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General Chemistry Part 2 · Qualitative Analysis

Qualitative Analysis: Ca, Ba, K, Ammonium, Anions, and Group IA

Dissolving a solute raises the boiling point and lowers the freezing point of a solvent by an amount that depends only on how many solute particles are present, not on what they are. Calculate the boiling-point elevation and freezing-point depression, account for the extra particles that ionic solutes release through the van't Hoff factor, and use a measured freezing-point depression to determine an unknown molar mass. In every part you calculate the value yourself, then reveal the result and compare.

Theory

Qualitative analysis is the identification of the ions present in a sample by their characteristic reactions. This lab focuses on a specific set: the cations calcium, barium, potassium, and ammonium; the common anions; and the Group IA alkali-metal cations identified by flame colour. The skill is not just running a test, but choosing tests that distinguish ions which behave similarly.

1. The cations Ca²⁺, Ba²⁺, K⁺, and NH₄⁺

Calcium and barium are both Group 2 metals and behave alike: both give white precipitates with sulfate and with carbonate. To tell them apart you use the flame test (calcium gives a brick-red flame, barium a pale green) and the chromate test (barium gives a yellow precipitate of barium chromate; calcium does not). Potassium gives a lilac flame and no precipitate with common reagents. Ammonium is confirmed by warming with sodium hydroxide, which releases ammonia gas that turns damp red litmus blue.

2. Confirmatory tests for anions

The sulfate ion gives a white precipitate of barium sulfate with barium chloride, insoluble in dilute acid. The carbonate ion fizzes with dilute acid, releasing carbon dioxide that turns limewater milky. The chloride ion gives a white precipitate of silver chloride with silver nitrate, soluble in ammonia. The nitrate ion gives a positive brown ring test with iron(II) sulfate and concentrated sulfuric acid.

3. Group IA (alkali metal) analysis

The Group IA cations, lithium, sodium, and potassium, have very few precipitation reactions, so they are identified mainly by flame colour: lithium gives crimson, sodium an intense yellow, and potassium a lilac (pale violet) flame. Sodium's strong yellow can mask potassium; viewing the flame through blue cobalt glass filters out the sodium colour so the potassium lilac can be seen.

4. The logic of a separation scheme

Because several ions can be present at once, qualitative analysis uses a systematic scheme: tests are run in an order that removes or confirms one ion before the next, so that a positive result is not confused by another ion. The confirmatory test for each ion is the one that is unique to it.

Apparatus and Reagents

The equipment and reagents a real qualitative-analysis experiment uses. In this simulation they are modelled for you, but the observations correspond to what each test would actually show.

Instructions

This is a predict-and-check lab. In each tab you decide the answer yourself first, choose it, and only then does the simulation confirm the correct result so you can compare. Record every result in your worksheet.

1
Tab 1 — Cations. For calcium, barium, potassium, and ammonium, predict the result of each test (precipitation, flame, chromate, or the ammonium test), choose your answer, and click Check.
2
Tab 2 — Anions. Predict the confirmatory-test result for sulfate, carbonate, chloride, and nitrate, choose your answer, and click Check.
3
Tab 3 — Group IA Flame Tests. Predict the flame colour of each alkali-metal ion, and the effect of cobalt glass, choose your answer, and click Check.
4
Tab 4 — Identify the Unknown. Given a set of test results, predict which ion is present, choose your answer, and click Check.
5
Answer the Team Questions, then complete your report. Include your test observations and the confirmatory test for each ion.

Simulation — The Qualitative Analysis Bench

Qualitative Analysis Virtual LabPredict first, then reveal and compare
Choose a cation test, predict the result, and check.
Choose a test, predict the result, and check.
Choose a test, predict the result, and check.
Read the test results, predict which ion is present, and check.

Team Questions

Work these out with your team, type each answer, and check it.

Question 1. Calcium and barium both give white precipitates with sulfate. What flame colour identifies calcium? (two words)
Question 2. Which reagent gives a yellow precipitate with barium but not with calcium? (two words)
Question 3. What gas is released when an ammonium salt is warmed with sodium hydroxide? (one word)
Question 4. What flame colour does sodium give? (one word)
Question 5. What flame colour does potassium give? (one word)
Question 6. What is viewed through to see the potassium flame when sodium is also present? (two words)
Question 7 — Challenge. An anion gives a white precipitate with silver nitrate that dissolves in ammonia. Which anion is it? (one word)

Example Lab Report

A worked example showing the expected format and the predict-and-check workflow.

Qualitative Analysis: Ca, Ba, K, Ammonium, Anions, and Group IA

Chemistry | Section: [Your Section] | Date: [Date]

Lab Members: [Names of all members present]

Objective — To identify the cations calcium, barium, potassium, and ammonium, the common anions, and the Group IA alkali-metal cations, using characteristic and confirmatory tests, and comparing every prediction with the simulation.

Part A — Cations (worked example)
Calcium and barium both gave white precipitates with sulfate, so they were distinguished by other tests: calcium gave a brick-red flame and no chromate precipitate, while barium gave a pale green flame and a yellow precipitate with potassium chromate. Potassium gave a lilac flame. Ammonium released ammonia on warming with NaOH, turning red litmus blue.

Part B — Anions (worked example)
Sulfate gave a white precipitate with barium chloride, insoluble in acid. Carbonate fizzed with acid, turning limewater milky. Chloride gave a white silver precipitate soluble in ammonia. Nitrate gave a positive brown ring test.

Part C — Group IA (worked example)
Lithium gave a crimson flame, sodium an intense yellow, and potassium a lilac flame. In a sodium-plus-potassium mixture, the sodium yellow masked the potassium until the flame was viewed through blue cobalt glass. Group IA ions gave essentially no precipitation reactions.

Part D — Identify the Unknown (worked example)
Each unknown was identified from its combination of results, for example a brick-red flame with a white sulfate precipitate and no chromate precipitate was calcium. All identifications matched the simulation.

Discussion and Conclusion — Every prediction agreed with the simulation. Ions that behave similarly, especially calcium and barium, were distinguished by combining the flame test and the chromate test, and the Group IA cations were identified by flame colour with cobalt glass used to reveal potassium.

Practice Quiz

For extra practice on this topic, use the interactive Qualitative Analysis quiz in the Quizzes section of the site.