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absolute boiling point of ferromagnetic elements

Input interpretation

ferromagnetic elements | absolute boiling point
ferromagnetic elements | absolute boiling point

Results

cobalt | 3200 K (kelvins) gadolinium | 3523 K (kelvins) iron | 3134 K (kelvins) nickel | 3186 K (kelvins)
cobalt | 3200 K (kelvins) gadolinium | 3523 K (kelvins) iron | 3134 K (kelvins) nickel | 3186 K (kelvins)
ferromagnetic elements | absolute boiling point | 3200 K (kelvins) (median)
ferromagnetic elements | absolute boiling point | 3200 K (kelvins) (median)

Unit conversions for median absolute boiling point 3200 K

2900 °C (degrees Celsius)
2900 °C (degrees Celsius)
5300 °F (degrees Fahrenheit)
5300 °F (degrees Fahrenheit)
5700 °R (degrees Rankine)
5700 °R (degrees Rankine)
2300 °Ré (degrees Réaumur)
2300 °Ré (degrees Réaumur)
1540 °Rø (degrees Rømer)
1540 °Rø (degrees Rømer)

Blackbody information for median absolute boiling point 3200 K (kelvins)

  perceived color |  peak wavelength | 910 nm (nanometers) peak frequency | 188 THz (terahertz)
perceived color | peak wavelength | 910 nm (nanometers) peak frequency | 188 THz (terahertz)

Corresponding quantities

Thermodynamic energy E from E = kT:  | 28 ceV (centielectronvolts)
Thermodynamic energy E from E = kT: | 28 ceV (centielectronvolts)
Blackbody energy flux Φ from Φ = σT^4:  | 5.894×10^6 W/m^2 (watts per square meter)
Blackbody energy flux Φ from Φ = σT^4: | 5.894×10^6 W/m^2 (watts per square meter)
Approximate luminous exitance from a planar blackbody radiator perpendicular to its surface:  | 1.583×10^8 lx (lux)
Approximate luminous exitance from a planar blackbody radiator perpendicular to its surface: | 1.583×10^8 lx (lux)