# How many mL of 1 M NaOH are needed to raise the pH of a 1 L solution of 0.03 M lysine from pH 2.18 to PH 10.53? The pK. values of the o-carboxyl, @-amino, and side chain groups of lysine are 2.18, 8.95, and 10.53, respectively. The Necessity of Calculating How Much NaOH is Required to Raise the pH of Lysine Solution

You Need to Calculate How Much NaOH Is Required To Raise The pH Of Lysine Solution
The task of finding the right amount NaOH to raise the pH level in a solution for lysine can seem daunting. First, you need to determine the pK numbers of @-amino, @-carboxyl and side chain groups (Gomez, 2016; Abidi 2021). The required amount of NaOH can then be determined by using the Henderson-Hasselbalch equation. For the problem above, it is necessary to add 1 mL 1 M NaOH to increase the pH level of 1 L of 0.03M lysine solution from pH 2.18 up to pH 10.53. This can be calculated by rearranging the Henderson-Hasselbalch equation and solving for the required amount of NaOH (Kumar et al., 2016; Wen, 2020). This equation shows us that the NaOH required is equal the pH value, minus the concentration of the lysine-group, multiplied times the volume. It is important to determine how much NaOH will be required to increase the pH level of a solution containing lysine. This can be done by rearranging the Henderson-Hasselbalch equation and solving for the required amount of NaOH. Cont…..

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