It is -459.67 deg F.
-457.87 degrees Fahrenheit
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.
That temperature is impossible (at least in our universe).
The lowest possible temperature on the Fahrenheit scale is -459.67°F, which is known as absolute zero. At this temperature, molecular motion ceases, and all matter theoretically reaches its lowest possible energy state.
Absolute zero is 0 Kelvin, -273.15 degrees Celsius, and -459.67 degrees Fahrenheit. At this temperature, all molecular motion ceases, making it the lowest possible temperature on the Kelvin scale.
-457.87 degrees Fahrenheit
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.
That temperature is impossible (at least in our universe).
Absolute zero on the Fahrenheit scale is -459.67°F. At this temperature, molecules cease to move, and all molecular motion stops.
The lowest possible temperature on the Fahrenheit scale is -459.67°F, which is known as absolute zero. At this temperature, molecular motion ceases, and all matter theoretically reaches its lowest possible energy state.
At 0 degrees Kelvin (absolute zero), molecular motion ceases and particles no longer have kinetic energy to move. At this temperature, atoms are at their lowest energy state and are not vibrating or moving.
Absolute zero is 0 Kelvin, -273.15 degrees Celsius, and -459.67 degrees Fahrenheit. At this temperature, all molecular motion ceases, making it the lowest possible temperature on the Kelvin scale.
Absolute Zero is a theoretical temperature where all molecular activity ceases and by international agreement it is set at -273.15 Celsius.
Absolute zero is -273.15 degrees Celsius and -459.67 degrees Fahrenheit. It is the lowest possible temperature, at which all molecular motion ceases.
The most significant thing about the temperature of absolute zero is that is marks the point where molecular motion stops. It is equal to −459.67 degrees Fahrenheit.
The the Fahrenheit value for "absolute zero".
a measure of molecular motion