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What groups of metals on the periodic table would have the most similar properties?

Metals in the same group on the periodic table tend to have similar properties due to their shared number of valence electrons. Thus, metals in groups 1 (alkali metals) and 2 (alkaline earth metals) would have more similar properties compared to metals in different groups.


What is a physical property shared by all metalloids?

They are all solids. They have properties of metals and non metals.


What physical properties are shared by most non-metals?

They have high ionization energy and high electronegativity.


What chemical properties are shared by most metals?

Metals conduct electricity. Metals ionise [lose one or more electrons] to form positively charged ions - cations.


Which properties are explained by the pool-of-shared-electrons model for metals?

Conductivity (of both heat and electricity) and malleability.


What are shared properties?

Properties that are shared


Name two properties shared by metals?

Metals have high electrical conductivity, allowing them to easily transmit electricity. They also have metallic luster, giving them a shiny appearance.


What happends to valence electrons in an ionic bond?

In bonds between metals and non- metals thety are transferred rather than shared


How are metallic bonds different to covalent bonds?

Metallic bonds are bonds between metals. They consist of valence electrons in delocalized bonds covering the whole crystal. These electrons can move freely and are responsible for the special properties of metals such as electrical conductivity. Covalent bonds are electrons being shared and are usually between non-metals. They are localized to the atoms which are sharing them, resulting in individual molecules.


What is a single covalent bond between two atoms?

It is one pair of electrons shared between two non-metals.


Which two properties are explained by the pool of shared electrons model for metals?

The pool of shared electrons model for metals, also known as the metallic bonding model, explains two key properties: electrical conductivity and malleability. The delocalized electrons allow metals to conduct electricity efficiently, as they can move freely throughout the metallic lattice. Additionally, the mobility of these electrons enables metal atoms to slide past one another without breaking the metallic bond, resulting in the malleable nature of metals.


What characteristics are shared by all metals and alkaline earth metals?

They are highly- reactive metals