Typical Speed of Air Molecules at Different Elevations

In summary, the typical speed of air molecules in a room is approximately 500 m/s and at Mt. Everest, it is around 290 m/s. This is due to the difference in potential energy and the constant temperature.
  • #1
kasse
384
1
a) Show that the typical speed of air molecules in the room where you're sitting is about 500 m/s.

b) Show that the typical speed is about 420 m/s at Mt. Everest. (Neglect the temperature difference between sea level and mountaintop, and assume that the air consists of only nitrogen molecules).


a)

[tex]\frac{3}{2}k_B T_R = \frac{1}{2}mv^2 \Rightarrow \sqrt{\left\langle v^2 \right\rangle} \approx 500 m/s[/tex] CORRECT

b)

At Mt. Everest (9000 m) some of the kinetic energy has been transported to potential energy. A [tex]N_2[/tex] molecule has mass 4.7E-26 kg, so that

[tex]
\Delta U = mgh = 4.7E-26 kg \cdot 9.81 m/s^2 \cdot 9000 m = 4.15E-21 J.
[/tex]

Hence the average kinetic energy of a nitrogen molecules up there are 6.15E-21 J - 4.15E-21 J = 2.0E-21 J, and

[tex]2.\cdot 10^{-21} J = \frac{1}{2}mv^2 \Rightarrow \sqrt{\left\langle v^2 \right\rangle} \approx 290 m/s[/tex] WRONG
 
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  • #2
Try using a relation between pressure and average velocity since T is constant.
 

Related to Typical Speed of Air Molecules at Different Elevations

What is the typical speed of air molecules at sea level?

The typical speed of air molecules at sea level is around 500 meters per second (m/s). This speed can vary depending on factors such as temperature and air pressure.

How does the speed of air molecules change at higher elevations?

As elevation increases, the speed of air molecules decreases. This is due to a decrease in air pressure at higher altitudes, which results in fewer air molecules colliding and moving at slower speeds.

What is the relationship between air temperature and the speed of air molecules?

The speed of air molecules is directly proportional to the temperature of the air. This means that as temperature increases, the speed of air molecules also increases.

What instruments are used to measure the speed of air molecules at different elevations?

Scientists use instruments such as anemometers and pitot tubes to measure the speed of air molecules at different elevations. These instruments can measure the velocity of air molecules and provide data for further analysis.

How does the speed of air molecules affect weather patterns?

The speed of air molecules plays a crucial role in weather patterns. As air molecules move at different speeds, they can create areas of high and low pressure, which in turn affects wind patterns and precipitation. Changes in the speed of air molecules can also impact temperature and humidity levels, leading to different weather conditions.

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