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Celsius Converter

Convert Celsius to Intervaldegree Rankine and more • 15 conversions

Result

0

1 0
Conversion Formula
1 = ---
Quick Reference
1 = 1
10 = 10
50 = 50
100 = 100
500 = 500
1000 = 1000

Unit Explanations

Celsius°C

Source Unit

Celsius, denoted by the symbol °C, is a scale and unit of measurement for temperature. It is named after the Swedish astronomer Anders Celsius, who developed a similar temperature scale. In the Celsius scale, the freezing point of water is 0 degrees, and the boiling point is 100 degrees under standard atmospheric pressure. This makes it especially useful for scientific calculations and everyday temperature measurements as it aligns closely with the metric system. The Celsius scale is widely used around the world, with the exception of some countries like the United States, which predominantly uses Fahrenheit.

°C = (°F - 32) × 5/9

Current Use

The Celsius scale is the most widely used temperature scale in the world today. It is used in most countries for daily temperature measurements. In scientific contexts, it is used alongside the Kelvin scale, which is the SI unit for temperature. The Celsius scale's straightforward alignment with the metric system makes it an ideal choice for educational, scientific, and meteorological purposes.

Fun Fact

The Celsius scale was initially reversed, with 0 as boiling point and 100 as freezing point.

Interval Degree Rankine°R

Target Unit

The interval degree Rankine (°R) is a temperature scale primarily utilized in thermodynamic calculations. It is defined as having the same incremental value as the Fahrenheit scale, whereby a change of 1 degree Rankine is equivalent to a change of 1 degree Fahrenheit. The Rankine scale starts at absolute zero, which is 0 °R, and its zero point corresponds to -459.67 °F. It is particularly useful in engineering fields, where temperature differences rather than absolute values are frequently required.

°R = °F + 459.67

Current Use

The interval degree Rankine is primarily used in mechanical engineering and thermodynamic calculations, especially in the United States. It is favored in certain industries where systems operate using the Fahrenheit scale. The Rankine scale provides a straightforward method for calculating temperature differences in energy systems, making it a valuable tool for engineers working on heat engines, refrigeration, and HVAC systems.

Fun Fact

The Rankine scale is named after William John Macquorn Rankine, who also contributed significantly to the fields of thermodynamics and engineering.

Decimals:
Scientific:OFF

Result

0

1
0
Conversion Formula
1 = ...
1→1
10→10
100→100
1000→1000

📐Conversion Formula

= × 1.00000

How to Convert

To convert to , multiply the value by 1.00000. This conversion factor represents the ratio between these two units.

Quick Examples

1
=
1.000
10
=
10.00
100
=
100.0

💡 Pro Tip: For the reverse conversion (), divide by the conversion factor instead of multiplying.

°C

Celsius

temperatureNon-SI

Definition

Celsius, denoted by the symbol °C, is a scale and unit of measurement for temperature. It is named after the Swedish astronomer Anders Celsius, who developed a similar temperature scale. In the Celsius scale, the freezing point of water is 0 degrees, and the boiling point is 100 degrees under standard atmospheric pressure. This makes it especially useful for scientific calculations and everyday temperature measurements as it aligns closely with the metric system. The Celsius scale is widely used around the world, with the exception of some countries like the United States, which predominantly uses Fahrenheit.

History & Origin

The Celsius scale was developed by Swedish astronomer Anders Celsius in 1742. Originally, Celsius devised his scale with 0 as the boiling point of water and 100 as the freezing point, which was later inverted by Carl Linnaeus in 1744 to its current form. This scale quickly became popular due to its straightforward 100-degree interval between the key physical phenomena of freezing and boiling water, which made it intuitive and easy to use, particularly for scientific work.

Etymology: The term 'Celsius' comes from the surname of Anders Celsius, the inventor of this temperature scale.

1742: Anders Celsius introduces his ...1744: Carl Linnaeus inverts the Cels...1948: The name 'Celsius' is official...

Current Use

The Celsius scale is the most widely used temperature scale in the world today. It is used in most countries for daily temperature measurements. In scientific contexts, it is used alongside the Kelvin scale, which is the SI unit for temperature. The Celsius scale's straightforward alignment with the metric system makes it an ideal choice for educational, scientific, and meteorological purposes.

