Observed universe in the context of Isotropy


Observed universe in the context of Isotropy

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⭐ Core Definition: Observed universe

The observable universe is a spherical region of the universe consisting of all matter that can be observed from Earth; the electromagnetic radiation from these astronomical object has had time to reach the Solar System and Earth since the beginning of the cosmological expansion. Assuming the universe is isotropic, the distance to the edge of the observable universe is the same in every direction. That is, the observable universe is a spherical region centered on the observer. Every location in the universe has its own observable universe, which may or may not overlap with the one centered on Earth.

The word observable in this sense does not refer to the capability of modern technology to detect light or other information from an object, or whether there is anything to be detected. It refers to the physical limit created by the speed of light itself. No signal can travel faster than light, hence there is a maximum distance, called the particle horizon, beyond which nothing can be detected, as the signals could not have reached the observer yet.

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Observed universe in the context of Everything

Everything, every-thing, or every thing, is all that exists; it is an antithesis of nothing, or its complement. It is the totality of things relevant to some subject matter. The universe is everything that exists theoretically, though a multiverse may exist according to theoretical cosmology predictions. It may refer to an anthropocentric worldview, or the sum of human experience, history, and the human condition in general. Every object and entity is a part of everything, including all physical bodies and in some cases all abstract objects.

To describe or know of everything as a spatial consideration in a local environment, such as the world in which humans mostly live, is possible. The detemination of all things in the universe is unknown because of the physics beyond the observed universe and the problem of knowing physics at the range infinite. To know universally everything as a temporal and spatial consideration isn't possible because of the unavailabilty of information at a certain time before the beginning of the universe and because of the problem of eternal causality.

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