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melting point of actinides

Input interpretation

actinides | melting point
actinides | melting point

Summary

median | 1050 °C highest | 1750 °C (thorium) lowest | 640 °C (plutonium) distribution |
median | 1050 °C highest | 1750 °C (thorium) lowest | 640 °C (plutonium) distribution |

Plot

Plot
Plot

Distribution plots

  (melting point in degrees Celsius)
(melting point in degrees Celsius)

Melting point rankings

1 | plutonium | 640 °C 2 | neptunium | 644 °C 3 | nobelium | 827 °C 4 | mendelevium | 827 °C 5 | einsteinium | 860 °C 6 | californium | 900 °C 7 | berkelium | 1050 °C 8 | actinium | 1050 °C 9 | uranium | 1135 °C 10 | americium | 1176 °C 11 | curium | 1345 °C 12 | fermium | 1527 °C 13 | protactinium | 1572 °C 14 | lawrencium | 1627 °C 15 | thorium | 1750 °C
1 | plutonium | 640 °C 2 | neptunium | 644 °C 3 | nobelium | 827 °C 4 | mendelevium | 827 °C 5 | einsteinium | 860 °C 6 | californium | 900 °C 7 | berkelium | 1050 °C 8 | actinium | 1050 °C 9 | uranium | 1135 °C 10 | americium | 1176 °C 11 | curium | 1345 °C 12 | fermium | 1527 °C 13 | protactinium | 1572 °C 14 | lawrencium | 1627 °C 15 | thorium | 1750 °C

Unit conversions for median melting point 1050 °C

1323 K (kelvins)
1323 K (kelvins)
1922 °F (degrees Fahrenheit)
1922 °F (degrees Fahrenheit)
2382 °R (degrees Rankine)
2382 °R (degrees Rankine)
840 °Ré (degrees Réaumur)
840 °Ré (degrees Réaumur)
558.7 °Rø (degrees Rømer)
558.7 °Rø (degrees Rømer)

Comparison for median melting point 1050 °C

250 °C below to 350 °C above typical temperature of magma (700 to 1300 °C)
250 °C below to 350 °C above typical temperature of magma (700 to 1300 °C)
150 °C above large log fire temperature (1170 K)
150 °C above large log fire temperature (1170 K)

Blackbody information for median melting point 1050 °C (degrees Celsius)

  perceived color |  peak wavelength | 2.19 µm (micrometers) peak frequency | 77.79 THz (terahertz)
perceived color | peak wavelength | 2.19 µm (micrometers) peak frequency | 77.79 THz (terahertz)

Corresponding quantities

Thermodynamic energy E from E = kT:  | 11 ceV (centielectronvolts)
Thermodynamic energy E from E = kT: | 11 ceV (centielectronvolts)
Blackbody energy flux Φ from Φ = σT^4:  | 173799 W/m^2 (watts per square meter)
Blackbody energy flux Φ from Φ = σT^4: | 173799 W/m^2 (watts per square meter)
Approximate luminous exitance from a planar blackbody radiator perpendicular to its surface:  | 2813 lx (lux)
Approximate luminous exitance from a planar blackbody radiator perpendicular to its surface: | 2813 lx (lux)

Thermodynamic properties

phase at STP | all | solid melting point | median | 1050 °C  | highest | 1750 °C (thorium)  | lowest | 640 °C (plutonium)  | distribution |  boiling point | median | 3579 °C  | highest | 4820 °C (thorium)  | lowest | 2011 °C (americium)  | distribution |  molar heat of fusion | median | 14 kJ/mol  | highest | 16 kJ/mol (thorium)  | lowest | 10 kJ/mol (neptunium)  | distribution |  molar heat of vaporization | median | 410 kJ/mol  | highest | 530 kJ/mol (thorium)  | lowest | 325 kJ/mol (plutonium)  | distribution |  specific heat at STP | median | 117 J/(kg K)  | highest | 120 J/(kg K) (actinium)  | lowest | 99.1 J/(kg K) (protactinium)  | distribution |  (properties at standard conditions)
phase at STP | all | solid melting point | median | 1050 °C | highest | 1750 °C (thorium) | lowest | 640 °C (plutonium) | distribution | boiling point | median | 3579 °C | highest | 4820 °C (thorium) | lowest | 2011 °C (americium) | distribution | molar heat of fusion | median | 14 kJ/mol | highest | 16 kJ/mol (thorium) | lowest | 10 kJ/mol (neptunium) | distribution | molar heat of vaporization | median | 410 kJ/mol | highest | 530 kJ/mol (thorium) | lowest | 325 kJ/mol (plutonium) | distribution | specific heat at STP | median | 117 J/(kg K) | highest | 120 J/(kg K) (actinium) | lowest | 99.1 J/(kg K) (protactinium) | distribution | (properties at standard conditions)