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Can neutron stars create an equivalent of type 1a supernovae How do we know the shape of the oort cloud?. Can you land on venus without a parachute

How do we know the shape of the oort cloud Listen to this episode of weekly space hangout audio for free on ivoox After several decades of observation, astronomers have concluded that quasars are a

Very powerful and compact sources of energy at the centers of distant galaxies b

Projectiles shot out of our own galaxy and moving out into intergalactic space c Energetic collisions of comets in the oort cloud d A completely baffling mystery with no. Typically, you can expect a star to pass through (or near) the oort cloud every hundred thousand years

Very close flybys (like within 52,000 au, happen more rarely—about every nine million years. The outer cloud is only loosely bound to the sun, making the interchange of cometary materials between stars a likely event over the aeons, while gravitational nudges from passing stars can dislodge comets in the other direction as well, causing them to move toward the inner system Crash course astronomy #32 in the aftermath of a some stars we find a weird little object known as a neutron star. The oort cloud isn’t just a distant shell of ice and rock—it’s a window into our past and a key to understanding planetary systems beyond our own

Other stars likely have their own oort clouds, formed in similar ways

By studying our own cloud, we can gain insight into the processes that shape solar systems throughout the galaxy. And in q&a+, what's going on with 3i/atlas' weird tail situation? Get more from fraser cain on patreon[q&a+] landing on venus, neutron stars going boom, shape of the oort cloud | q&a 357 Stars have in the past passed within 1 light year from the sun, and will do so in the future too

If they have oort clouds, would there not be interactions between their oort cloud objects and the planets of the solar system For example, the outer edge of the sun's oort cloud is approximately 100,000 au away So, if another star comes at a distance of 1 light year from the sun, its oort cloud. There have been about 10000 stars passing through the oort cloud, and they will cause some disruption to the cometary nuclei that are orbiting out there

But space is big, and so most of the objects that are in the oort cloud will never come close to another star, and remain in the outer solar system.

Nemesis, the hypothetical death star, is supposed to be a massive body that orbits the sun at long distances and periodically sends comets from the oort cloud into the inner solar system The oort cloud is a theoretical sphere of icy planetesimals that is thought to surround the solar system at distances between 200,000 and 50,000 au With a massive object such as a neutron star, if it enters the solar system sufficiently, there is a significant chance for any planet near its path to be captured by the neutron star, ejected from the solar system, or to take up a new, potentially eccentric orbit Additionally, we may need to be concerned about the neutron star's jet cones, which emit highly energetic particles and radiation.

Unlike the scattered disk and the distant oort cloud, the kuiper belt lies relatively close to the ecliptic plane, making it more accessible for observational studies Differences from the oort cloud while both the kuiper belt and the oort cloud are reservoirs of icy bodies, they differ significantly in terms of structure, composition, and origin. Imdb is the world's most popular and authoritative source for movie, tv and celebrity content Find ratings and reviews for the newest movie and tv shows

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As other stars pass through the oort cloud, they may potentially send some of the objects there on a collision course with earth Artist’s impression of the oort cloud, a vast spherical reservoir of icy bodies in the outer solar system. If this is the case, then it is worth asking whether the lack of.

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