NIitration on the meta- position of benzoic acid will happen.
The sugar is actually "dehydrated" by the acid. The result is a yucky carbon residue that is "fluffy." This means that it will expand significantly. The reason that it is so yucky is that it is wet with the (still very strong) acid.
When concentrated sulfuric acid is added to coconut water, the acid will likely react with the components of the coconut water, such as sugars and organic compounds, causing a chemical reaction. This reaction can lead to the production of heat, gas, or changes in color. It is important to handle concentrated sulfuric acid with care as it is a strong acid and can cause burns or release harmful fumes.
If concentrated sulfuric acid is left open, it will rapidly absorb moisture from the air, forming sulfuric acid fumes. This can lead to increased acidity and potential splashing hazards. Additionally, the acid may become diluted over time due to water absorption.
When sulfur reacts with hot and concentrated sulfuric acid, sulfur dioxide gas is produced. This reaction is exothermic and can be quite vigorous. The sulfur dioxide gas can further react with the sulfuric acid to form additional products depending on the conditions.
When sulfuric acid is added to water, it dissociates into hydrogen ions and sulfate ions. This process releases heat, so it is important to add the acid to water slowly and with stirring to prevent splashing or overheating. Additionally, diluting sulfuric acid with water helps to reduce the acidity and make it safer to handle.
Nothing happens because gold doesn't react with sulfuric acid.
The sugar is actually "dehydrated" by the acid. The result is a yucky carbon residue that is "fluffy." This means that it will expand significantly. The reason that it is so yucky is that it is wet with the (still very strong) acid.
copper sulphate and hydrogen is released.
Cu + 2H2SO4 ---> CuSO4 + 2H2O + SO2 This reaction only happens when the sulfuric acid is hot and concentrated.
The chemical reaction (a dehydration reaction) is:C12H22O11 + H2SO4 = 12 C + 11 H2O
Nothing happens if the solution is not too concentrated for sulfuric acid that is. All 4 kinds of ions stay in solution and unchanged. Na+, NO3-, H+, SO42-
When concentrated sulfuric acid is added to coconut water, the acid will likely react with the components of the coconut water, such as sugars and organic compounds, causing a chemical reaction. This reaction can lead to the production of heat, gas, or changes in color. It is important to handle concentrated sulfuric acid with care as it is a strong acid and can cause burns or release harmful fumes.
If concentrated sulfuric acid is left open, it will rapidly absorb moisture from the air, forming sulfuric acid fumes. This can lead to increased acidity and potential splashing hazards. Additionally, the acid may become diluted over time due to water absorption.
When sulfur reacts with hot and concentrated sulfuric acid, sulfur dioxide gas is produced. This reaction is exothermic and can be quite vigorous. The sulfur dioxide gas can further react with the sulfuric acid to form additional products depending on the conditions.
When sulfuric acid is added to water, it dissociates into hydrogen ions and sulfate ions. This process releases heat, so it is important to add the acid to water slowly and with stirring to prevent splashing or overheating. Additionally, diluting sulfuric acid with water helps to reduce the acidity and make it safer to handle.
When concentrated sulfuric acid reacts with hexane, it can cause dehydration of the hexane molecule by removing a molecule of water, leading to the formation of alkenes. This reaction typically requires heat as well. Additionally, sulfuric acid is a strong acid and can also protonate hexane molecules, forming hexyl hydrogen sulfate as another possible product.
When litharge (lead(II) oxide) is heated with concentrated sulfuric acid (H2SO4), lead sulfate (PbSO4) is formed along with water. The reaction is as follows: PbO(s) + H2SO4(l) → PbSO4(s) + H2O(l)