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Star TOI 5678

Yellow star TOI 5678 is located 535 light years away from the Sun. It is a single star of spectral class G7V, that has 91 % of solar mass. There is at least one exoplanet in this system.
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Sun distance
535 light years

TOI 5678

Spectral class: G7V

Location +

Ascension iconRight ascension: 3h 9m 32.210s
Declination iconDeclination: -34° 11' 54.576'' (southern hemisphere)
Parallax iconParallax: 6.099
Distance iconSun distance: 534.794 ly | 164.0 pc
Star position
The position of a star tells us where it appears in the sky, similar to how we use coordinates like latitude and longitude on Earth. In astronomy, the three main coordinates are right ascension, declination and distance. .. icon More about Star position in StellarGuide

Basic characteristic

icon weight
Mass: 90.5 % M Sun
| 948 M Jupiter
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Star mass
Mass of the star TOI 5678 is 0.905 solar masses.

The mass of a star is the total amount of matter it contains. It is one of the most important properties of a star, as it determines almost everything about how the star lives, changes, and dies. In astronomy, star mass is usually measured in solar masses (M☉) — where 1 solar mass is equal to the mass of our Sun... icon More about Star mass in StellarGuide
radius icon
Size: 94 % R Sun
| 9.3 R Jupiter
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Star size
Radius of the star TOI 5678 is 0.938 solar radii.

The size of a star refers to its radius — the distance from its center to its surface. Star size is usually measured in solar radii (R☉), where 1 solar radius equals approximately 696,000 kilometers. Depending on their type and life stage, stars can be much smaller or larger than the Sun... icon More about Star size in StellarGuide
temperature icon
Temperature: 5485 K | 0.95 T Sun
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Star temperature
Surface temperature of TOI 5678 is 5485 K, which is 95 % of the temperature on the surface of the Sun.

The temperature of a star refers to the temperature at its surface, also called the photosphere. It is measured in kelvins (K), the standard unit for temperature in astronomy. A star’s temperature tells us a lot about its physical properties and where it stands in its evolutionary stage... icon More about Star temperature in StellarGuide

Photometry

Magnitude iconAbsolute magnitude (V): -6.1
Absolute stellar magnitude in different parts of the electromagnetic spectrum from infrared (K band) to ultraviolet (U band).
5
10
15
20
25
30
35
K
2.1
H
1.6
J
1.2
Grp
0.8
I
0.8
G
0.6
V
0.5
Gbp
0.5
B
0.4
U
0.3
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TOI 5678 system structure

TOI 5678
TOI 5678 b 0.25 AU 20 M 4.9 R 47.7 days

More about TOI 5678

Star TOI 5678 is a main sequence star that fuses hydrogen atoms into helium. It is approximately 90 % of the size of Sun and temperature on its surface is around 5485 K (5212 °C), which is about 95 % of Sun's temperature.
       TOI 5678 can be found in southern celestial hemisphere, however it is too dim to be seen with the naked eye or even a small telescope. 
Other designations of this star
2MASS J03093220-3411530, TYC 7022-00871-1, TIC 209464063, Gaia DR3 5048310370810634624
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External sources

Frequently Asked Questions

How far is the TOI 5678 system from the Sun?

The TOI 5678 system is 535 light years or 164.0 parsecs from the Sun.

What galaxy is the TOI 5678 star in?

The TOI 5678 is in the Milky Way galaxy just like the Sun.

How many stars are in the TOI 5678 system?

The TOI 5678 is a single star, there are no other known stars in the system.

What type of star is the TOI 5678?

The star TOI 5678 is a Yellow star star.

What temperature is star TOI 5678?

The star TOI 5678 has an effective temperature of 5485 K. Find out more about the temperature of stars in Stellar guide
Class of stars Yellow star
Sun-like stars belong mainly to spectral type G and are commonly called yellow dwarfs. They have surface temperatures of roughly 5,300–6,000 K (about 5,000–5,700 °C), giving them a slightly yellow-white appearance. With masses typically between about 0.8 and 1.1 times that of the Sun, they sit between hotter, more massive white stars and cooler orange and red stars on the main sequence. The Sun itself is a standard G2V star and serves as the benchmark for understanding the structure and behavior of this stellar class.

These stars generate energy by fusing hydrogen into helium in their cores through the proton–proton chain. Their total lifetimes on the main sequence are around 10 billion years, during which their brightness slowly increases. After exhausting hydrogen in their cores, Sun-like stars expand into red giants, shed their outer layers to form planetary nebulae, and eventually leave behind dense white dwarfs. Many known exoplanet systems orbit Sun-like stars, making them key targets in the search for potentially habitable worlds.
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