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Both liquids and gases can transfer heat, but they do so in different ways. Liquids transfer heat through the process of convection, where heated particles rise and cooler particles sink. Gases can transfer heat through convection as well, but they can also transfer heat through radiation and conduction.
The two methods of heat transfer possible with liquids are conduction and convection. Convection generally has a greater effect on heat transfer in liquids compared to conduction, as it involves the movement of the liquid itself, helping to distribute heat more efficiently.
Heat transfer in gases and liquids occurs primarily through conduction, convection, and radiation. Conduction involves the transfer of heat through direct physical contact between molecules. Convection involves the transfer of heat through the movement of fluids. Radiation involves the transfer of heat through electromagnetic waves.
The main type of heat transfer in liquids and gases is convection. Convection occurs when heat is transferred through the movement of the fluid itself, carrying heat from one location to another.
Heat transfer in liquids and gases occurs primarily through convection, which is the transfer of heat through the bulk movement of the fluid. In convection, the hotter fluid rises and the cooler fluid sinks, creating a circulation pattern that transfers heat. Conduction, the transfer of heat through direct contact between molecules, also occurs in liquids and gases but is less efficient compared to convection.
Radiation in heat transfer is one of three known modes of heat transfer: conduction (as heat transfer in solids and less effective in liquids)), Convection (as in liquids and gases), and radiation (that not necessarily require a medium for the transfer). Heat of sun is transferred to us in the vacuum space by radiation heat transfer.
convection
Both liquids and gases can transfer heat, but they do so in different ways. Liquids transfer heat through the process of convection, where heated particles rise and cooler particles sink. Gases can transfer heat through convection as well, but they can also transfer heat through radiation and conduction.
CONVECTION
The two methods of heat transfer possible with liquids are conduction and convection. Convection generally has a greater effect on heat transfer in liquids compared to conduction, as it involves the movement of the liquid itself, helping to distribute heat more efficiently.
Heat transfer in gases and liquids occurs primarily through conduction, convection, and radiation. Conduction involves the transfer of heat through direct physical contact between molecules. Convection involves the transfer of heat through the movement of fluids. Radiation involves the transfer of heat through electromagnetic waves.
The main type of heat transfer in liquids and gases is convection. Convection occurs when heat is transferred through the movement of the fluid itself, carrying heat from one location to another.
i ave no idea
Heat transfer in liquids and gases occurs primarily through convection, which is the transfer of heat through the bulk movement of the fluid. In convection, the hotter fluid rises and the cooler fluid sinks, creating a circulation pattern that transfers heat. Conduction, the transfer of heat through direct contact between molecules, also occurs in liquids and gases but is less efficient compared to convection.
Liquids are bad conductors of heat because their molecules are not closely packed together like in solids, limiting the transfer of thermal energy between them. Additionally, the free movement of molecules in liquids also hinders the transfer of heat. This is why liquids take longer to heat up and cool down compared to solids.
the process of transfer of heat energy in solids is known as conduction.. For more info-- the process of transfer of heat energy in liquids and gases is known as convection.. And the process of transfer of heat energy without any material medium is known as radiation..
Convection is the type of heat transfer that occurs only in gases or liquids. It involves the movement of the heated fluid itself, which carries heat energy from one place to another.