Acid-Base Theory
Determining Strength of Acids/Bases
pH Calculation
Naming Acids and Bases
Other 😈
100

What is the definition of a Bronsted-Lowry Acid? 

A substance that donates a proton (H+).

100

Which acid is stronger: HCl (Ka ≈ 10^7) or HF (Ka = 7.2 x 10^-4)?

HCl is stronger because it has a much larger Ka value.

100

What is the pH of a 0.10 M HCl solution?

 pH = 1

100

Name the acid with the formula HCl.

Hydrochloric acid.

100

What is the color of litmus paper in a neutral solution?

Purple.

200

In the reaction: 𝑁𝐻3+𝐻2𝑂↔𝑁𝐻4+𝑂𝐻−, identify the conjugate acid-base pairs.

𝑁𝐻3 And 𝑁𝐻4+ (conjugate acid-base pair), 𝐻2𝑂 and 𝑂𝐻− (conjugate acid-base pair).

200

What does the pKa value indicate about an acid's strength?

A lower pKa value indicates a stronger acid, as it signifies a higher Ka and greater dissociation in water.

200

DAILY DOUBLE

Calculate the pH of a 0.10 M NaOH solution

pH = 13

200

Name the acid with the formula H2SO4.

Sulfuric acid.

200

What is the endpoint in a titration?

The point at which the indicator changes color, signaling that the reaction is complete.

300

Explain why water is considered amphoteric.

Water can act as both an acid and a base; it can donate a proton to become 𝑂𝐻− or accept a proton to become 𝐻3𝑂+.

300

Determine the relative strength of acetic acid (Ka = 1.8 x 10^-5) compared to formic acid (Ka = 1.8 x 10^-4). 

Formic acid is stronger than acetic acid because it has a higher Ka value.

300

If the pH of a solution is 4, what is the concentration of H+ ions?

[H+] = 1 x 10^-4 M.

300

 Name the acid with the formula HClO.

Hypochlorous acid.

300

How does a buffer solution work?

A buffer resists changes in pH by neutralizing added acids or bases through its conjugate acid-base pair.

400

Compare the strength of chlorous acid (Ka = 1.1 x 10^-2) and hypochlorous acid (Ka = 3.0 x 10^-8). What does it indicate about the acid?

Chlorous acid is stronger than hypochlorous acid because it has a larger Ka value, indicating a greater degree of dissociation in water.

400

Explain the relationship between the strength of an acid and its conjugate base.

The stronger the acid, the weaker its conjugate base; this is because a strong acid dissociates completely, leaving behind a very weak conjugate base.

400

Calculate the pH of a 0.05 M HClO4 solution. Round to the tenths place.

pH ≈ 1.3

400

Name the base with the formula KOH.

Potassium hydroxide.

400

Calculate the pH of a solution containing 0.40 M CH3COOH and 0.20 M CH3COONa (Ka = 1.8 x 10^-5).  (using Henderson-Hasselbalch equation) Round to the hundredths place. 

pH ≈ 4.57

500

Explain the concept of a polyprotic acid using sulfuric acid as an example. Hint: Use strength.

A polyprotic acid can donate more than one proton. Sulfuric acid (H2SO4) donates its first proton completely (strong acid) and the second proton partially (weak acid).

500

Calculate the pH of a 0.25 M NH3 solution with Kb = 1.8 x 10^-5. Round to the hundredths place.

pH ≈ 11.63

500

What is the pH of a buffer solution containing 0.5 M CH3COOH and 0.5 M CH3COONa (Ka for CH3COOH = 1.77 x 10^-5)? (using Henderson-Hasselbalch equation)

pH ≈ 4.74.

500

Provide the name and molecular mass for H3PO4.

Phosphoric acid. Polyprotic acids are named similarly to monoprotic acids but can donate more than one proton. Molecular mass = 97.994

500

DAILY DOUBLE

Predict the pH of a solution when ammonium chloride (NH4Cl) is dissolved in water. Explain the process and provide a step-by-step example calculation. Round answer to the hundredths place. 

Explanation: Ammonium chloride (NH4Cl) is a salt formed from a weak base (NH3) and a strong acid (HCl). In water, NH4Cl dissociates into NH4+ and Cl-. NH4+ (ammonium ion) acts as a weak acid, releasing H+ ions, while Cl- is the conjugate base of a strong acid and does not affect the pH.

Thus, the pH of a 0.1 M NH4Cl solution is approximately 5.13.


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