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.
When iodine is mixed with borax, it can form a complex known as "iodine monochloride borate." This compound may exhibit unique properties such as altered solubility, color changes, or reactivity compared to the individual components. It is important to handle and dispose of this mixture properly due to the potential chemical reactions that can occur.
When water and borax are mixed together, the borax dissolves in the water. This forms a solution that can be used for various purposes, such as cleaning, laundry, or crafting. Borax can help to boost the cleaning power of water, acting as a detergent or a mild abrasive depending on the application.
When sugar and iodine are mixed, the iodine will turn purple or black due to a reaction with the starch that is naturally present in sugar. This color change is commonly used as a simple test for the presence of starch.
When citric acid and iodine are mixed, they react to form iodine citrate. This reaction results in the formation of a pale yellow precipitate.
When iodine is mixed with citric acid, the iodine can be dissolved or react with the citric acid to form iodine citrate. This reaction can alter the properties of iodine, such as its solubility, color, or chemical behavior.
When iodine is mixed with borax, it can form a complex known as "iodine monochloride borate." This compound may exhibit unique properties such as altered solubility, color changes, or reactivity compared to the individual components. It is important to handle and dispose of this mixture properly due to the potential chemical reactions that can occur.
When water and borax are mixed together, the borax dissolves in the water. This forms a solution that can be used for various purposes, such as cleaning, laundry, or crafting. Borax can help to boost the cleaning power of water, acting as a detergent or a mild abrasive depending on the application.
When sugar and iodine are mixed, the iodine will turn purple or black due to a reaction with the starch that is naturally present in sugar. This color change is commonly used as a simple test for the presence of starch.
I am not quite sure what happens when corn starch and iodine are mixed but when corn starch, iodine and water are mixed, it creates a purple solution. The darkness of the colour mostly depends on the iodine. Without the starch with iodine and water, it is deep yellow or brown.
When citric acid and iodine are mixed, they react to form iodine citrate. This reaction results in the formation of a pale yellow precipitate.
When iodine is mixed with citric acid, the iodine can be dissolved or react with the citric acid to form iodine citrate. This reaction can alter the properties of iodine, such as its solubility, color, or chemical behavior.
they dissolve but water will become saturated that's why the remaining Iodine crystals will remain suspended.
doesn't create gold, turns bluish though
When Alka-Seltzer and iodine are mixed, the Alka-Seltzer tablet will react with the iodine, causing it to fizz and release carbon dioxide gas. This reaction does not have any significant chemical significance beyond the physical reaction of gas formation.
When iodine (I2) is mixed with alcohol, it forms a solution known as tincture of iodine. This solution is commonly used as an antiseptic to disinfect wounds due to the antimicrobial properties of iodine. The alcohol helps dissolve the iodine, making it easier to apply to the skin.
When borax is mixed with hot water, it dissolves forming a saturated solution. As the solution cools, the solubility of borax decreases, causing the excess borax to come out of the solution and recrystallize. This process forms crystals as the borax molecules arrange themselves in an organized structure to minimize energy.
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.