yes
Conduction cannot take place in liquids because the particles are free to move around, disrupting the transfer of heat. In solids, particles are closely packed and transfer heat through vibrating in place, allowing conduction to occur easily.
Conduction requires the presence of a medium such as solid, liquid, or gas for heat transfer to occur. In a vacuum, there are no particles to transfer heat energy through collisions, so conduction cannot take place. Heat can only be transferred in a vacuum through radiation.
Conduction takes place in the process of heat transfer through direct contact between objects or substances.
In liquids, conduction occurs through the transfer of thermal energy between molecules by direct contact. As molecules gain energy, they vibrate and collide with neighboring molecules, passing on the energy. This process continues, enhancing the movement of heat through the liquid.
Energy is transferred from the cooker to the liquid in the saucepan through conduction, where heat is transmitted from the hot surface of the cooker to the bottom of the saucepan by direct contact. This heat is then transferred to the liquid through convection, as the hot liquid rises and circulates, creating a convection current that heats the entire volume of liquid.
no
Conduction takes place in liquids and gaz's
yes
Conduction cannot take place in liquids because the particles are free to move around, disrupting the transfer of heat. In solids, particles are closely packed and transfer heat through vibrating in place, allowing conduction to occur easily.
Wrong, transfer of heat by conduction does take place in fluids.
It does
No
Conduction requires the presence of a medium such as solid, liquid, or gas for heat transfer to occur. In a vacuum, there are no particles to transfer heat energy through collisions, so conduction cannot take place. Heat can only be transferred in a vacuum through radiation.
conduction take place in solids and gases
In any liquid.
Heat Conduction.
Conduction takes place in the process of heat transfer through direct contact between objects or substances.