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electrical conductivity of graphite?

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What is the electrical conductivity of graphite?

The electrical conductivity of graphite is high due to its structure of bonded carbon atoms, allowing for the flow of electrons.


How does the graphite's electrical conductivity contribute to its usefulness in various applications?

Graphite's high electrical conductivity allows it to efficiently conduct electricity, making it useful in applications such as batteries, electrical components, and electrodes. This property enables graphite to be a key material in electronics and energy storage devices.


One molecular solid which exhibit electrical conductivity?

The graphite form of carbon.


Why graphite is a better conductor than diamond?

Graphite is a better conductor than diamond because graphite has delocalized electrons in its structure that can move freely along its layers, allowing for better electrical conductivity. In contrast, diamond has a tightly bound structure with no free electrons, leading to poor electrical conductivity.


What property of graphite makes it suitable for use as electrodes?

Graphite has high electrical conductivity due to its delocalized electrons, making it suitable for use as electrodes. Its layered structure also allows for easy movement of electrons within the material, enhancing its performance as an electrode.


What products might copper and graphite be best suited for?

Copper is commonly used in electrical wiring and plumbing due to its high conductivity and corrosion resistance. Graphite, on the other hand, is often used in lubricants, batteries, and as a component in pencils due to its low friction properties and electrical conductivity.


Do elements that have high electric conductivity also have high thermal conductivity?

Not necessarily. While there is some correlation between electrical and thermal conductivity in metals, there are exceptions. For example, diamond is a good thermal insulator despite being a good electrical insulator. Additionally, materials like ceramics can have low electrical conductivity but high thermal conductivity.


What properties do carbon and graphite fibers have?

Carbon fibers are strong, lightweight, and have excellent thermal and electrical conductivity. Graphite fibers, which are derived from carbon fibers, also exhibit high strength and stiffness, as well as good corrosion resistance. Both carbon and graphite fibers are commonly used in applications requiring high performance and durability, such as aerospace and automotive industries.


Is graphite a conductor or an insulator of electricity?

Graphite conducts electricity.


Which one of these is true about graphite?

Graphite is a form of carbon where the carbon atoms are arranged in a layered structure, giving it lubricating properties and electrical conductivity.


What is carbon's conductivity?

Carbon is classified as a poor conductor of electricity. However, there are forms of carbon, such as graphite, that exhibit some level of electrical conductivity due to the presence of delocalized electrons in the material's structure.


Do nonmetals have electrical conductivity?

Most nonmetals do not have electrical conductivity because they lack the free electrons required to conduct electricity. However, some nonmetals like graphite and silicon can conduct electricity to some extent due to their unique structures.