an insulator
Thermal conductivity is the ability of a material to carry energy in the form of heat. It is a measure of how well a material can conduct heat through its structure. Materials with high thermal conductivity can transfer heat more efficiently than materials with low thermal conductivity.
Thermal conductivity is the property that describes the ability of a material to carry energy. It is a measure of how well a material conducts heat. Materials with high thermal conductivity are good conductors of heat, while materials with low thermal conductivity are poor conductors of heat.
insulator
A bad conductor is a material that does not allow the flow of electricity or heat very well. This is due to the lack of free electrons that can move easily within the material to carry the electric current or heat. Examples of bad conductors include rubber, plastic, and wood.
insulator.
Thermal conductivity is the ability of a material to carry energy in the form of heat. It is a measure of how well a material can conduct heat through its structure. Materials with high thermal conductivity can transfer heat more efficiently than materials with low thermal conductivity.
Thermal conductivity is the property that describes the ability of a material to carry energy. It is a measure of how well a material conducts heat. Materials with high thermal conductivity are good conductors of heat, while materials with low thermal conductivity are poor conductors of heat.
metalloid
insulator
metalloid
polystyrene foam cups and composite Wood material like snake glass fiber etc
A bad conductor is a material that does not allow the flow of electricity or heat very well. This is due to the lack of free electrons that can move easily within the material to carry the electric current or heat. Examples of bad conductors include rubber, plastic, and wood.
insulator.
A material with a good thermal conductivity or a thermal conductor.
convection currents
The word is "thermal conductor."
The mass of material affects the amount of heat it can transfer because more mass typically means more particles available to carry heat energy. Therefore, a larger mass of material is generally able to transfer more heat compared to a smaller mass.