Problem
The mass of the atmosphere. Atmospheric pressure at sea level is and the Earth’s radius is . (a) Argue why is exactly the weight of all the air above you per unit area. (b) Estimate the total mass of the atmosphere. (c) Compare with the mass of the Earth () and discuss the result.
Solution
Step 1 — Meaning of pressure (a). Consider a vertical air column of cross-section extending from the ground to the edge of the atmosphere. That column is in equilibrium: its base pushes on the ground with a force equal to its own weight . The pressure at the ground is force over area,
that is, exactly the weight of the overlying air per unit area. This holds at every point of the Earth’s surface.
Step 2 — From pressure to total mass (b). Summing over the whole Earth’s surface , the total weight of the atmosphere is , and so the mass is
Step 3 — Numerical calculation. With , , :
Step 4 — Comparison with the Earth (c). Comparing with the Earth’s mass :
The atmosphere thus weighs about one millionth of the Earth’s mass: an extremely thin film compared with the mass of the solid planet, yet enough to exert at ground level the pressure of (about per square metre).
Correction (textbook key) : it is wrong by about three orders of magnitude. The correct calculation gives (real value ). The typo should be corrected to .
The textbook key reports
Linked notes
Topics: Fluidostatica e fluidodinamica Concepts: Pressione Skills: Stime di Fermi