Heat flows from the hotter object to the colder object, unless there is some external process (such as a heat pump) which is transferring the heat in the opposite direction.
Heat.
thermal
The ability to do work is defined as energy. Energy can also be transferred in the form of heat. Heat is a mechanism by which energy is transferred between objects at different temperatures.
Heat energy is transferred between objects of different temperatures. This process occurs through conduction, convection, or radiation, with energy flowing from the hotter object to the colder one until they reach thermal equilibrium.
Heat is the thermal energy transferred between objects that have different temperatures. This transfer occurs due to a temperature gradient, moving from the object with higher temperature to the one with lower temperature until thermal equilibrium is reached.
Heat.
thermal
The ability to do work is defined as energy. Energy can also be transferred in the form of heat. Heat is a mechanism by which energy is transferred between objects at different temperatures.
Heat energy is transferred between objects of different temperatures. This process occurs through conduction, convection, or radiation, with energy flowing from the hotter object to the colder one until they reach thermal equilibrium.
Heat is the thermal energy transferred between objects that have different temperatures. This transfer occurs due to a temperature gradient, moving from the object with higher temperature to the one with lower temperature until thermal equilibrium is reached.
The energy transferred between objects of different temperatures is called heat. Heat flows from the object at a higher temperature to the object at a lower temperature until thermal equilibrium is reached. This transfer of heat occurs through conduction, convection, or radiation.
Energy can be transferred to absorbers through radiation, where energy is emitted in the form of electromagnetic waves, such as light. Energy can also be transferred through conduction, where heat is directly transferred through physical contact between objects of different temperatures.
The energy transferred between objects due to a difference in temperature is called heat. Heat flows from objects at higher temperatures to objects at lower temperatures until thermal equilibrium is reached.
Heat transfer occurs between objects of different temperatures through three main mechanisms: conduction, convection, and radiation. In conduction, heat is transferred through direct contact between the objects. In convection, heat is transferred through the movement of fluids or gases. In radiation, heat is transferred through electromagnetic waves. In all cases, energy flows from the higher temperature object to the lower temperature object until thermal equilibrium is reached.
Two bodies at the same heat can have different temperatures due to differences in mass, material composition, or specific heat capacity. These factors affect how much heat energy is required to raise the temperature of each body. Additionally, the amount of heat transferred between the bodies can also impact their final temperatures.
The term for the transfer of thermal energy between the hot plate and a teapot is conduction. This process occurs when heat is transferred through direct contact between objects with different temperatures.
Thermal energy can be transferred by conduction, convection, or radiation. The formulae for the rate of transfer - if that's what you are after - vary, depending on which type of transfer is predominant.