Henderson Hasselbalch: Buffer solutions

A buffer is formed by dissolving 5 g5\ g of sodium benzoate, C6H5COONa\rm C_6H_5COONa, and 6 g6\ g of benzoic acid, C6H5COOH\rm C_6H_5COOH (Ka=6.6×105\rm K_a =6.6 \times 10^{-5}) in 1 L1\ L of water.
a) What is the pH\rm pH of this buffer?
b) The buffer is split into two beakers, 500 mL500\ mL each. To the first beaker is added 1 mL1\ mL of 1.0 M1.0\ M HCl\rm HCl and to the second is added 1 mL1\ mL of 1.0 M1.0\ M NaOH\rm NaOH. Calculate the pH\rm pH of each beaker.
More Preparing Buffers with Desired pH Questions:
Based on the given ionization constants, which of the following pairs of substances should be dissolved together in water to produce a buffer with pH = 9.85?
AcidKaBaseKbAcetic acid (CH3COOH)1.8×105Ammonia (NH3)1.8×105Bicarbonate (HCO3)4.8×1011Acetate (CH3COO)5.6×1010Carbonic acid (H2CO3)4.2×107Aniline (C6H5NH2)3.8×1010Hydrazoic acid (HN3)1.9×105Hydrazine (N2H4)8.5×107Hydrofluoric acid (HF)6.8×104Methylamine (CH3NH2)4.4×104Phenol (C6H5OH)1.3×1010Pyridine (C5H5N)1.5×109\def\arraystretch{2} \begin{array}{c|c|c|c} \hline \rm Acid &\rm K_a & \rm Base & \rm K_b\\ \hline \rm Acetic\ acid \ (CH_3COOH) &1.8 × 10^{−5} & \rm Ammonia \ (NH_3) & 1.8 × 10^{−5} \\ \hline \rm Bicarbonate \ (HCO_3^−) & 4.8 × 10^{−11} & \rm Acetate \ (CH_3COO^−) & 5.6 × 10^{−10} \\\hline \rm Carbonic \ acid \ (H_2CO_3) &4.2 × 10^{−7} &\rm Aniline \ (C_6H_5NH_2) & 3.8 × 10^{−10}\\ \hline \rm Hydrazoic \ acid \ (HN_3) &1.9 × 10^{−5} &\rm Hydrazine \ (N_2H_4) & 8.5 × 10^{−7}\\ \hline \rm Hydrofluoric \ acid \ (HF) & 6.8 × 10^{−4}& \rm Methylamine \ (CH_3NH_2) &4.4 × 10^{−4}\\ \hline \rm Phenol \ (C_6H_5OH) & 1.3 × 10^{−10}&\rm Pyridine \ (C_5H_5N) &1.5 × 10^{−9}\\ \hline \end{array}