600 degrees Celsius equals 873.15 kelvin.
The conversion from Celsius to Kelvin is done by adding 273.15 to the Celsius temperature. This works because the Kelvin scale starts at absolute zero, which is -273.15°C. So, by adding 273.15, the Celsius temperature is shifted to Kelvin’s starting point.
Conversion Tool
Result in kelvin:
Conversion Formula
The formula to convert Celsius to Kelvin is K = °C + 273.15. This means you add 273.15 to the Celsius temperature to get the equivalent temperature in Kelvin.
Kelvin starts at absolute zero, which is -273.15°C. Celsius scale uses the freezing point of water as zero, so to convert, you shift the scale by adding 273.15.
Example: Convert 600°C to K:
- Start with the Celsius temperature: 600°C
- Add 273.15: 600 + 273.15 = 873.15
- The result is 873.15 K
Conversion Example
- Convert 100°C to Kelvin:
- Take 100°C
- Add 273.15 → 100 + 273.15 = 373.15 K
- Convert -50°C to Kelvin:
- Start with -50°C
- Add 273.15 → -50 + 273.15 = 223.15 K
- Convert 0°C to Kelvin:
- Use 0°C
- Add 273.15 → 0 + 273.15 = 273.15 K
- Convert 250.5°C to Kelvin:
- Take 250.5°C
- Add 273.15 → 250.5 + 273.15 = 523.65 K
Conversion Chart
The below chart shows Celsius temperatures from 575.0 to 625.0 and their Kelvin equivalents. To use it, find the Celsius value in the left column and read across to see the converted Kelvin value.
| Celsius (°C) | Kelvin (K) |
|---|---|
| 575.0 | 848.15 |
| 580.0 | 853.15 |
| 585.0 | 858.15 |
| 590.0 | 863.15 |
| 595.0 | 868.15 |
| 600.0 | 873.15 |
| 605.0 | 878.15 |
| 610.0 | 883.15 |
| 615.0 | 888.15 |
| 620.0 | 893.15 |
| 625.0 | 898.15 |
Related Conversion Questions
- How many kelvin are 600 degrees Celsius equal to?
- What is the formula to convert 600°C into kelvin?
- Is 600°C hotter than 600 K?
- How do I convert 600 celsius temperature to kelvin using calculator?
- What kelvin temperature corresponds to 600°C?
- Can 600°C be expressed in kelvin without decimals?
- Why does converting 600 celsius to kelvin add 273.15?
Conversion Definitions
Celsius: Celsius is a temperature scale where 0 degrees is freezing point of water and 100 degrees is boiling point at sea level. It is widely used for everyday temperature measurements, scientific work, and weather reports in many countries worldwide.
Kelvin: Kelvin is the SI base unit for temperature measurement starting at absolute zero, the lowest physically possible temperature. It uses the same size increments as Celsius but starts at -273.15°C, with no negative values in the Kelvin scale.
Conversion FAQs
Why do we add 273.15 to convert Celsius to Kelvin?
Because the Kelvin scale starts at absolute zero, which is -273.15°C, adding 273.15 shifts the Celsius temperature upward to align with Kelvin’s starting point. This ensures the temperature is measured from absolute zero without negative values.
Is Kelvin temperature ever negative?
No, Kelvin temperatures cannot be negative. The scale starts at absolute zero (0 K), which is the lowest possible temperature. Celsius can be negative, but Kelvin is always zero or positive.
Can I convert Kelvin back to Celsius easily?
Yes, to convert from Kelvin back to Celsius, just subtract 273.15 from the Kelvin value. For example, 600 K minus 273.15 equals 326.85°C.
Does the conversion change for very high temperatures like 600°C?
No, the conversion formula stays the same regardless of temperature. You always add 273.15 to the Celsius value to get Kelvin, no matter how high or low the temperature is.
Why is Kelvin used instead of Celsius in scientific calculations?
Kelvin is preferred in science because it starts at absolute zero, making calculations involving thermodynamics and gas laws more accurate. It avoids negative numbers, simplifying many formulas and preventing confusion.
Last Updated : 22 July, 2025

Sandeep Bhandari holds a Bachelor of Engineering in Computers from Thapar University (2006). He has 20 years of experience in the technology field. He has a keen interest in various technical fields, including database systems, computer networks, and programming. You can read more about him on his bio page.