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critical temperature of homonuclear diatomic molecules

Input interpretation

homonuclear diatomic molecules | critical temperature
homonuclear diatomic molecules | critical temperature

Summary

median | 154.59 K highest | 819 K (iodine) lowest | 32.97 K (hydrogen) distribution |
median | 154.59 K highest | 819 K (iodine) lowest | 32.97 K (hydrogen) distribution |

Units

Ranked values

 | | visual | ratios |  7 | hydrogen | | 0.0403 | 1 6 | nitrogen | | 0.154 | 3.828 5 | fluorine | | 0.176 | 4.372 4 | oxygen | | 0.189 | 4.689 3 | chlorine | | 0.509 | 12.64 2 | bromine | | 0.72 | 17.8 1 | iodine | | 1 | 24.8
| | visual | ratios | 7 | hydrogen | | 0.0403 | 1 6 | nitrogen | | 0.154 | 3.828 5 | fluorine | | 0.176 | 4.372 4 | oxygen | | 0.189 | 4.689 3 | chlorine | | 0.509 | 12.64 2 | bromine | | 0.72 | 17.8 1 | iodine | | 1 | 24.8

Critical temperature rankings

1 | hydrogen | 32.97 K 2 | nitrogen | 126.21 K 3 | fluorine | 144.13 K 4 | oxygen | 154.59 K 5 | chlorine | 416.9 K 6 | bromine | 588 K 7 | iodine | 819 K
1 | hydrogen | 32.97 K 2 | nitrogen | 126.21 K 3 | fluorine | 144.13 K 4 | oxygen | 154.59 K 5 | chlorine | 416.9 K 6 | bromine | 588 K 7 | iodine | 819 K

Unit conversions for median critical temperature 154.59 K

-118.56 °C (degrees Celsius)
-118.56 °C (degrees Celsius)
-181.41 °F (degrees Fahrenheit)
-181.41 °F (degrees Fahrenheit)
278.26 °R (degrees Rankine)
278.26 °R (degrees Rankine)
-94.85 °Ré (degrees Réaumur)
-94.85 °Ré (degrees Réaumur)
-54.744 °Rø (degrees Rømer)
-54.744 °Rø (degrees Rømer)

Comparison for median critical temperature 154.59 K

24 K below coldest recorded temperature on Earth (-94.7 °C)
24 K below coldest recorded temperature on Earth (-94.7 °C)
17 K above Hg-Tl-Ba-Ca-Cu-oxide superconducting temperature (138 K)
17 K above Hg-Tl-Ba-Ca-Cu-oxide superconducting temperature (138 K)
30 K above Tl-Ba-Cu-oxide superconducting temperature (125 K)
30 K above Tl-Ba-Cu-oxide superconducting temperature (125 K)

Corresponding quantities

Thermodynamic energy E from E = kT:  | 13 meV (millielectronvolts)
Thermodynamic energy E from E = kT: | 13 meV (millielectronvolts)
Blackbody energy flux Φ from Φ = σT^4:  | 32 W/m^2 (watts per square meter)
Blackbody energy flux Φ from Φ = σT^4: | 32 W/m^2 (watts per square meter)
Approximate luminous exitance from a planar blackbody radiator perpendicular to its surface:  | 2.1×10^-47 lx (lux)
Approximate luminous exitance from a planar blackbody radiator perpendicular to its surface: | 2.1×10^-47 lx (lux)