A buffer solution with maximum buffer capacity is formed when the concentration of weak acid (\( \text{CH}_3\text{COOH} \)) and its conjugate base (\( \text{CH}_3\text{COO}^- \)) are equal. This occurs at the half-equivalence point of the titration.
Step 2: Calculating the required NaOH volume.Thus, the volume of NaOH required to form a buffer solution with maximum buffer capacity is 20 mL.
Find the least horizontal force \( P \) to start motion of any part of the system of three blocks resting upon one another as shown in the figure. The weights of blocks are \( A = 300 \, {N}, B = 100 \, {N}, C = 200 \, {N} \). The coefficient of friction between \( A \) and \( C \) is 0.3, between \( B \) and \( C \) is 0.2 and between \( C \) and the ground is 0.1.