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What Do Beryllium Magnesium And Calcium Have In Common

Beryllium, magnesium, calcium, strontium, barium,” and radium are among the alkaline earth metals. Both of these elements’ outer electron structure is similar. All are shiny, smooth, but they are heavier than alkali metals. All react with water to produce hydrogen gas and the metal hydroxide. These flame tests are useful in determining metals, but not all react well with water; the alkaline metal reacts more strongly with hydrogen gas or the metal hyroxide, although less so than alkali metal metal alloys. The group is collectively known as the alkalaline earth metal group.

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What Do Beryllium Magnesium And Calcium Have In Common – Answer & Related Questions

Because the outer electron structure of all of these elements is similar, they have somewhat similar chemical and physical properties. All are shiny, smooth, and durable, although they are heavier than alkali metals, and the bulk of them are white or silvery colored.

What Is Same About The Electron Structure Of Beryllium Magnesium And Calcium?

Beryllium, Magnesium and calcium are also included in the same family. If the elements are part of the same family, they have the exact number of valence electrons in their outermost shell. Thus, their valency is 1.

Are Beryllium Magnesium And Calcium In The Same Group?

Barium, beryllium calcium, magnesium, and strontium are all related to a class of chemicals known as “alkaline earth metals.” Although these substances are related in their abundance and behavior in ground water and potential health hazards, they are not similar.

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What Is The Similarity Between Beryllium And Magnesium?

Beryllium and Magnesium both belong to same group in the periodic table which is group 2. Both of them are small and have a higher ionizing capacity.

What Do The Elements Beryllium Magnesium And Calcium Have In Common?

All of the elements that are present in the 2nd group of Alkaline Earth Metals are listed.
Both of the elements in this group have two valence electrons in their outer shell, making it possible for them to lose electron and establish ionic bonds with other elements that give them greater stability.
The elements in the second group are more stable than those in their outer shells.
They are made up of all of the key elements of this second group and have more stable relationships with each other.
When it loses electrons, the second group has greater stability and is more stable than the other groups.

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