An orange star is hotter than a red star.
An orange star is hotter than a red star, with temperatures reaching around 6,000 to 7,500 degrees Celsius compared to a red star's temperature of about 3,500 to 5,000 degrees Celsius. This difference in temperature affects the color of the stars, with red stars emitting cooler red light and orange stars emitting slightly hotter orange light.
The temperature of a yellow star's photo sphere is hotter than that of and orange star. However the total energy output of an orange star may be greater than that of a yellow star.
Absolute magnitude refers to a measure of the real brightness of a star. In terms of absolute magnitude, a blue-violet star is classified as bright, while an orange-red star is classified as faint.
An orange star is typically cooler than a purple star. Star color is related to temperature, with blue stars being the hottest, followed by white, yellow, orange, and red stars. Purple stars are not common in astronomical classifications, but if we consider purple as a blend of blue and red, then they would likely be hotter than orange stars.
The star Yildun is classified as a white star, which means it emits a white light. White stars are typically hotter than other stars like red or yellow stars.
An orange star is hotter than a red star, with temperatures reaching around 6,000 to 7,500 degrees Celsius compared to a red star's temperature of about 3,500 to 5,000 degrees Celsius. This difference in temperature affects the color of the stars, with red stars emitting cooler red light and orange stars emitting slightly hotter orange light.
It's not. White is the hottest. Then blue, yellow orange, red.
Orange. In fact, these are often still called "red" stars for convenience.
The temperature of a yellow star's photo sphere is hotter than that of and orange star. However the total energy output of an orange star may be greater than that of a yellow star.
Absolute magnitude refers to a measure of the real brightness of a star. In terms of absolute magnitude, a blue-violet star is classified as bright, while an orange-red star is classified as faint.
no the red jiant is hotter
An orange star is typically cooler than a purple star. Star color is related to temperature, with blue stars being the hottest, followed by white, yellow, orange, and red stars. Purple stars are not common in astronomical classifications, but if we consider purple as a blend of blue and red, then they would likely be hotter than orange stars.
The star Yildun is classified as a white star, which means it emits a white light. White stars are typically hotter than other stars like red or yellow stars.
A supergiant star can have different colors depending on its temperature. A hotter supergiant star will appear blue or white, while a cooler supergiant star will appear red or orange.
a blue star is hotter then a red star because it is younger and thus has more energy. a good example of this is when you look at a flame on a lighter you see blue light at the bottom because blue is hottest and closest to the heat source whereas the red-orange flame at the top is farther away from the heat source and thus is not as hot as the blue.
You know, VV cephie is orange, sun is yellow and yellow is brighter than orange and the brighter the star is, the hotter it gets. So sun is hotter than VV cephie.
You can tell if Rigel or Betelgeuse is hotter based on their color. Rigel appears blue-white, indicating a hotter temperature, while Betelgeuse appears orange-red, suggesting a cooler temperature. Additionally, the spectral class of Rigel (B8Ia) is hotter than Betelgeuse's spectral class (M1-2Ia).