Borax and glycerol do not react with each other chemically. However, when they are mixed together, borax can dissolve in glycerol to form a solution.
Borax can react with acids to form boron-containing compounds. It can also react with water to form boric acid.
cuz' borax contain boric acid (H3BO3) which is very weak acid , thus it gives non accurate titration, so we add neutral glycerol to increase the acidity by the way we add glycerol after titration of NaOH not before
When borax is added to glue, it crosslinks the polymer chains in the glue to form a stronger and more rigid material, commonly known as slime. Glycerol can act as a plasticizer, helping to maintain the flexibility and stretchiness of the slime while preventing it from drying out.
No, borax and ammonium sulfate typically do not react with each other. Borax is a salt of boric acid, while ammonium sulfate is an ammonium salt. Their chemical properties do not easily facilitate a reaction between them.
The reaction between glycerol and acetic acid forms glycerol acetate and water. This reaction is an esterification process, where the hydroxyl groups of glycerol react with the carboxyl group of acetic acid to form the ester glycerol acetate.
Borax can react with acids to form boron-containing compounds. It can also react with water to form boric acid.
cuz' borax contain boric acid (H3BO3) which is very weak acid , thus it gives non accurate titration, so we add neutral glycerol to increase the acidity by the way we add glycerol after titration of NaOH not before
When borax is added to glue, it crosslinks the polymer chains in the glue to form a stronger and more rigid material, commonly known as slime. Glycerol can act as a plasticizer, helping to maintain the flexibility and stretchiness of the slime while preventing it from drying out.
No, borax and ammonium sulfate typically do not react with each other. Borax is a salt of boric acid, while ammonium sulfate is an ammonium salt. Their chemical properties do not easily facilitate a reaction between them.
The reaction between glycerol and acetic acid forms glycerol acetate and water. This reaction is an esterification process, where the hydroxyl groups of glycerol react with the carboxyl group of acetic acid to form the ester glycerol acetate.
When iodine and borax are mixed, they do not react chemically. Both substances will remain as separate entities in the mixture. Iodine is a purple-black solid, while borax is a white crystalline powder.
Borax and vinegar do not react because they are not reactive with each other in the same way that some other acid-base or redox reactions occur. Borax is a weak base, while vinegar (acetic acid) is a weak acid, and they do not have the necessary components to undergo a chemical reaction when combined.
Borax is a water softening agent because it can bind to calcium and magnesium ions present in hard water, preventing them from forming scale deposits. By binding to these ions, borax helps to reduce the water's hardness and improve its ability to lather with soap.
"Glycerol draws water from its surroundings and the heat produced by the absorption makes glycerol feel warm. Due to this property, glycerol is added to adhesives and glues to keep them from drying too fast. "--"Glycerol: A Jack Of All Trades" by Mary Ann David, George S. Henry Academy, North York (Toronto), Ontario
In a starch-type glue (e.g. a wheatpaste glue / wallpaper glue), the borax acts as a gelling agent, thereby increasing the viscosity and glue strength. Borax also has fungicidal properties, thereby acting as a preservative against mould.
The chemical equation to represent the reaction between borax (Na2B4O7) and CaO (calcium oxide) when heated is: Na2B4O7 + CaO → CaB4O7 + Na2O In this reaction, borax and calcium oxide react to form calcium tetraborate (CaB4O7) and sodium oxide (Na2O) as the products.
Yes, when borax (sodium borate) and vinegar (acetic acid) are combined, a chemical reaction occurs that produces carbon dioxide gas. This reaction is often used in cleaning applications to help dissolve dirt and grime.