Mysterious MilkyWay Warp Finally Explained?
* * Beatles-Beatles writes to tell us Space.com is reporting that scientists think that a collision between mysterious 'dark matter' and two of the Milky Way's nearby neighbors may be causing our galaxy to warp 'like a vinyl record left out in the hot Sun.' From the article: 'The warp is most clearly visible in a thin disk of hydrogen gas that extends across the entire 200,000-light-year diameter of the Milky Way. Viewed sideways, one half of the hydrogen disk appears to stick up above our galaxy's plane of stars and gas, while the other half dips below the plane for a bit and then rises upward again farther away from the galaxy's center.'"
the galaxy's general "flat" shape is visible from the milky way being a thin line in the sky. finding out our location in the milky way is a more interesting proposition. due to the obscuring clouds of interstellar matter, we do not see the milky way being brighter on one side or the other, so it appears to be equally bright on both sides. the first indication of us being located toward the rim was the fact that the globular clusters that we observe are mostly on one side of us. when we discovered methods for measuring distances (based on the relationship between the length of a period of a type of star called the "cepheid variable" and its brightness) [first established by astronomer Leavitt], we could measure their distance from us and create a three dimensional map of the globular clusters' location in the sky. using this method, it was determined that the globular clusters are distributed with spherical symmetry about a point in the plane of the milky way (a point which was, as it happens, quite far from our own solar system). by observing that globular clusters are symmetrically distributed around the centers of other spiral galaxies (most notably the andromeda galaxy), we make the inference that our globular clusters' distribution is also centered on the center of our galaxy - and thus we determine our position relative to the center of the milky way.
:)
well, at least that's how it went down at the beginning of the 20th century. a decade or two later when radio telescopy was developed, we were able to observe these things in a more direct fashion. but it is interesting to follow the historical development of our own location in the galaxy.
Boy, this thread is a trip. Parent's math is bunkum and your assertation which I directly quote above is also incorrect. Redshift has NOTHING to do with parallax measurements of distance, which can be calculated to many significant digits. Voodoo indeed. Don't believe everything you read on the internet that's modded +5, Informative...
it's a blue bright blue Saturday hey hey
Yeah, ok, pure psuedo-science.
(probably just a typo, but you don't really think light travels at 186 miles per second, do you?)
The acoustic doppler effect you labor on about is a simplistic model that may help the layperson grossly visualize concepts like em redshift, but it should not be assumed that a remotely similar process is at work when considering topics like stellar spectroscope shift. Audible sound represents a compression wave which propogates through a medium; electromagnetic energy does not. It can interact with matter, but it exists as a separate entity and is not a mechanical process. While field equations share some fundamental aspects with wave mechanics, this does not make them the same thing. Mathematically, there are many instances in nature where similar functions and constants are "re-used"; and generally one can simply attribute such similarities to thermodynamics (i.e. if stars were naturally square, this would violate the laws of thermodynamics).
While inter-stellar distance calculations based on stellar spectroscopy are certainly capable of being inaccurate for a number of reasons, the science behind these is based on a number of core principals wherein the speed of light is largely irrelevant for determining that the model fits (in one form or another):
1. Spectroscopy: A well studied, deterministic science with which one is capable of determining elemental components based on electromagnetic frequency distribution. The spectroscopic fingerprint is "hard"; e.g. there exist no in-between spectroscopic gradients between two elements, any more than there exist magic elements "in-between" those identified on a periodic table.
2. Red-shift occurs when an emitting object is receeding from the reference frame of an observer. This has been demonstrated experimentally and is reproducible.
3. Intersteller objects which are known to be receeding via parallax measurement exhibit redshift. Their spectroscopy