2,4,6-trinitrophenol
When sodium hydrogen carbonate reacts with dilute sulfuric acid (H2SO4), carbon dioxide gas, water, and sodium sulfate are produced. This reaction is represented by the following chemical equation: NaHCO3 + H2SO4 → CO2 + H2O + Na2SO4
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)
When ethanol is heated in the presence of concentrated H2SO4, it undergoes dehydration to form ethylene gas. This reaction follows an elimination mechanism where a water molecule is eliminated from ethanol to produce ethylene.
Ammonia gas cannot be dried using concentrated H2SO4 and P2O5 because ammonia gas reacts with both chemicals. Ammonia reacts exothermically with concentrated H2SO4 to form ammonium sulfate and water. Similarly, ammonia reacts with P2O5 to form ammonium phosphate and water. These reactions do not effectively dry the ammonia gas as the water byproducts are produced.
When sulfuric acid (H2SO4) reacts with sodium hydroxide (NaOH), the salt produced is sodium sulfate (Na2SO4) along with water.
The reaction is:C + 2 H2SO4 = CO2 + 2 SO2 + 2 H2O
When sodium hydrogen carbonate reacts with dilute sulfuric acid (H2SO4), carbon dioxide gas, water, and sodium sulfate are produced. This reaction is represented by the following chemical equation: NaHCO3 + H2SO4 → CO2 + H2O + Na2SO4
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)
H2SO4 is a highly concentrated acid.
When ethanol is heated in the presence of concentrated H2SO4, it undergoes dehydration to form ethylene gas. This reaction follows an elimination mechanism where a water molecule is eliminated from ethanol to produce ethylene.
Reaction as follows:Na2O + H2SO4 --> Na2SO4 + 2H2OSodium sulfate is formed by this.
Ammonia gas cannot be dried using concentrated H2SO4 and P2O5 because ammonia gas reacts with both chemicals. Ammonia reacts exothermically with concentrated H2SO4 to form ammonium sulfate and water. Similarly, ammonia reacts with P2O5 to form ammonium phosphate and water. These reactions do not effectively dry the ammonia gas as the water byproducts are produced.
Aqua regia decomposes into Nitric Oxide and chlorine
The chemical reaction (a dehydration reaction) is:C12H22O11 + H2SO4 = 12 C + 11 H2O
When sulfuric acid (H2SO4) reacts with sodium hydroxide (NaOH), the salt produced is sodium sulfate (Na2SO4) along with water.
KAt + H2SO4(conc) = KHSO4 + HAt displacement then .......HAt + .......H2SO4 = At2 + H2S which can be balanced as follows: 2At- = At2 + 2e ] * 4 8e + 8H+ + H2SO4 = H2S + 4H2O overall is 8At- + 8H+ + H2SO4 = H2S + 4H2O + 4At2
The chemical equation is 2Na + H2SO4 --> Na2SO4 + H2