a. State the assumptions which are made when describing an ideal gas. Which gases behave mostly ideal? b. The pressure of 5.3 g of air are filled in a 3 L reactor. The pressure is measured as a function of the temperature. T/°C 20 40 60 80 100 p/torr 987 1033 1141 1189 1276 Assuming ideal gas behaviour, calculate the molar mass of air. Calculate the composition of air, assuming that it only consists of N₂ and O2.

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Hallo, this question is about ideal gas law and for the values I need to use Excel and draw a graph but I didn't understand. Can you help ? Thanks.

a. State the assumptions which are made when describing an ideal gas. Which gases
behave mostly ideal?
b. The pressure of 5.3 g of air are filled in a 3 L reactor. The pressure is measured as
a function of the temperature.
T/°C
20
40
60
80
100
p/torr
987
1033
1141
1189
1276
Assuming ideal gas behaviour, calculate the molar mass of air. Calculate the
composition of air, assuming that it only consists of N2 and O2.
Transcribed Image Text:a. State the assumptions which are made when describing an ideal gas. Which gases behave mostly ideal? b. The pressure of 5.3 g of air are filled in a 3 L reactor. The pressure is measured as a function of the temperature. T/°C 20 40 60 80 100 p/torr 987 1033 1141 1189 1276 Assuming ideal gas behaviour, calculate the molar mass of air. Calculate the composition of air, assuming that it only consists of N2 and O2.
Expert Solution
Step 1: Introduction to ideal gas

An ideal gas is a theoretical concept used in chemistry to describe the behavior of gases under certain simplified conditions. The behavior of an ideal gas is governed by the ideal gas law, which relates the pressure (P), volume (V), temperature (T), and the number of moles (n) of gas particles. The ideal gas law is often written as:

PV = n RT

Where:

  • P is the pressure of the gas.
  • V is the volume it occupies.
  • n is the number of moles of gas.
  • R is the ideal gas constant, a constant that depends on the units used for pressure, volume, and temperature.
  • T is the absolute temperature in Kelvin.
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