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  2. Chemical bond - Wikipedia

    en.wikipedia.org/wiki/Chemical_bond

    A chemical bond is the association of atoms or ions to form molecules, crystals, and other structures. The bond may result from the electrostatic force between oppositely charged ions as in ionic bonds or through the sharing of electrons as in covalent bonds, or some combination of these effects.

  3. Bonding in solids - Wikipedia

    en.wikipedia.org/wiki/Bonding_in_solids

    Intermediate organization of covalent bonds: Regarding the organization of covalent bonds, recall that classic molecular solids, as stated above, consist of small, non-polar covalent molecules. The example given, paraffin wax , is a member of a family of hydrocarbon molecules of differing chain lengths, with high-density polyethylene at the ...

  4. What are bonds? How they work—and how to invest in them - AOL

    www.aol.com/finance/bonds-invest-them-220136926.html

    Put bond: This type of bond gives the investor the right to demand early repayment of the principal, effectively canceling the loan. Floating-rate bonds: Not all bonds are fixed-income bonds.

  5. Covalent bond - Wikipedia

    en.wikipedia.org/wiki/Covalent_bond

    Covalent bonds are also affected by the electronegativity of the connected atoms which determines the chemical polarity of the bond. Two atoms with equal electronegativity will make nonpolar covalent bonds such as H–H. An unequal relationship creates a polar covalent bond such as with H−Cl.

  6. How do bonds generate returns for investors? - AOL

    www.aol.com/finance/bonds-generate-returns...

    Interest payments are the primary way bonds generate returns for investors.

  7. Molecule - Wikipedia

    en.wikipedia.org/wiki/Molecule

    The simplest of molecules is the hydrogen molecule-ion, H 2 +, and the simplest of all the chemical bonds is the one-electron bond. H 2 + is composed of two positively charged protons and one negatively charged electron , which means that the Schrödinger equation for the system can be solved more easily due to the lack of electron–electron ...

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