Yes - if one is using the Kelvin temperature scale.
Molecular motion is predicted to stop at "absolute zero" a temperature so low it cannot be achieved by scientists.
0º Kelvin = −273.15 ° Celsius = -459.67 Fahrenheit
This is called absolute zero. The temperature is 0 Kelvin or -273.15 degrees Celsius.
In theory, all molecular motion ceases at absolute zero which is 0 Kelvin (-273.15 degrees Celsius). At this temperature, the molecules have minimal energy and stop moving completely. However, reaching absolute zero is not practically possible.
-273 degrees Celsius is equivalent to 0 Kelvin. This is known as absolute zero, the lowest possible temperature where all molecular motion stops.
-273 degrees Celsius is equivalent to 0 Kelvin, which is absolute zero. At this temperature, particles have minimal kinetic energy and all molecular motion ceases.
The temperature is absolute zero, a minimum temperature of matter based on continually reduced molecular motion. (Although absolute zero cannot be attained, it is possible to get very very close, to about 170 billionths of a kelvin.) Absolute zero is approximately -273.15 °C
-273 degrees centrigrade, or 0 degrees Kelvin.
"absolute zero" or 0 degrees Kelvin.
The temperature at which molecular energy is at a minimum is known as absolute zero, which is equivalent to 0 Kelvin or -273.15 degrees Celsius. At this temperature, molecular motion ceases, and particles have the least possible energy.
0 degrees Kelvin is absolute zero, the lowest possible temperature at which particles stop moving. It is equal to -273.15 degrees Celsius and -459.67 degrees Fahrenheit. At absolute zero, all molecular motion ceases.
This is called absolute zero. The temperature is 0 Kelvin or -273.15 degrees Celsius.
When the temperature reaches 0 degrees Kelvin (absolute zero), particles have minimal thermal motion and all atomic and molecular motion ceases. This is the coldest temperature possible and is theoretically unattainable.
0 Kelvin is absolute zero and is equal to -273.15 Celsius.
Most enzymes are inactive at 0 degrees Celsius because low temperatures decrease molecular motion and slow down enzyme activity, resulting in reduced reaction rates.
Absolute Zero is a theoretical temperature where all molecular activity ceases and by international agreement it is set at -273.15 Celsius.
273
molecular motion ceases, meaning there is no heat energy remaining to transfer. It is the lowest possible temperature on the Kelvin scale, at approximately -273.15 degrees Celsius or 0 Kelvin.
The hypothetical lowest possible temperature, where all molecular motion ceases, is called absolute zero. At this temperature (0 Kelvin or -273.15 degrees Celsius), particles have minimal energy and cease to move, also known as the point of zero entropy.