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what can you conclude from this experiment? a. the precipitate formed c…

Question

what can you conclude from this experiment?
a. the precipitate formed closest to the hydrochloric acid (hcl) because its greater molecular weight (36.5 g/mol) made it unable to diffuse as far as ammonia (\text{nh}_3) (\sim 17 g/mol)
b. the precipitate formed closest to the ammonia (\text{nh}_3) because its greater molecular weight (\sim 17 g/mol) made it unable to diffuse as far as hydrochloric acid (hcl) (36.5 g/mol)
c. the precipitate formed midway between the hydrochloric acid (hcl) and ammonia (\text{nh}_3) because molecular weight does not affect the rate of diffusion in a gas

Explanation:

Analyze the experimental setup

Using the Gas Diffusion Experiment knowledge point
The question asks for a conclusion from a classic laboratory experiment involving the diffusion of hydrochloric acid (\(\text{HCl}\)) gas and ammonia (\(\text{NH}_3\)) gas inside a glass tube. When these two gases meet, they react to form a white solid precipitate of ammonium chloride (\(\text{NH}_4\text{Cl}\)):

$$ \text{NH}_3(g) + \text{HCl}(g) ightarrow \text{NH}_4\text{Cl}(s) $$

Apply Graham's Law of Effusion

Using the Grahams Law of Effusion knowledge point
According to Graham's Law, the rate of diffusion of a gas is inversely proportional to the square root of its molar mass:

$$ \text{Rate} \propto \frac{1}{\sqrt{M}} $$
  • Molar mass of \(\text{NH}_3 \approx 17\text{ g/mol}\) (lighter, so it diffuses faster and farther).
  • Molar mass of \(\text{HCl} \approx 36.5\text{ g/mol}\) (heavier, so it diffuses slower and a shorter distance).

Because \(\text{HCl}\) is heavier and diffuses more slowly, the meeting point (where the white precipitate forms) will be closer to the source of the \(\text{HCl}\) gas.

Evaluate the given options

Using the Gas Diffusion Experiment knowledge point

  • Option A states: "The precipitate formed closest to the hydrochloric acid (\(\text{HCl}\)) because its greater molecular weight (\(36.5\text{ g/mol}\)) made it unable to diffuse as far as ammonia (\(\text{NH}_3\)) (\(\sim 17\text{ g/mol}\))". This matches our physical principles.
  • Option B incorrectly states that the precipitate forms closest to the ammonia due to its greater molecular weight, which is factually incorrect since ammonia is lighter.
  • Option C incorrectly states that the precipitate forms midway because molecular weight does not affect the rate of diffusion.

Answer:

  • (A) The precipitate formed closest to the hydrochloric acid (HCl) because its greater molecular weight (36.5 g/mol) made it unable to diffuse as far as ammonia (\(\text{NH}_3\)) (\(\sim 17\) g/mol) (Correct answer)
  • (B) The precipitate formed closest to the ammonia (\(\text{NH}_3\)) because its greater molecular weight (\(\sim 17\) g/mol) made it unable to diffuse as far as hydrochloric acid (HCl) (36.5 g/mol)
  • (C) The precipitate formed midway between the hydrochloric acid (HCl) and ammonia (\(\text{NH}_3\)) because molecular weight does not affect the rate of diffusion in a gas