Editing Talk:2035: Dark Matter Candidates
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:The mass of neutron stars is well understood. A smaller star ends at a white dwarf and the big ones produce a black hole. Nonetheless our sun will end up into a white dwarf and the others require higher masses as in the buzzkill range at the graph. --[[User:Dgbrt|Dgbrt]] ([[User talk:Dgbrt|talk]]) 22:32, 20 August 2018 (UTC) | :The mass of neutron stars is well understood. A smaller star ends at a white dwarf and the big ones produce a black hole. Nonetheless our sun will end up into a white dwarf and the others require higher masses as in the buzzkill range at the graph. --[[User:Dgbrt|Dgbrt]] ([[User talk:Dgbrt|talk]]) 22:32, 20 August 2018 (UTC) | ||
::My point exactly - we now know quite a bit about the mass needed and process required to form a neutron star, making it unlikely the same mass would be able to form a black hole. I think that's what Randall meant in that part of the chart, but that's not what the explanation states. (Unfortunately, I've reached the point where I no longer want to argue with other editors over correct explanations.) [[User:Ianrbibtitlht|Ianrbibtitlht]] ([[User talk:Ianrbibtitlht|talk]]) 23:55, 20 August 2018 (UTC) | ::My point exactly - we now know quite a bit about the mass needed and process required to form a neutron star, making it unlikely the same mass would be able to form a black hole. I think that's what Randall meant in that part of the chart, but that's not what the explanation states. (Unfortunately, I've reached the point where I no longer want to argue with other editors over correct explanations.) [[User:Ianrbibtitlht|Ianrbibtitlht]] ([[User talk:Ianrbibtitlht|talk]]) 23:55, 20 August 2018 (UTC) | ||
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; The Mysterious Eight Ball | ; The Mysterious Eight Ball | ||
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:My interpretation: "Black holes above a certain size would be impossible to miss [by astronomers]". In other words, the observations of astronomers rule out any dark matter candidates in that mass range. What a buzzkill, those astronomers, making those observations... [[User:Ahiijny|Ahiijny]] ([[User talk:Ahiijny|talk]]) 19:47, 22 August 2018 (UTC) | :My interpretation: "Black holes above a certain size would be impossible to miss [by astronomers]". In other words, the observations of astronomers rule out any dark matter candidates in that mass range. What a buzzkill, those astronomers, making those observations... [[User:Ahiijny|Ahiijny]] ([[User talk:Ahiijny|talk]]) 19:47, 22 August 2018 (UTC) | ||
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(Spoiler alert for the movie "2001: A Space Odyssey") The monoliths in the movie were not just the three individual monoliths mentioned here. Near the end of the movie, a huge number of them appeared around, and apparently merged into, Jupiter. The added mass of the swarm of monoliths is what allowed Jupiter to initiate fusion, transforming it into the star Lucifer. So, the idea of "monoliths" being a source for dark matter is a joke on the final component of the plot of 2001, not just a vague reference. [https://en.wikipedia.org/wiki/Monolith_(Space_Odyssey) Wikipedia entry on Monolith (Space Odyssey)] [[User:DanShock|DanShock]] ([[User talk:DanShock|talk]]) 19:05, 23 August 2018 (UTC) | (Spoiler alert for the movie "2001: A Space Odyssey") The monoliths in the movie were not just the three individual monoliths mentioned here. Near the end of the movie, a huge number of them appeared around, and apparently merged into, Jupiter. The added mass of the swarm of monoliths is what allowed Jupiter to initiate fusion, transforming it into the star Lucifer. So, the idea of "monoliths" being a source for dark matter is a joke on the final component of the plot of 2001, not just a vague reference. [https://en.wikipedia.org/wiki/Monolith_(Space_Odyssey) Wikipedia entry on Monolith (Space Odyssey)] [[User:DanShock|DanShock]] ([[User talk:DanShock|talk]]) 19:05, 23 August 2018 (UTC) | ||
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