A good conductor has high electrical conductivity, allowing electric current to flow easily. A semiconductor has moderate electrical conductivity, which can be controlled using external factors like temperature or doping. An insulator has very low electrical conductivity, preventing the flow of electric current.
Lead is a metal and is considered a good conductor of electricity. It is not a semiconductor or insulator.
Silicon is an element that falls in between being a good conductor and a good insulator. It is a semiconductor which means its conductivity can be modified by introducing impurities or applying an electric field.
Metal is a good conductor of electricity due to the presence of free electrons, while semiconductor has conductivity in between metal and insulator and its conductivity can be controlled by doping. Insulator has very low conductivity as it lacks free electrons for conduction.
conductor:- which allow electron to travel very easily as compare to insulator and semiconductor because of its low energy band gape. insulator:- which can not pass electron as good as conductor because of its band gape energy. energy band: in all the metal,semiconductor and insulator there is energy gape.energy gape is due to arrangement of electron to shell and subshell which is related to quantum mechanics. so the material between conductor and insulator is semiconductor because it has energy gape greater than the conductor and less than the insulator. greater the energy gape less chance for electron to pass through the material
Phosphorus is a poor conductor of heat and electricity. It is actually considered to be a semiconductor, meaning it has intermediate conductivity properties between those of a conductor and an insulator.
Lead is a metal and is considered a good conductor of electricity. It is not a semiconductor or insulator.
Silicon is an element that falls in between being a good conductor and a good insulator. It is a semiconductor which means its conductivity can be modified by introducing impurities or applying an electric field.
Boron is not a good conductor of electricity at room temperature, but is a good conductor at a high temperature.
Astatine is not a good conductor of heat or electricity. It is a semiconductor, meaning it has properties between those of a metal and an insulator.
Metal is a good conductor of electricity due to the presence of free electrons, while semiconductor has conductivity in between metal and insulator and its conductivity can be controlled by doping. Insulator has very low conductivity as it lacks free electrons for conduction.
No, sodium is a metal and is not a semiconductor. Semiconductors are materials that have conductivity between that of a conductor and an insulator. Sodium is a good conductor of electricity due to its metallic properties.
conductor:- which allow electron to travel very easily as compare to insulator and semiconductor because of its low energy band gape. insulator:- which can not pass electron as good as conductor because of its band gape energy. energy band: in all the metal,semiconductor and insulator there is energy gape.energy gape is due to arrangement of electron to shell and subshell which is related to quantum mechanics. so the material between conductor and insulator is semiconductor because it has energy gape greater than the conductor and less than the insulator. greater the energy gape less chance for electron to pass through the material
those material having conductivity between insulator and good conductor are known as semiconductors for example germanium and silicon.
Steel is a conductor and not an insulator.
Phosphorus is a poor conductor of heat and electricity. It is actually considered to be a semiconductor, meaning it has intermediate conductivity properties between those of a conductor and an insulator.
Silicon is a good conductor of electricity because it has a crystalline structure that allows electrons to move freely through it. It is a semiconductor, meaning it can conduct electricity under certain conditions, making it widely used in electronic devices. By adding impurities, or "doping", silicon can be tailored to be a better conductor or insulator.
insulator