It is absolute zero and all molecular motion stops
A temperature of 9 degrees Fahrenheit does not equal 5 degrees Celsius but a change of 9 degrees Fahrenheit equals 5 degrees Celsius. This happen because neither is an absolute scale.
If the liquid has a freezing point of 32 degrees, it would begin to freeze when its temperature drops below 32 degrees. Therefore, if its temperature dropped below 30 degrees, the liquid would continue to freeze and solidify further.
Water doesn't change into ice at 10 degrees Celsius because it requires a temperature of 0 degrees Celsius or lower to freeze. At 10 degrees Celsius, the thermal energy of the water molecules is still high enough to keep them in a liquid state. Freezing occurs when the molecules lose enough energy to form a stable solid structure, which doesn't happen until the temperature drops to the freezing point.
If the Haber process were carried out at 100 degrees Celsius instead of 500 degrees Celsius, the reaction rate would be significantly slower. Lower temperatures would reduce the efficiency of the process, resulting in lower production rates of ammonia. It may also affect the equilibrium position of the reaction, favoring the reverse reaction.
Its internal energy increses
Nothing much will happen.
The speed of sound is given by the formula v = 331.5 + .6T, where T is the temperature of the air in degrees Celsius. If T were negative, then you would simply have a speed of sound less than 331.5 m/s. For example, if T = -5 degrees Celsius, thenv = 331.5 + .6*-5 = 328.5 m/sThere really isn't anything magic about an air temperature of 0 degrees Celsius. Zero degrees Celsius is the temperature at which water freezes, but nothing particularly interesting happens to _air_ at that temperature.
In winter if the temperature of surroundings go down by 5 degrees you will feel cold
It will gradually drop to below 10 degrees.
when the temperature gets below 32 degrees Fahrenheit (0 degrees celsius), water freezes
The object at fifty degrees Celsius will absorb heat from the object at seventy degrees Celsius, decreasing the temperature difference between them. Both objects will eventually reach a thermal equilibrium where they settle at a common temperature between fifty and seventy degrees Celsius.
A temperature of 9 degrees Fahrenheit does not equal 5 degrees Celsius but a change of 9 degrees Fahrenheit equals 5 degrees Celsius. This happen because neither is an absolute scale.
Pipes can freeze when the temperature drops below 32 degrees Fahrenheit (0 degrees Celsius). This can happen when the weather is consistently below freezing for an extended period of time.
A lake freezes at 32 degrees Fahrenheit (0 degrees Celsius). The temperature needs to be consistently below freezing for the lake to freeze completely.
The beaker will eventually cool down, while the room will warm up. The room, having a much larger mass, will only warm up slightly.
If the liquid has a freezing point of 32 degrees, it would begin to freeze when its temperature drops below 32 degrees. Therefore, if its temperature dropped below 30 degrees, the liquid would continue to freeze and solidify further.
I must assume that you are referring to 29.5 degrees Celsius. Normal human body temperatureis 37.0 degrees Celsius. The abbreviation for Celsius is C , such as 37.0 C. The temperature youhave given, 29.5 C , is far below the normal human body temperature.