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One of the cool facts about gravity is that the gravitational field of a body 'feels' spherical at a distance, even if those bodies are not spherical themselves
by lhd1 26d ago
One of the cool facts about gravity is that the gravitational field of a body 'feels' spherical at a distance, even if those bodies are not spherical themselves. There are higher multipoles but they are increasingly suppressed the further you are from the body. So at least for gravity the spherical approximation turns out to be good and justified.
- DroneBetter 26d agofor simulating gravity in particular you can do one better, since a sphere is in turn gravitationally indistinguishable from a point mass due to the https://en.wikipedia.org/wiki/Shell_theorem#Force_on_a_point_outside_a_hollow_sphere https://en.wikipedia.org/wiki/Shell_theorem#Force_on_a_point...
- lhd1 26d agoand you can do one better than that - Birkhoff's theorem, the relativistic analogue of the shell theorem. https://en.wikipedia.org/wiki/Birkhoff%27s_theorem_(relativity) https://en.wikipedia.org/wiki/Birkhoff%27s_theorem_(relativi...
- naklitechie 26d agoThis deserves a simulator
- setopt 25d agoAh yes, indeed, the well-known point-cow approximation!
- Sharlin 25d agoThe point-cow is simply the zero-dimensional generalization of the spherical cow.
- classified 25d agoHence for all practical purposes, zero-dimensional cows are spherical.
- dguest 25d agoBeyond a "cool fact", this is the only reason that physics works, where I'm defining physics as the human study of physical laws, not the laws themselves. If we couldn't neglect higher moments systems from planetary motion to the large scale structure of the universe would be computationally intractable. And it's not just gravity, it's also electromagnetism: charge arrangements (i.e. ions) look like point charges at a distance, meaning you can neglect the electron orbital structure. Light sources act like point sources at a distance too. A lot of the equations you learn in introductory physics rely on the higher moments vanishing. - The planetary motion equations (Kepler's laws) assume gravity as a point source (the three body problem can be approximated by replacing two of the bodies with 1) - E = mgh -> assumes a homogeneous gravitational field, which is a special case of gravitational monopole near an equipotential surfaced. And of course parabolic motion and pendula only work because this holds.
- sandworm101 25d agoAnd if they were intractable, motions would be so irregular that pheneomena such as billion-year stable orbits would not be possible... leading to a lack of evolution and life generally. So it is a very good and necessary thing that cows remain mathematically spherical.
- lhd1 25d agoThis point of view is essentially codified in effective field theory, which tells us why so much of classical physics (EM, fluids, gravity) can be seen as low order approximations of some more complete theory that we found later on. One of the great insights from 20th century physics imo.