The reciprocal of gold number is directly proportional to the protecting power.
102.
For the adsorption of solution on a solid surface, $$\frac{x}{m} = k{C^{\frac{1}{n}}},$$ Adsorption isotherm of $$\log \left( {\frac{x}{m}} \right)$$ and $$\log C$$ was found of the type. This is when
Adsorption does not keep increasing continuously with increase in pressure.
107.
Colloidal solutions of metals like gold can be prepared when their salt solutions react with certain substances like $$SnC{l_2},$$ ,formaldehyde, phenyl hydrazine, etc.
$$2AuC{l_3} + 3SnC{l_2} \to 3SnC{l_4} + \mathop {2Au}\limits_{{\text{Sol}}} $$
The above method is an example of
Salt solution of gold is being reduced to gold by using a reducing agent like $$SnC{l_2}.$$
108.
When a colloidal solution is viewed from the direction at right angles of light beam, the path of the beam is illuminated due to scattering of light. In the figure $$(A)$$ and $$(B)$$ are
Zeolite is a most widely studied shape-selective catalyst. Shape-selectivity of zeolite depends upon pore structure of the catalyst, pore size generally varies between 260 $$pm$$ to 740 $$pm.$$ Such catalysts are highly specific because molecules of only a particular size and shape enter these pores and get adsorbed.