Car battery acid is sulfuric acid H2SO4.
The reaction equation is:
2NaHCO3 + H2SO4 --> 2CO2 + 2H2O + Na2SO4
Sodium bicarbonate reacts with sulfuric acid to produce water, carbon dioxide, and sodium sulfate.
The answer is NaHCO3
Sodium hydrogen carbonate is another name for sodium bicarbonate, which has the chemical formula NaHCO3. Stomach acid is hydrochloric acid that reacts with sodium bicarbonate in a chemical reaction to neutralize stomach acid. The chemical equation is HCl + NaHCO3 produces NaCl + CO2 + H2O.
The chemical equation for the reaction between sodium hydrogen carbonate (NaHCO3) and limewater (Ca(OH)2) is: NaHCO3 + Ca(OH)2 → CaCO3 + NaOH + H2O This reaction produces calcium carbonate (CaCO3), sodium hydroxide (NaOH), and water (H2O).
The balanced chemical reaction between phosphoric acid (H3PO4) and sodium hydrogen carbonate (NaHCO3) is: H3PO4 + NaHCO3 -> NaH2PO4 + CO2 + H2O This reaction produces sodium dihydrogen phosphate, carbon dioxide, and water.
Solid NaHCO3 is used instead of aqueous NaHCO3 in the synthesis of tert-butyl chloride because solid NaHCO3 helps to absorb any excess acid produced during the reaction, preventing side reactions and ensuring the desired product is obtained. Using solid NaHCO3 also allows for better control of the reaction conditions and facilitates the separation of the organic layer containing tert-butyl chloride.
NaHCO3
NaHCO3 is the chemical formula f sodium bicarbonate.Carbon is here tetravalent.
The chemical reaction is:C9H8O4 + NaHCO3 = C9H7O4Na + H2O + CO2
Any chemical reaction is possible.
Na2CO3 (sodium carbonate) plus H2O (water) and CO2 (carbon dioxide) will undergo a chemical reaction to form sodium bicarbonate (NaHCO3). The balanced chemical equation for this reaction is: Na2CO3 + H2O + CO2 -> 2 NaHCO3.
When you add NaHCO3 to H2SO4, a chemical reaction occurs that produces carbon dioxide gas, water, and sodium sulfate. The reaction can be represented by the equation: NaHCO3 + H2SO4 -> CO2 + H2O + Na2SO4
The answer is NaHCO3
NaHCO3 is used in the synthesis of benzocaine to neutralize the excess acid used in the reaction. This helps in maintaining the desired pH required for the reaction to proceed efficiently. Additionally, NaHCO3 helps in the separation of the benzocaine product from the reaction mixture by forming a separate aqueous layer.
Sodium bicarbonate (NaHCO3) is used in iodometric titration as a reaction enhancer to neutralize excess acids that may interfere with the redox reaction between iodine and the analyte being titrated. By maintaining a slightly basic pH, NaHCO3 helps stabilize the iodine solution, ensuring more accurate and reliable results.
CH3COOH + NaHCO3 = CH3COONa + CO2 + H2O
NaHCO3 + HNO3 = CO2 + H2O + NaNO3
The reaction between benzoic acid and sodium bicarbonate produces sodium benzoate, carbon dioxide, and water. The balanced chemical equation for this reaction is: C6H5COOH + NaHCO3 -> C6H5COONa + CO2 + H2O