MeteorologyEducationHealthcareScience

💡 Fun Facts

  • The Celsius scale was initially reversed, with 0 as boiling point and 100 as freezing point.
  • Celsius is used by scientists worldwide, except in the U.S., where Fahrenheit is more common.
  • The Celsius scale is often called centigrade, a term derived from Latin meaning 'hundred steps'.

📏 Real-World Examples

0 °C
Freezing point of water
100 °C
Boiling point of water
37 °C
Average human body temperature
22 °C
Room temperature
4 °C
Refrigerator temperature

🔗 Related Units

Fahrenheit (°C = (°F - 32) × 5/9)Kelvin (K = °C + 273.15)Rankine (°R = (°C + 273.15) × 9/5)Réaumur (°Ré = °C × 0.8)
°R

Interval Degree Rankine

temperatureNon-SI

Definition

The interval degree Rankine (°R) is a temperature scale primarily utilized in thermodynamic calculations. It is defined as having the same incremental value as the Fahrenheit scale, whereby a change of 1 degree Rankine is equivalent to a change of 1 degree Fahrenheit. The Rankine scale starts at absolute zero, which is 0 °R, and its zero point corresponds to -459.67 °F. It is particularly useful in engineering fields, where temperature differences rather than absolute values are frequently required.

History & Origin

The Rankine scale was developed by Scottish engineer William John Macquorn Rankine in the mid-19th century as part of his work on thermodynamics. Rankine's goal was to create a temperature scale that was absolute and based on the Fahrenheit scale, allowing for easy conversion and calculation in thermodynamic processes. The scale was adopted for use in various engineering disciplines as it improved upon the limitations of other temperature scales.

Etymology: The term 'Rankine' derives from the surname of William John Macquorn Rankine, who was a prominent figure in thermodynamics and engineering during the 19th century.

1859: William John Macquorn Rankine ...

Current Use

The interval degree Rankine is primarily used in mechanical engineering and thermodynamic calculations, especially in the United States. It is favored in certain industries where systems operate using the Fahrenheit scale. The Rankine scale provides a straightforward method for calculating temperature differences in energy systems, making it a valuable tool for engineers working on heat engines, refrigeration, and HVAC systems.

Mechanical EngineeringThermodynamicsAerospace

💡 Fun Facts

  • The Rankine scale is named after William John Macquorn Rankine, who also contributed significantly to the fields of thermodynamics and engineering.
  • Unlike Celsius and Kelvin, the Rankine scale uses the Fahrenheit degree size, making it unique among absolute temperature scales.
  • The Rankine scale is used primarily in the United States, while most of the world prefers the Celsius and Kelvin scales for scientific and engineering applications.

📏 Real-World Examples

152 °R
Heating water from 60 °R to 212 °R
20 °R
Cooling air in a refrigeration system from 300 °R to 280 °R
200 °R
Calculating the efficiency of a heat engine operating between 400 °R and 600 °R
500 °R
Monitoring the temperature of a gas at 500 °R during combustion
100 °R
Assessing thermal expansion of materials at 100 °R

🔗 Related Units

Fahrenheit (Rankine is based on the Fahrenheit scale; a change of 1 °R equals a change of 1 °F.)Celsius (Rankine and Celsius both measure temperature, but Rankine is based on absolute zero.)Kelvin (Both Rankine and Kelvin are absolute temperature scales, but Rankine uses Fahrenheit increments.)Absolute Zero (0 °R corresponds to absolute zero, equivalent to -459.67 °F or 0 K.)

Frequently Asked Questions

How do I convert to ?

To convert to , multiply your value by 1. For example, 10 equals 10 .

What is the formula for to conversion?

The formula is: = × 1. This conversion factor is based on international standards.

Is this to converter accurate?

Yes! MetricConv uses internationally standardized conversion factors from organizations like NIST and ISO. Our calculations support up to 15 decimal places of precision, making it suitable for scientific, engineering, and everyday calculations.

Can I convert back to ?

Absolutely! You can use the swap button (⇄) in the converter above to reverse the conversion direction, or visit our to converter.

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