upper right hand corner
In the right corner of the periodic table.
An element with a higher electronegativity value would be more likely to pull in electrons during the formation of a compound. Elements like fluorine, oxygen, and nitrogen, which are towards the upper right of the periodic table, tend to have high electronegativity values.
you only find 1 type of atom in an element
This value is identical for isotopes.
The bond between elements X and Y would be considered as polar covalent since the electronegativity difference is 2.1. In a polar covalent bond, the shared electrons are drawn more towards the more electronegative element, resulting in a partial positive charge on the less electronegative element and a partial negative charge on the more electronegative element.
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If only the monopositive ions are considered, helium would create the ion with highest electronegativity.
Electronegativity is kind of a "made-up" thing as opposed to an actual quantity that can be experimentally measured. Fluorine is usually considered to have the highest electronegativity, though the precise value depends on exactly what definition and scale you're using and for "spectroscopic electronegativity" neon actually has the highest electronegativity of all.
Electronegative charge increases across the periodic table to the right and up into the corner ( excepting the Nobel gasses ), so the two elements that would have higher electronegativity in that direction and in order. Oxygen and fluorine.
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In the right corner of the periodic table.
An element with a higher electronegativity value would be more likely to pull in electrons during the formation of a compound. Elements like fluorine, oxygen, and nitrogen, which are towards the upper right of the periodic table, tend to have high electronegativity values.
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Oxygen would have the greatest attraction for electrons due to its high electronegativity value compared to Boron and Sulfur. Electronegativity is a measure of an atom's ability to attract shared electrons in a covalent bond. Oxygen's high electronegativity makes it more attractive to electrons than Boron and Sulfur.
The most likely electronegativity value for a metallic element would be low, typically between 0.7 to 1.2 on the Pauling scale. Metallic elements tend to lose electrons easily and have low affinity for gaining electrons, resulting in low electronegativity values.
Oxygen has the second highest electronegativity of any element, second only to fluorine. Since it would be unusual to have fluorine in the electron transport chain, we can safely expect that oxygen will have the highest electronegativity in the chain.
you only find 1 type of atom in an element