how do you write a balanced chemical formula for this question
CaO + H2O ---> Ca(OH)2
When sodium hydroxide reacts with calcium bicarbonate, it forms sodium bicarbonate and calcium hydroxide. The balanced chemical equation for this reaction is 2NaOH + Ca(HCO3)2 -> 2NaHCO3 + Ca(OH)2.
The balanced equation for the reaction between calcium oxide (CaO) and water (H2O) is: CaO + H2O -> Ca(OH)2. This reaction produces calcium hydroxide (Ca(OH)2) as the product.
When hydrochloric acid reacts with calcium oxide, calcium chloride and water are formed. The reaction is exothermic, releasing heat. The balanced chemical equation for the reaction is: 2HCl + CaO -> CaCl2 + H2O
When calcium metal is dropped in water, it reacts vigorously to produce calcium hydroxide and hydrogen gas. The balanced chemical equation is: 2Ca(s) + 2H2O(l) -> 2Ca(OH)2(aq) + H2(g)
The balanced chemical equation for this reaction is: Ca(OH)2 + 2HCl -> CaCl2 + 2H2O. This is a double displacement reaction where calcium hydroxide and hydrochloric acid switch partners to form calcium chloride and water.
The balanced equation for the reaction between calcium hydroxide and hydrochloric acid is: Ca(OH)2 + 2HCl → CaCl2 + 2H2O In this reaction, calcium hydroxide (Ca(OH)2) reacts with hydrochloric acid (HCl) to produce calcium chloride (CaCl2) and water (H2O). The equation is balanced with 1 molecule of calcium hydroxide reacting with 2 molecules of hydrochloric acid to produce 1 molecule of calcium chloride and 2 molecules of water.
The balanced chemical equation for the reaction is: Ca(NO3)2 + 2NaOH -> Ca(OH)2 + 2NaNO3. This equation shows that one molecule of calcium nitrate reacts with two molecules of sodium hydroxide to produce one molecule of calcium hydroxide and two molecules of sodium nitrate.
When sodium hydroxide reacts with calcium bicarbonate, it forms sodium bicarbonate and calcium hydroxide. The balanced chemical equation for this reaction is 2NaOH + Ca(HCO3)2 -> 2NaHCO3 + Ca(OH)2.
The balanced equation for the reaction between calcium oxide (CaO) and water (H2O) is: CaO + H2O -> Ca(OH)2. This reaction produces calcium hydroxide (Ca(OH)2) as the product.
When sodium hydroxide reacts with calcium carbonate, a double displacement reaction occurs where sodium carbonate and calcium hydroxide are formed. The balanced chemical equation for the reaction is: 2NaOH + CaCO3 -> Na2CO3 + Ca(OH)2.
There are actually two products made.When Calcium reacts with water, Calcium Hydroxide is produced and so is Hydrogen. So, both Calcium Hydroxide and Hydrogen are produced, looking like this in a word equation:Calcium + Water = Calcium Hydroxide + Hydrogen
When hydrochloric acid reacts with calcium oxide, calcium chloride and water are formed. The reaction is exothermic, releasing heat. The balanced chemical equation for the reaction is: 2HCl + CaO -> CaCl2 + H2O
When calcium metal is dropped in water, it reacts vigorously to produce calcium hydroxide and hydrogen gas. The balanced chemical equation is: 2Ca(s) + 2H2O(l) -> 2Ca(OH)2(aq) + H2(g)
The balanced chemical equation for this reaction is: Ca(OH)2 + 2HCl -> CaCl2 + 2H2O. This is a double displacement reaction where calcium hydroxide and hydrochloric acid switch partners to form calcium chloride and water.
Calcium oxide reacts with water to form calcium hydroxide, also known as slaked lime. This process is exothermic and produces heat. Calcium hydroxide is a white powder that is sparingly soluble in water.
The balanced equation is: 2HCl + CaCO3 -> CaCl2 + H2O + CO2
The balanced chemical equation for the reaction between calcium hydroxide and phosphoric acid is: 3Ca(OH)2 + 2H3PO4 -> Ca3(PO4)2 + 6H2O Using the mole ratio from the balanced equation, we find that 1 mole of calcium hydroxide reacts with 2/3 mole of calcium phosphate. First, calculate the number of moles of calcium hydroxide: 21.5g / 74.093g/mol = 0.290 moles Then, use the mole ratio to find the moles of calcium phosphate that can be produced: 0.290 moles * (1 mole Ca3(PO4)2 / 3 moles Ca(OH)2) = 0.097 moles Lastly, convert moles of calcium phosphate to grams: 0.097 moles * 310.176g/mol = 30 grams of calcium phosphate could be recovered.