Skip to main content
Ch.21 - Nuclear Chemistry
Brown - Chemistry: The Central Science 14th Edition
Brown14th EditionChemistry: The Central ScienceISBN: 9780134414232Non è quello che usi tu?Cambia libro di testo
Capitolo 21, Problema 92a

A 25.0-mL sample of 0.050 M barium nitrate solution was mixed with 25.0 mL of 0.050 M sodium sulfate solution labeled with radioactive sulfur-35. The activity of the initial sodium sulfate solution was 1.22⨉106 Bq/mL. After the resultant precipitate was removed by filtration, the remaining filtrate was found to have an activity of 250 Bq/mL. (a) Write a balanced chemical equation for the reaction that occurred.

Guida verificata passo dopo passo
1
Step 1: Identify the reactants and products. The reactants are barium nitrate (Ba(NO3)2) and sodium sulfate (Na2SO4). The product is barium sulfate (BaSO4), which is a precipitate, and sodium nitrate (NaNO3).
Step 2: Write the unbalanced chemical equation. Ba(NO3)2 + Na2SO4 → BaSO4 + NaNO3.
Step 3: Balance the chemical equation. The balanced chemical equation is: Ba(NO3)2 + Na2SO4 → BaSO4 + 2NaNO3. This is because there are 2 nitrate ions on the left side and only 1 on the right side in the unbalanced equation. To balance it, we need to have 2 nitrate ions on both sides, which is achieved by adding a coefficient of 2 in front of NaNO3.
Step 4: Check the balanced equation. There should be the same number of each type of atom on the left side of the equation as on the right side. In this case, there are 1 Ba, 2 N, 6 O, 2 Na, and 4 O on both sides, so the equation is balanced.
Step 5: Understand the context of the problem. The radioactive sulfur-35 is used to track the sulfate ions. The decrease in activity from the initial sodium sulfate solution to the filtrate indicates that some of the sulfate ions have been removed from the solution, presumably by forming the barium sulfate precipitate.

Risposta video verificata per un problema simile:

Questa soluzione video è stata consigliata dai nostri tutor come utile per risolvere questo problema.
Durata del video:
6m

Concetti chiave

Ecco i concetti essenziali che devi comprendere per rispondere correttamente alla domanda.

Precipitation Reactions

Precipitation reactions occur when two soluble salts react in solution to form an insoluble compound, known as a precipitate. In this case, barium nitrate and sodium sulfate react to form barium sulfate, which is insoluble in water. Understanding the solubility rules helps predict which compounds will precipitate during a reaction.
Video consigliato:
Percorso guidato
01:53
Selective Precipitation

Balancing Chemical Equations

Balancing chemical equations is essential to ensure that the number of atoms of each element is conserved in a reaction. This involves adjusting the coefficients of the reactants and products so that they match. For the reaction between barium nitrate and sodium sulfate, the balanced equation reflects the stoichiometry of the reactants and products involved.
Video consigliato:
Percorso guidato
01:32
Balancing Chemical Equations

Radioactive Decay and Activity

Radioactive decay refers to the process by which unstable atomic nuclei lose energy by emitting radiation. The activity of a radioactive sample, measured in becquerels (Bq), indicates the number of decay events per second. In this scenario, the initial and final activities of the sodium sulfate solution provide insight into the distribution of the radioactive sulfur after the precipitation reaction.
Video consigliato:
Percorso guidato
03:00
Rate of Radioactive Decay