it's sort of like diffusion, the object with the higher temperature will transfer its energy through conduction to the cooler object. after long enough, they will have the same temperature.
When two objects at different temperatures come into contact, thermal energy will flow from the hotter object to the cooler object until thermal equilibrium is reached. This process is known as heat transfer, and it continues until both objects reach the same temperature.
When objects of two different temperatures are in contact, heat transfer occurs. The hotter object will transfer heat to the cooler object until they reach thermal equilibrium, where their temperatures are the same. This process is governed by the laws of thermodynamics.
When two objects at different temperatures make contact, thermal energy tends to flow from the hotter object to the cooler object. This transfer of heat continues until the two objects reach thermal equilibrium, meaning they reach the same temperature.
When objects with different temperatures touch, heat will flow from the hotter object to the cooler object until they reach thermal equilibrium. This process is known as thermal conduction. The rate of heat transfer depends on the temperature difference between the objects, their thermal conductivity, and the surface area of contact.
When two objects at different temperatures come into contact and exchange thermal energy until they reach a common temperature, this is known as thermal equilibrium. At this point, the objects' temperatures are balanced and no further net transfer of heat occurs between them.
Air masses
When two objects at different temperatures come into contact, thermal energy will flow from the hotter object to the cooler object until thermal equilibrium is reached. This process is known as heat transfer, and it continues until both objects reach the same temperature.
When objects of two different temperatures are in contact, heat transfer occurs. The hotter object will transfer heat to the cooler object until they reach thermal equilibrium, where their temperatures are the same. This process is governed by the laws of thermodynamics.
thermal energy(heat) transfer to cooler objects...............................................................................................................
When two objects at different temperatures make contact, thermal energy tends to flow from the hotter object to the cooler object. This transfer of heat continues until the two objects reach thermal equilibrium, meaning they reach the same temperature.
When objects with different temperatures touch, heat will flow from the hotter object to the cooler object until they reach thermal equilibrium. This process is known as thermal conduction. The rate of heat transfer depends on the temperature difference between the objects, their thermal conductivity, and the surface area of contact.
When two objects at different temperatures come into contact and exchange thermal energy until they reach a common temperature, this is known as thermal equilibrium. At this point, the objects' temperatures are balanced and no further net transfer of heat occurs between them.
the same
thermal energy(heat) transfer to cooler objects...............................................................................................................
Hotter object to the cooler object in order to reach thermal equilibrium.
When two objects at different temperatures are in contact, heat will flow from the hotter object to the cooler object until they reach thermal equilibrium, meaning they both reach the same temperature. This transfer of heat will continue until the temperature of both objects is the same.
The object with the lower average temperature will take heat from the other object until both objects have the same temperature.