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The most likely oxidation state of an element is primarily determined by its position in the Periodic Table, particularly its group number and electron configuration. Elements in the same group typically exhibit similar oxidation states due to their valence electron counts. For instance, alkali metals usually have a +1 oxidation state, while halogens typically exhibit a -1 state. Additionally, factors like electronegativity, atomic size, and the chemical environment can also influence the preferred oxidation state.

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What determines the most likely oxidation state of element?

The most likely oxidation state of an element is determined by the number of valence electrons it has. Elements tend to react in a way that allows them to achieve a full outer electron shell, often following the octet rule. This leads to the most common oxidation state for that element.


What determines the most likely oxidation state of an element?

the number of electrons the element needs to lose or gain to have a full valence shell


What is the most likely oxidation state nitrogen?

-3


What is the most likely oxidation state of Cl?

the most common oxidation state of chlorine is -1.


What is most likely oxidation state of Al?

This value is 3+.


What is the most likely oxidation state of aluminum (Al)?

+3


What element is most likely to have an oxidation state of 2?

The highest oxidation state ever achieved by an element is +8. This oxidation state can be found in 3 elements: Osmium, Ruthenium and Xenon.The synthetic element Hassium is also expected to have this oxidation state.


What is the most likely oxidation state of Al?

The highest oxidation state which can be achieved by any element is +8. After all experiments, this state is only found in Osmium, Ruthenium and Xenon. But the synthetic element Hassium is also expected to have this oxidation state.


which of the following elements is most likely to have an oxidation state of +2?

Beryllium, Magnesium, Calcium, Strontium, Barium, and Radium all have an oxidation state of plus 2.


What is the most likely oxidation state of Cl (chlorine)?

In one's initial studies of chemistry it is -1. However, don't forget that in chlorine itself the O.S. is zero.


Two would be likely to form a compound of formula XY2?

Two elements with a +2 oxidation state and a -1 oxidation state would likely form a compound with the formula XY2. For example, magnesium (Mg) and oxygen (O) can form magnesium oxide (MgO), where magnesium has a +2 oxidation state and oxygen has a -2 oxidation state.


What is the most likely oxidation state of MnCI2?

The most common oxidative states of manganese are +2, +3, +4, +6, and +7.