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
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.
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.