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What volume of oxygen at 423.0 $K$ and a pressure of 127.4 $\mathrm{kPa}$ is produced by the decomposition of 129.7 $g$ of $\mathrm{BaO}_{2}$ to BaO and $\mathrm{O}_{2} ?$

10.57 $\mathrm{L}$

01:08

Aadit S.

Chemistry 101

Chapter 9

Gases

Drexel University

University of Maryland - University College

University of Kentucky

Lectures

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we're continuing on with the ideal gas equation that is PV people to an R T. So all moles is equal to the model is the mass divided by the molar mass that's maths abided by smaller Mass. So, for example, here we have 1 to 9.7 g mass, divided by 169.33 grams tumult that gives us miles off not 0.766 miles. Therefore, the amount of they're too produced is 9.766 divided by two. So we get not 0.383 miles about two. So now jumping onto a fresh page, looking at the ideal gas equation now, while we've rearranged a fee, is an arty of P substitute on our values for volume is not 0.383 miles. What's what by 8.314 Killer Past girl Elita Kelvin Permal What's whereby? 4th, 23 Calvin. That's then all divided by 1 to 7.4 Killer Paskah. So we're just looking your numbers into this equation at the very top. That's hard. I didn't pink, so I volume is 10.57 liters

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