Problem
Tides. Explain why there are two tides a day, one while the Moon is overhead and the other on the opposite side of the Earth.
The Earth deforms into two bulges: one towards the Moon, one on the opposite side.
Solution
The key is that the Moon’s gravitational force is not uniform across the Earth: it depends on distance as , so it is stronger on the side near the Moon and weaker on the far side relative to the Earth’s centre.
Letting be the Earth-Moon distance and the Earth’s radius, the Moon’s acceleration at the three points (near side, centre, far side) is:
It is best to reason in the reference frame of the Earth’s centre, which falls towards the Moon with acceleration . In this frame only the differences relative to the centre matter (tidal accelerations):
- On the near side : the water is pulled towards the Moon (relative to the centre) → tidal bulge.
- On the far side : the water is pulled less than the centre, so it “lags behind” and piles up on the opposite side → second bulge, symmetric.
Two water bulges thus form, aligned with the Moon, on opposite sides of the Earth. The Earth rotates on its axis in h: every point on the surface passes through both bulges in one day, thus experiencing two high tides (and two low tides) a day.
Links
Topics: Gravitation Concepts: Law of universal gravitation Skills: Analysis of limiting cases and speculative physics