Which statement below is true?- Hint: Consider how properties of a covalent bond are measured. O One mole of hydrogen atoms is more stable than one mole of hydrogen molecules. O The bond energy is the minimum energy required to bring about pairing of the electrons in a covalent bond. O The buildup of electron density between two atoms repels each nuclei, making them less stable. O As the distance between the nuclei decreases when forming a covalent bond, there is a corresponding decrease in the probability of finding both electrons near either nucleus. O The two electrons in a single covalent bond must be paired as required by the Pauli exclusion principle.

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Chapter1: Chemical Foundations
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Which statement below is true?-
Hint: Consider how properties of a covalent bond are measured.
O One mole of hydrogen atoms is more stable than one mole of hydrogen molecules.
O The bond energy is the minimum energy required to bring about pairing of the electrons in a covalent bond.
O The buildup of electron density between two atoms repels each nuclei, making them less stable.
O As the distance between the nuclei decreases when forming a covalent bond, there is a corresponding decrease in the probability of finding both
electrons near either nucleus.
O The two electrons in a single covalent bond must be paired as required by the Pauli exclusion principle.
Transcribed Image Text:Which statement below is true?- Hint: Consider how properties of a covalent bond are measured. O One mole of hydrogen atoms is more stable than one mole of hydrogen molecules. O The bond energy is the minimum energy required to bring about pairing of the electrons in a covalent bond. O The buildup of electron density between two atoms repels each nuclei, making them less stable. O As the distance between the nuclei decreases when forming a covalent bond, there is a corresponding decrease in the probability of finding both electrons near either nucleus. O The two electrons in a single covalent bond must be paired as required by the Pauli exclusion principle.
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