determine the maximum amount of product that can be formed.
Potash alum does not exhibit sublimation. Sublimation is the process where a substance transitions directly from a solid to a gas without passing through a liquid state. Potash alum undergoes decomposition when heated instead of sublimating.
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An alum stone is a subsulphate of alumina and potash - also known as alunite.
Potash alum is another name for potassium alum. Alum is a class of molecular compounds, and included in the class is potassium alum. So, they are not the same thing, but yet very similar in that potash alum is a member of the alum class.
Potash alum has the effect of a poison on the body. It has been linked to the incidence of Alzheimer's disease in people who have used it as a deodorant.
A pH over 7.
6
The oxidation state of aluminum in potash alum is +3. This is because in the formula KAl(SO4)2·12H2O, aluminum has a +3 oxidation state to balance the charges of the sulfate and potassium ions.
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