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Group one metals, also known as alkali metals, have high electrical conductivity due to their single valence electron, which is easily released to conduct electricity. Metals like lithium, sodium, and potassium exhibit excellent conductivity, with conductivity increasing down the group as atomic size increases and electrons become more mobile. Their metallic bonding allows for free movement of electrons, enhancing their ability to conduct electric current efficiently.

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One property of most nonmetals is that they are what?

High ionization energy and poor electrical conductivity


What specific property of metals accounts for their unusual conductivity?

Outermost orbital shell of a metal has very few electrons with corresponding values of energy. This specific property accounts for the unusual electrical conductivity of metals. Highest conductivity occurs in metals with only one valence electron.


How can you put conduct in a sentence?

Electrical conductivity is one important factor among the differences between various metals.


What is 3 examples of condutor?

Copper: Copper is one of the most common electrical conductors due to its high conductivity and availability. Aluminum: Aluminum is also a widely used conductor for electrical transmission lines and cables. Silver: Silver has the highest electrical conductivity of all metals, making it an excellent choice for specialized applications where high conductivity is required.


How can one determine electrical conductivity in a material or substance?

One can determine electrical conductivity in a material or substance by measuring its ability to conduct electricity. This can be done by using a device called a conductivity meter or by performing a simple experiment to test the material's conductivity.


How can one determine the electrical conductivity of a solution?

The electrical conductivity of a solution can be determined by measuring the ability of the solution to conduct electricity. This can be done using a conductivity meter, which measures the electrical conductivity in units of siemens per meter (S/m). The higher the conductivity, the better the solution can conduct electricity.


Why minerals are metal and non-metal?

Metals considered minerals are composed of one element. Those elements considered metallic have some shared properties in electrical conductivity and luster.


List three properties of metals that are a result of metallic bonds?

High electrical and thermal conductivity due to the free movement of electrons within the metallic structure. Ductility and malleability, allowing metals to be easily shaped and formed without breaking. Luster or shine, resulting from the ability of electrons to absorb and re-emit light energy.


One of the most metallic metals?

Iron is one of the most metallic metals due to its high electrical and thermal conductivity, as well as its ability to form metallic bonds with other elements. It is widely used in construction, manufacturing, and engineering due to its strength and durability.


What metal is number one in electrical conductivity and heat?

Silver is the best conductor of both electricity and heat among metals due to its high density of free electrons, which allows for easy movement of charge and thermal energy. Copper also has excellent conductivity properties and is commonly used in electrical wiring and heat exchangers.


Which are some effects of metallic bonding?

Some effects of metallic bonding include high electrical and thermal conductivity, malleability, and ductility. Metallic bonds allow for the delocalized movement of electrons, making metals good conductors of electricity and heat. Additionally, the ability of metal atoms to slide past one another without breaking the overall structure gives metals their characteristic properties of being able to be hammered into thin sheets (malleability) and stretched into wires (ductility).


The electrical conductivity of metals which is expressed in ohm-1 m-1 is of the order of?

In the range of 1 x 10^7 1/ohm-m . That's one times ten to the seventh power.