Temperature · Unit Converter

Convert Planck Temperature to Gigakelvin

Convert planck temperatures to gigakelvins instantly. 1 T_P = 1.416784e+23 GK — use the live calculator, the exact formula, a reference-temperature table and worked examples. Also check the Gigakelvin to Planck Temperature converter for the reverse conversion.

Written by Sunith Babu L, Ph.D., Lead Engineer Reviewed by Girish V Kulkarni Ph.D.
Temperature category 2 min read Published Last reviewed Updated

Units explained

Scientific & Fixed-Point

Planck Temperature

What is the planck temperature?

The Planck temperature (T_P) is the natural unit of temperature, about 1.416784×10³² kelvins, constructed purely from the fundamental constants ħ, c, G, and k. It is widely regarded as the highest temperature at which known physics remains meaningful.

Origin of the planck temperature

Arises from Max Planck's 1899 system of natural units, which combines the speed of light, the gravitational constant, the reduced Planck constant, and the Boltzmann constant into universal base quantities independent of any human artifact.

Where it is used

Cosmology and quantum-gravity research, where it marks the temperature of the universe roughly one Planck time after the Big Bang. No laboratory process approaches even a trillionth of a trillionth of it.

When and where it was developed

Defined within Max Planck's natural-unit system proposed in Germany in 1899; the modern recommended value (1.416784×10³² K) is maintained by the CODATA fundamental-constants adjustment.

SI Prefixed Kelvin

Gigakelvin

What is a gigakelvin?

One gigakelvin (GK) is one billion kelvins (10⁹ K).

Origin of the gigakelvin

Formed with the SI prefix 'giga-' (from Greek 'gigas', giant) applied to the kelvin base unit.

Where it is used

Extreme astrophysics — collapsing supernova cores reach roughly 100 GK, and Big Bang nucleosynthesis took place at about 1 GK.

When and where it was developed

The giga- prefix was adopted by the CGPM in 1960 as part of the SI.

Planck Temperature to Gigakelvin conversion formula

Note: this conversion uses the CODATA recommended value of the Planck temperature (1.416784×10³² K), which carries a small experimental uncertainty from the gravitational constant G.

The exact relationship between planck temperatures and gigakelvins:

GK = T_P × 1.416784e+23
T_P = GK × 7.058239e-24

To convert planck temperatures to gigakelvins, multiply the value in planck temperatures by 1.416784e+23. To reverse, multiply the value in gigakelvins by 7.058239e-24.

Both units count upward from absolute zero, so 0 T_P = 0 GK and the relationship is a pure ratio.

How to use this converter

Type a value into the calculator. The result in gigakelvins updates as you type. Tap a quick value, copy the result with one click, or use the swap arrow to jump straight to the Gigakelvin to Planck Temperature converter for the reverse direction.

Step-by-step: convert planck temperatures to gigakelvins

  1. Write down the temperature in planck temperatures (T_P).
  2. Multiply the value in planck temperatures by 1.416784e+23.
  3. The result is the same temperature expressed in gigakelvins (GK).
  4. To reverse, multiply the value in gigakelvins by 7.058239e-24 — or open the Gigakelvin to Planck Temperature converter.

Worked examples

Example 1 — Convert 1 T_P to GK:
1 × 1.416784e+23 = 1.416784e+23 GK

Example 2 — Convert 100 T_P to GK:
100 × 1.416784e+23 = 1.416784e+25 GK

Planck Temperature to Gigakelvin conversion table

Physically meaningful reference temperatures, from absolute zero to the surface of the Sun, converted from planck temperatures to gigakelvins:

Planck Temperature [T_P]Gigakelvin [GK]Reference point
00Absolute zero
1.645628e-302.3315e-7Where Celsius and Fahrenheit coincide (−40°)
1.802478e-302.553722e-7Zero Fahrenheit (0 °F)
1.927958e-302.7315e-7Water freezes (0 °C / 32 °F)
1.928029e-302.7316e-7Triple point of water
1.99854e-302.8315e-7Cool day (10 °C / 50 °F)
2.069123e-302.9315e-7Room temperature (20 °C / 68 °F)
2.104414e-302.9815e-7Standard laboratory temperature (25 °C)
2.139705e-303.0315e-7Hot day (30 °C / 86 °F)
2.189113e-303.1015e-7Human body temperature (37 °C / 98.6 °F)
2.210288e-303.1315e-7Heat-wave day (40 °C / 104 °F)
2.28087e-303.2315e-7Hot tap water (50 °C / 122 °F)
2.633782e-303.7315e-7Water boils (100 °C / 212 °F)
3.198441e-304.5315e-7Moderate baking oven (180 °C / 356 °F)
4.07825e-295.778e-6Surface of the Sun (≈5,505 °C)

Frequently asked questions

How many gigakelvins is 1 planck temperature?
1 planck temperature equals 1.416784e+23 gigakelvins.
How do I convert planck temperatures to gigakelvins?
Use the formula GK = T_P × 1.416784e+23: multiply the value in planck temperatures by 1.416784e+23.
How do I convert gigakelvins back to planck temperatures?
Apply the reverse formula T_P = GK × 7.058239e-24 — multiply the value in gigakelvins by 7.058239e-24 — or use the Gigakelvin to Planck Temperature converter.
How many gigakelvins is 100 planck temperatures?
100 planck temperatures equals 1.416784e+25 gigakelvins, because 100 × 1.416784e+23 = 1.416784e+25.
Can a temperature be below absolute zero?
No. Absolute zero (0 K = −273.15 °C = −459.67 °F) is the floor of the thermodynamic temperature scale. The calculator flags any input that would fall below it.

Convert Planck Temperature to other temperature units

Show all Planck Temperature conversions

Sources & references

Conversion relationship (1 T_P = 1.416784e+23 GK) verified against the following authoritative sources:

Results are provided for general reference. Verify critical measurements against an authoritative standard.