Suppose you have a mixture of two gases, gas A and gas B, in a container. The total pressure of the mixture is 1.2 atm and the partial pressure of gas A is 0.43 atm. If there are 3.5 total moles of gas particles, how many moles of gas B are in the containerI

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Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
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Chapter1: Chemical Foundations
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**Problem Statement:**

Suppose you have a mixture of two gases, gas A and gas B, in a container. The total pressure of the mixture is 1.2 atm, and the partial pressure of gas A is 0.43 atm. If there are 3.5 total moles of gas particles, how many moles of gas B are in the container?

**Diagram:**

The image shows a container filled with a mixture of two types of gas particles, represented as different colored shapes. This visual aids in understanding the scenario of mixing gases.

**Answer Choices:**

- 2.7 mol
- 2.2 mol
- 1.3 mol
- 3.5 mol
- 0.43 mol

Use the partial pressure law and mole fraction to solve for the moles of gas B.
Transcribed Image Text:**Problem Statement:** Suppose you have a mixture of two gases, gas A and gas B, in a container. The total pressure of the mixture is 1.2 atm, and the partial pressure of gas A is 0.43 atm. If there are 3.5 total moles of gas particles, how many moles of gas B are in the container? **Diagram:** The image shows a container filled with a mixture of two types of gas particles, represented as different colored shapes. This visual aids in understanding the scenario of mixing gases. **Answer Choices:** - 2.7 mol - 2.2 mol - 1.3 mol - 3.5 mol - 0.43 mol Use the partial pressure law and mole fraction to solve for the moles of gas B.
Expert Solution
Step 1

Given :- 

total moles of gaseous mixture = 3.5 mol 

total pressure = 1.2 atm 

partial pressure of Gas A = 0.43 atm 

To be calculated : 

number of moles of Gas B

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