The location in its orbit at which the moon passes from below the plane of Earth's orbit to above that plane is known as the "ascending node". Over about around 18 and a half years, the location of the ascending node precesses around the moon's orbit completely.
Because the rotation axis of Earth is tilted with respect to the plane of its orbit by 23.5 degrees (the cause of the seasons), the moon's orbital tilt, with respect to the Earth's equator, varies over this 18-and-a-half year period between about 18 and 29 degrees.
The moon's orbit around Earth is also slightly eccentric - at perigee (its closest distance to Earth), it's a little over 362,500km from Earth, and at apogee (furthest from Earth), it is almost 405,500km away.
That might not sound like much - about a 10 per cent variation in distance - but it means that the apparent size of the moon in the sky can vary quite markedly, as can be seen below.
The moon is 1737km in mean radius (compared to the Earth's 6371km), making it the fifth largest satellite in the solar system. But even though it is quarter the diameter of Earth, it is significantly less dense than our planet (at roughly 1/81 the mass of Earth).
Even stranger is the fact that the near and far-sides of the moon look so different. The near side, familiar to anyone who has spent any time looking at the night sky, is dominated by the "mare": basalt outpourings that span a large fraction of surface. The far side of the moon, by contrast, looks totally different - a dichotomy that has long puzzled researchers (although a recent study may have come up with an explanation).
Strangest planetary satellite?
In the four centuries that have passed since the discovery of the Galilean satellites (the four moons of Jupiter), the number of satellites known through our solar system has grown to more than 170 moons. And it's not just the planets that have been found to host companions: the solar system's smaller bodies are often accompanied by their own satellites.
The dwarf planet Pluto is now known to have at least five satellites.
Although there are several satellites larger than our moon (Jupiter's Ganymede, Callisto and Io; and Saturn's Titan), those satellites are all dwarfed by their host planet.
In stark contrast, when compared with Earth, the moon is huge.
The other large satellites in the solar system orbit their host planets almost perfectly in the plane of their equator. Yet our moon's orbit is inclined by between 18 degrees and 28 degrees to our equator.
So why is our moon so unusual? Why is it so different to so many of the other satellites in the solar system? The answer lies in the moon's origin - and that's a story we'll return to tomorrow.
Jonti Horner is an astronomer and astrobiologist based at the University of New South Wales, in Sydney.
theconversation.com.au