A strong-acid strong base reaction will yield a neutral solution at the equivalence point.
You can mix a basic solution with a pH higher than 7 with a pH 2 solution to yield a neutral mixture. The basic solution should be strong enough to neutralize the acidity of the pH 2 solution. Common bases like sodium hydroxide or potassium hydroxide can be used for this purpose.
The reaction between formic acid and potassium hydroxide will produce potassium formate and water. Since formic acid is a weak acid and potassium hydroxide is a strong base, the resulting solution will be basic.
theoretical yeild.
Actual
the amount of product obtained over the amount possible multiplied by 100
You can mix a basic solution with a pH higher than 7 with a pH 2 solution to yield a neutral mixture. The basic solution should be strong enough to neutralize the acidity of the pH 2 solution. Common bases like sodium hydroxide or potassium hydroxide can be used for this purpose.
The reaction between formic acid and potassium hydroxide will produce potassium formate and water. Since formic acid is a weak acid and potassium hydroxide is a strong base, the resulting solution will be basic.
The type of yield used to describe reaction efficiency is called "chemical yield." It represents the amount of product obtained in a reaction, expressed as a percentage of the theoretical maximum yield that could be obtained. Factors such as purity of reactants, reaction conditions, and side reactions can influence the chemical yield.
The relationship used to determine the percent yield of a chemical reaction is calculated by dividing the actual yield of a product by the theoretical yield, then multiplying by 100. This formula helps to determine the efficiency of a reaction by comparing the amount of product obtained to the amount that could be obtained under ideal conditions.
(Actual yield / Theoretical yield) x 100%
The percentage yield of the reaction can be calculated using the formula: (actual yield / theoretical yield) x 100. In this case, the actual yield is 10.8g and the theoretical yield is 11.2g. Therefore, the percentage yield of the reaction is: (10.8 / 11.2) x 100 = 96.4%.
The actual yield of a reaction product is always less than the yield from the chemical equation. This is because of error.
The amount of product that is possible in a reaction.
theoretical yeild.
Actual
Theoretical= calculated
The reaction is:Cu + 2 AgNO3 = Cu(NO3)2 + 2 Ag