In liquids and solids, the heat conduction occurs through the valance electrons of the material. When you have a gas, most of the heat is conducted through radiation. When you conduct heat through a vacuum, it's all by radiation.
Heat is transferred by energy waves moving through space.
heat is transferred only from high energetic concentration to low energetic concentration. therefore heat cant be transferred in any usual way.
convection (from the movement of fluids), conduction (through solids), and radiation (through air and space).
Since that's what heat is (the motion of atoms), how better to transfer than by random collisions? yes.
Heat can be transferred through liquids and gases by means of conduction as well as conduction.The difference is that convection is not possible in solids.ConductionDuring conduction, heat is transferred due to the vibration of the molecules. A molecule at a higher temperature has more energy, and hence vibrates faster. It collides with other atoms and passes energy onto it. The chain continues and heat is transferred without any appreciable movement of molecules.ConvectionIn convection, the hotter particles move around in the fluid, transferring energy to the colder molecules. For example, when heating water in a vessel on a stove, the water at the bottom is heated first. It rises to the top and the cooler water flows down to be heated. This continues and heat is transferred throughout the fluid. Heat is transferred with the movement of molecules.
this fails
Convection occurs when heat is transferred into an object through motion or movement; an example would be boiling water.
When heat is transferred into an object through movement, such as boiling water, it is known as convection. In this process, heat is transferred through the bulk movement of molecules within a fluid. As the water heats up, the hotter molecules rise to the top, transferring heat from the bottom of the pot to the top.
it can be transferred through metal...and glass...
Heat travels through glass primarily via conduction, where the energy is transferred through direct contact of molecules within the material. Glass is a poor conductor of heat compared to metal, so heat transfer is slower in glass due to its low thermal conductivity. Additionally, heat can also be transferred through glass via radiation, where energy is emitted and absorbed through electromagnetic waves.
When heat is transferred into an object through motion or movement, it is known as convection. In the case of boiling water, the heat is transferred through convection as the heated water at the bottom rises, and the cooler water at the top moves down to replace it, creating a circulating flow of heat.
Conduction is the main heat transfer method used when boiling pasta. The heat from the boiling water is directly transferred to the pasta through conduction, cooking it evenly.
Heat is transferred through glass via conduction, where heat energy travels through the material due to the vibration of its atoms and molecules. Glass is a poor conductor of heat compared to materials like metal, which makes it an insulator. This property helps to regulate the temperature inside buildings by reducing heat loss or gain through windows.
Glass absorbs heat through a process called conduction. When sunlight hits the glass, the glass molecules absorb the energy and begin to vibrate, which causes them to heat up. The heat is then transferred through the glass, warming up the surrounding air or objects.
Energy is transferred through water in a kettle via conduction. The heat from the heating element of the kettle is transferred to the water molecules, causing them to heat up and eventually reach boiling point. This process continues until the water reaches the desired temperature.
formal, material, and final
Energy is transferred from a cup of boiling water through convection, conduction, and radiation. Convection causes the hot water at the bottom to rise, transferring heat to the cooler water at the top. Conduction transfers heat from the water to the cup, and radiation emits heat in the form of infrared waves.