QuestionDecember 17, 2025

E What is the total atmospheric pressure if the partial pressures of N_(2),O_(2) , and Ar are 6045 mm Hg. 162.8 mm Hg , 0.5 mm Hg. respectively?

E What is the total atmospheric pressure if the partial pressures of N_(2),O_(2) , and Ar are 6045 mm Hg. 162.8 mm Hg , 0.5 mm Hg. respectively?
E What is the total atmospheric
pressure if the partial pressures of
N_(2),O_(2) , and Ar are 6045 mm Hg.
162.8 mm Hg , 0.5 mm Hg.
respectively?

Solution
4.2(294 votes)

Answer

6208.3\ \text{mm Hg} Explanation 1. Apply Dalton’s Law of Partial Pressures Total pressure is the sum of partial pressures: P_{total} = P_{N_2} + P_{O_2} + P_{Ar}. 2. Substitute Values and Calculate P_{total} = 6045\ \text{mm Hg} + 162.8\ \text{mm Hg} + 0.5\ \text{mm Hg} = 6208.3\ \text{mm Hg}.

Explanation

1. Apply Dalton’s Law of Partial Pressures<br /> Total pressure is the sum of partial pressures: $P_{total} = P_{N_2} + P_{O_2} + P_{Ar}$.<br />2. Substitute Values and Calculate<br /> $P_{total} = 6045\ \text{mm Hg} + 162.8\ \text{mm Hg} + 0.5\ \text{mm Hg} = 6208.3\ \text{mm Hg}$.
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