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  1. 27 Σεπ 2024 · hydrogen bonding, interaction involving a hydrogen atom located between a pair of other atoms having a high affinity for electrons; such a bond is weaker than an ionic bond or covalent bond but stronger than van der Waals forces.

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      Configuration, in chemistry, the spatial arrangement of...

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  2. Learn what a hydrogen bond is, how it forms, and its properties and characteristics. See examples of intramolecular and intermolecular hydrogen bonds in water, ethanol, ammonia, and hydrogen fluoride.

  3. 7 Οκτ 2024 · A hydrogen bond is a type of attractive (dipole-dipole) interaction between an electronegative atom and a hydrogen atom bonded to another electronegative atom. This bond always involves a hydrogen atom. Hydrogen bonds can occur between molecules or within parts of a single molecule.

  4. In chemistry, a hydrogen bond (or H-bond) is primarily an electrostatic force of attraction between a hydrogen (H) atom which is covalently bonded to a more electronegative "donor" atom or group (Dn), and another electronegative atom bearing a lone pair of electrons—the hydrogen bond acceptor (Ac).

  5. chem.libretexts.org › Bookshelves › Physical_and_Theoretical_Chemistry_TextbookHydrogen Bonding - Chemistry LibreTexts

    30 Ιαν 2023 · A hydrogen bond is an intermolecular force (IMF) that forms a special type of dipole-dipole attraction when a hydrogen atom bonded to a strongly electronegative atom exists in the vicinity of another electronegative atom with a lone pair of electrons.

  6. 21 Σεπ 2022 · A hydrogen bond is an intermolecular attractive force in which a hydrogen atom that is covalently bonded to a small, highly electronegative atom is attracted to a lone pair of electrons on an atom in a neighboring molecule. Hydrogen bonds are very strong compared to other dipole interactions.

  7. 23 Σεπ 2020 · A hydrogen bond is an attractive dipole-dipole interaction between a partially positive charged hydrogen atom in one molecule and a partially negative charged atom in the same or different molecule. As the name suggests, a hydrogen bond always involves a hydrogen atom, but the other atom can be any more electronegative element.

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