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English: The Celsius and Kelvin scales are shown in a thermometer. Temperatures that are the base for the modern definition of the Celsius scale are shown in black: water's triple point (0.01 °C, 273.16 K) and absolute zero (-273.15 °C, 0 K).
To convert a delta temperature from degrees Fahrenheit to degrees Celsius, the formula is {ΔT} °F = 9 / 5 {ΔT} °C. To convert a delta temperature from degrees Celsius to kelvin, it is 1:1 ({ΔT} °C = {ΔT} K).
(The same increment as the Celsius scale) Thomson's best estimates at the time were that the temperature of freezing water was 273.7 K and the temperature of boiling water was 373.7 K. [33] These two properties would be featured in all future versions of the Kelvin scale, although it was not yet known by that name.
The degree Celsius (°C) can refer to a specific temperature on the Celsius scale as well as a unit to indicate a temperature interval (a difference between two temperatures). From 1744 until 1954, 0 °C was defined as the freezing point of water and 100 °C was defined as the boiling point of water, both at a pressure of one standard atmosphere .
Template: Convert/list of units/temperature. ... conversion to kelvin combinations SI: kelvin: K K ... degree Celsius °C (C) °C
This image is a derivative work of the following images: File:Kelvin_Temperature_Chart.jpg licensed with PD-self 2009-06-12T05:32:10Z Mifsud26 1324x586 (54729 Bytes) {{Information |Description={{en|1=Kelvin Temperature Chart}} |Source=work by uploader from other uploader on wikipedia |Author=[[User:Mifsud26|Mifsud26]] |Date=2009-06-11 ...
Although "International Temperature Scale of 1990" has the word "scale" in its title, this is a misnomer that can be misleading. The ITS-90 is not a scale; it is an equipment calibration standard. Temperatures measured with equipment calibrated per ITS-90 may be expressed using any temperature scale such as Celsius, Kelvin, Fahrenheit, or Rankine.
A unit increment of one kelvin is exactly 1.8 times one degree Rankine; thus, to convert a specific temperature on the Kelvin scale to the Rankine scale, x K = 1.8 x °R, and to convert from a temperature on the Rankine scale to the Kelvin scale, x °R = x /1.8 K. Consequently, absolute zero is "0" for both scales, but the melting point of ...