NaHCO3 + CH3 COOH ---> CH3 COO NA + H2O + CO2
The word equation for the reaction of sodium hydrogencarbonate with an acid can be represented as: sodium hydrogencarbonate + acid -> salt + water + carbon dioxide. The specific salt formed will depend on the specific acid used in the reaction.
The reaction between sodium metal and ethanoic acid is moderate because it is not as vigorous as reactions involving more reactive metals like sodium with water. In this reaction, the sodium displaces hydrogen from the ethanoic acid to form sodium acetate and hydrogen gas. The moderate nature of the reaction is due to the reactivity of sodium with ethanoic acid compared to more reactive substances.
The chemical equation for the reaction between ethanoic acid (acetic acid) and sodium hydroxide is: CH3COOH + NaOH → CH3COONa + H2O This reaction is a neutralization reaction that forms sodium acetate and water.
Yes, very fast, it forms sodium acetate and hydrogen gas.
The reaction between ethanoic acid (acetic acid) and sodium metal produces sodium acetate, hydrogen gas, and heat. The balanced chemical equation is 2CH3COOH + 2Na -> 2CH3COONa + H2. This is a redox reaction where sodium is oxidized and ethanoic acid is reduced.
The word equation for the reaction of sodium hydrogencarbonate with an acid can be represented as: sodium hydrogencarbonate + acid -> salt + water + carbon dioxide. The specific salt formed will depend on the specific acid used in the reaction.
The reaction between sodium metal and ethanoic acid is moderate because it is not as vigorous as reactions involving more reactive metals like sodium with water. In this reaction, the sodium displaces hydrogen from the ethanoic acid to form sodium acetate and hydrogen gas. The moderate nature of the reaction is due to the reactivity of sodium with ethanoic acid compared to more reactive substances.
The chemical equation for the reaction between ethanoic acid (acetic acid) and sodium hydroxide is: CH3COOH + NaOH → CH3COONa + H2O This reaction is a neutralization reaction that forms sodium acetate and water.
Yes, very fast, it forms sodium acetate and hydrogen gas.
The reaction between ethanoic acid (acetic acid) and sodium metal produces sodium acetate, hydrogen gas, and heat. The balanced chemical equation is 2CH3COOH + 2Na -> 2CH3COONa + H2. This is a redox reaction where sodium is oxidized and ethanoic acid is reduced.
The reaction between sodium carbonate and ethanoic acid produces carbon dioxide gas, which can be observed as bubbles forming. The reaction also results in the formation of sodium ethanoate and water as products.
When sodium hydrogen carbonate reacts with ethanoic acid, a chemical reaction occurs to produce sodium ethanoate, carbon dioxide gas, and water. This reaction is also known as an acid-base reaction or neutralization reaction, where the sodium hydrogen carbonate (a base) neutralizes the ethanoic acid (an acid) to form a salt (sodium ethanoate), carbon dioxide gas, and water.
When hydrochloric acid and sodium ethanoate are combined, a chemical reaction occurs where hydrogen chloride gas is evolved. This reaction results in the formation of ethanoic acid and sodium chloride. The overall reaction is: CH3COONa + HCl → CH3COOH + NaCl.
The reaction equation for sodium hydrogencarbonate (NaHCO3) with hydrochloric acid (HCl) is: NaHCO3 + HCl → NaCl + H2O + CO2 This reaction produces sodium chloride (NaCl), water (H2O), and carbon dioxide (CO2) as products.
The reaction between ethanoic acid (acetic acid) and sodium hydroxide is a double replacement one. Normally a reaction between an acid (acetic acid in this case) and a base (like NaOH) involves neutralization, which in turn produces water.
Yes, the reaction between citric acid and sodium hydrogencarbonate is endothermic. This is because the reaction absorbs energy from the surroundings to break the bonds in the reactants and form new bonds in the products. This results in a decrease in temperature in the immediate surroundings.
This equation is NaHCO3 + HNO3 => NaNO3 + H2O + CO2 (g).