Carey reading Hubble for James Webb It has been established with the release of an image of the “Tarzan 1” cluster. The Hubble Space Telescope’s imaging power stands out against James Webb’s equipment.

Hubble Space Telescope has unveiled a new image of a star cluster called Tarzan 1, which appears to be holding its own against James Webb’s new equipment.

This photo was taken on October 10 (October 18) by NASA and the European Space Agency (ESA) that are engaged in a joint operation, has been released. This image shows a globular star cluster, which is located 22,000 light-years from Earth. In this image, the depth of the globular star cluster is shown in much more detail than the previous image, and it also shows a large number of red and old stars. These stars are bound together by their mutual gravity. There is also an amazing color palette of stars of different colors with remarkable clarity in this image.

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Kerry Huan Hubble for James Webb; An exceptional image of a globular cluster was recorded

Globular star clusters usually consist of a collection of about one hundred thousand stars in an almost spherical shape. These clusters are often home to some of the oldest stars in our galaxy, shown in red in the Hubble image, while the bluer stars are younger stars in the foreground that are not part of the cluster. This image has been enlarged. However, taking such a picture of this star cluster has led to James Webb’s interpretation of Hubble’s Carey Reading.

Carey reading Hubble for James Webb
Hubble image of Tarzan 1

These stars are close together. On average, the distance between any two individual stars is about one light-year, a distance roughly equivalent to a quarter of the distance between the Sun and its nearest neighbor, Proxima Centauri.

In this regard, the European Space Agency pointed out that Globular star clusters Like Tarzan 1, they are a rich source of X-rays. Experts have said in this regard: “It seems that these X-rays originate from binary star systems where there is a dense neutron star and an ordinary star in this system.”

A neutron star is actually a very dense remnant created by the explosion of a star that runs out of fuel. The neutron star destroys the material of the companion star, leading to an X-ray burst.

Scientists aren’t sure how many stellar-mass or intermediate-mass black holes are inside globular star clusters like Tarzan 1. This uncertainty is because it is not possible to see black holes because they absorb light instead of emitting it. Therefore, the best way to detect them for a telescope is to observe their gravitational influence on the surrounding stars, which unfortunately is very difficult to do in a globular star cluster due to the density of its stars.

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