Yes dwarf has higher temperature
Yes, Rigel has a much higher luminosity than the Sun, being around 120,000 times more luminous. However, it also has a lower surface temperature than the Sun, with a surface temperature of around 11,000 Kelvin compared to the Sun's temperature of approximately 5,500 Kelvin.
Aldebaran has a higher luminosity and a lower surface temperature than the Sun. Rigel has a higher luminosity but a higher surface temperature than the Sun. Bernard's Star and Alpha Centauri have lower luminosity and higher surface temperatures compared to the Sun.
The higher the altitude the lower the temperature.
No.
Yes dwarf has higher temperature
Yes dwarf has higher temperature
Heat energy moves from a higher temperature to a lower temperature due to the nature of conductivity. Cold surfaces can always conduct heat from a hot surface.
Yes dwarf has higher temperature
Yes, Rigel has a much higher luminosity than the Sun, being around 120,000 times more luminous. However, it also has a lower surface temperature than the Sun, with a surface temperature of around 11,000 Kelvin compared to the Sun's temperature of approximately 5,500 Kelvin.
Aldebaran has a higher luminosity and a lower surface temperature than the Sun. Rigel has a higher luminosity but a higher surface temperature than the Sun. Bernard's Star and Alpha Centauri have lower luminosity and higher surface temperatures compared to the Sun.
No, energy does not naturally flow as heat from a lower temperature to a higher temperature. Heat energy always flows from a higher temperature to a lower temperature in accordance with the second law of thermodynamics.
It boils at a lower temperature because of the less energy needed.
Thermal energy always flows from higher temperature to lower temperature. This is the nature of heat.
A temperature of 20 degrees Fahrenheit is equal to a temperature of -6.67 degrees Celsius.
lower
The higher the altitude the lower the temperature.