2. a. Given the following composition, calculate the average molar mass of air. Molar ratio: Nitrogen: 78%, oxygen: 21%, argon: 0.93%, carbon dioxide: 0.04%, and water. I b. Calculate the concentration of CO2 in ppm. c. Imagine a parallel universe, in which nitrogen has a structure similar to P4. What kind of changes would you expect in the composition of air and earth's crust? d. Assume that there is hypothetical Ns molecule, in which each nitrogen atom makes a total of 3 bonds since it is a group V element. Draw a feasible structure for N8.

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Chapter1: Chemical Foundations
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2. a. Given the following composition, calculate the average molar mass of air.
Molar ratio: Nitrogen: 78%, oxygen: 21%, argon: 0.93%, carbon dioxide: 0.04%,
and water.
I
b. Calculate the concentration of CO2 in ppm.
c. Imagine a parallel universe, in which nitrogen has a structure similar to P4.
What kind of changes would you expect in the composition of air and earth's
crust?
d. Assume that there is hypothetical Ns molecule, in which each nitrogen atom
makes a total of 3 bonds since it is a group V element. Draw a feasible structure
for N8.
Transcribed Image Text:2. a. Given the following composition, calculate the average molar mass of air. Molar ratio: Nitrogen: 78%, oxygen: 21%, argon: 0.93%, carbon dioxide: 0.04%, and water. I b. Calculate the concentration of CO2 in ppm. c. Imagine a parallel universe, in which nitrogen has a structure similar to P4. What kind of changes would you expect in the composition of air and earth's crust? d. Assume that there is hypothetical Ns molecule, in which each nitrogen atom makes a total of 3 bonds since it is a group V element. Draw a feasible structure for N8.
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