you could but it has not been tested or approved for that type of use.
pH is measured only in solutions or liquids. Marble chips has not a pH.
The rate of reaction between HCl and marble chips is dependent on factors such as the concentration of the acid, the surface area of the marble chips, and the temperature of the reaction. As the concentration of the acid increases, the rate of reaction also increases due to more collisions between the acid molecules and the marble chips. Similarly, a higher temperature increases the kinetic energy of the particles, leading to more collisions and a faster reaction rate. The surface area of the marble chips affects the rate of reaction by providing more sites for acid molecules to react with, which speeds up the reaction.
It would be challenging to grind marble chips using a pestle and mortar. Marble is a very hard and durable material, and it may not break down easily with manual grinding tools. It would be more effective to use a machine or tool specifically designed for grinding marble.
When an acid reacts with marble chips (calcium carbonate), bubbles of carbon dioxide gas are produced. The chemical reaction formula is: acid + calcium carbonate (marble chips) -> carbon dioxide gas + water + calcium salt
The word equation for the reaction of marble chips (calcium carbonate) with hydrochloric acid is: calcium carbonate + hydrochloric acid → calcium chloride + water + carbon dioxide.
pH is measured only in solutions or liquids. Marble chips has not a pH.
The scientific name for marble chips is calcium carbonate, which is a chemical compound with the formula CaCO3.
pH is measured only in solutions or liquids. Marble chips has not a pH.
No the water would drain around the chips. They would not absorb water.
The rate of reaction between HCl and marble chips is dependent on factors such as the concentration of the acid, the surface area of the marble chips, and the temperature of the reaction. As the concentration of the acid increases, the rate of reaction also increases due to more collisions between the acid molecules and the marble chips. Similarly, a higher temperature increases the kinetic energy of the particles, leading to more collisions and a faster reaction rate. The surface area of the marble chips affects the rate of reaction by providing more sites for acid molecules to react with, which speeds up the reaction.
calcium carbonate :)
Marble is primarily made of calcium carbonate. Vinegar has acid in it. When the weak acid contacts the calcium carbonate, it gives off bubbles of carbon dioxide gas, and eventually will erode the surface of the marble chips.
First you mix both chalk and salt in water. From the solution that you get, you can filter the chalk out because it is non soluble in water. As for the salt, all there is to do is to just evaporate the water out.
It would be challenging to grind marble chips using a pestle and mortar. Marble is a very hard and durable material, and it may not break down easily with manual grinding tools. It would be more effective to use a machine or tool specifically designed for grinding marble.
48 hours
When an acid reacts with marble chips (calcium carbonate), bubbles of carbon dioxide gas are produced. The chemical reaction formula is: acid + calcium carbonate (marble chips) -> carbon dioxide gas + water + calcium salt
The word equation for the reaction of marble chips (calcium carbonate) with hydrochloric acid is: calcium carbonate + hydrochloric acid → calcium chloride + water + carbon dioxide.