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If you are refering to the Cosmological Argument for the Existance of God then the cosmological argument would go something like this.

1. Whatever begins to exist has a cause

2. The universe began to exist

conclusion. The universe has a cause

Someone using this argument would say that the universe began with the big bang which is largely accepted by scientists, so if this argument is sound, then they must accept that the universe has a cause, and thus a causer (creator/God)

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15y ago

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hi i am minakshi the answer is that the cosmological principal the cosmic back ground microwave radiation supports the big bang theory as it sends those signals which are the left over of big bangs these signals are send through cosmic background explorer through radars and then signals are studied by the astronomers and it gives us the idea that what really happened in the time of big bang.the other observation is that the universe looks same from every point or from all directions.

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12y ago
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The assumption made in most theories of cosmology that the universe is homogeneous on a large scale support the big bang theory as according to big bang theory the universe matter is finite from every where

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12y ago
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Mainly that the cosmic microwave background radiation agrees closely with that which is expected, assuming there has been a big bang.

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13y ago
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the universe is expanding

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10y ago
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Q: How does the assumption made in most theories of cosmology that the universe is homogeneous on a large scale support the big bang theory?
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The concept that on the grandest of scales the universe is similar in appearance everywhere is?

The concept you are referring to is known as the cosmological principle, which states that the universe is homogeneous (same in all locations) and isotropic (looks the same in all directions) on large scales. This principle forms the basis for our understanding of the large-scale structure of the universe and is a key assumption in cosmology.


What are the currents theories of Cosmology?

Current theories of cosmology include the Big Bang theory, which posits that the universe began as a singularity and has been expanding ever since; the inflationary theory, which suggests that the universe underwent a rapid expansion in its early stages; and the concept of dark matter and dark energy, which are thought to make up the majority of the universe's mass and energy. These theories, along with ongoing research and observations, shape our understanding of the origins and evolution of the universe.


What is the scientific study of the universe?

The scientific study of the universe is known as cosmology. Cosmology seeks to understand the origin, evolution, and eventual fate of the universe as a whole, typically through observations, theories, and computer simulations. It covers topics such as the Big Bang theory, dark matter, dark energy, and the large-scale structure of the cosmos.


What is the study of life in the universe?

You are probably going for the term cosmology, which is the study of the universe as it is now. This study includes all of the mass of the universe, but not in the sense of focusing on the study of individual things on the micro level. Cosmology can deals with theories of the development and possible end of the universe. The technical term for the study of the origins of the universe is cosmogony, although informally the term cosmology covers this as well.Answer:The universe is composed of matter and energy. Physics is the science of matter and energy and of interactions between the two, grouped in traditional fields such as acoustics, optics, mechanics, thermodynamics, and electromagnetism, as well as in modern extensions including atomic and nuclear physics, cryogenics, solid-state physics, particle physics, and plasma physics.


What is relativistic cosmology?

Relativistic cosmology is the study of the universe as a whole using Einstein's theory of general relativity. It describes the large-scale structure and evolution of the universe, including topics such as the expansion of space, the cosmic microwave background radiation, and the formation of galaxies and galaxy clusters. The field aims to understand the nature of the universe and its history.