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  2. Hydrogen ion - Wikipedia

    en.wikipedia.org/wiki/Hydrogen_ion

    The hydrogen anion, with its loosely held two-electron cloud, has a larger radius than the neutral atom, which in turn is much larger than the bare proton of the cation. Hydrogen forms the only cation that has no electrons, but even cations that (unlike hydrogen) still retain one or more electrons are still smaller than the neutral atoms or ...

  3. Hydrogen-like atom - Wikipedia

    en.wikipedia.org/wiki/Hydrogen-like_atom

    A hydrogen-like atom (or hydrogenic atom) is any atom or ion with a single valence electron.These atoms are isoelectronic with hydrogen.Examples of hydrogen-like atoms include, but are not limited to, hydrogen itself, all alkali metals such as Rb and Cs, singly ionized alkaline earth metals such as Ca + and Sr + and other ions such as He +, Li 2+, and Be 3+ and isotopes of any of the above.

  4. List of elements by stability of isotopes - Wikipedia

    en.wikipedia.org/wiki/List_of_elements_by...

    An even number of protons or neutrons is more stable (higher binding energy) because of pairing effects, so even–even nuclides are much more stable than odd–odd. One effect is that there are few stable odd–odd nuclides: in fact only five are stable, with another four having half-lives longer than a billion years. [citation needed]

  5. Atom - Wikipedia

    en.wikipedia.org/wiki/Atom

    Atoms with equal numbers of protons but a different number of neutrons are different isotopes of the same element. For example, all hydrogen atoms admit exactly one proton, but isotopes exist with no neutrons (hydrogen-1, by far the most common form, [57] also called protium), one neutron , two neutrons and more than two neutrons.

  6. Ionization - Wikipedia

    en.wikipedia.org/wiki/Ionization

    The trend in the ionization energy of atoms is often used to demonstrate the periodic behavior of atoms with respect to the atomic number, as summarized by ordering atoms in Mendeleev's table. This is a valuable tool for establishing and understanding the ordering of electrons in atomic orbitals without going into the details of wave functions ...

  7. Are PFAS really 'forever chemicals'? It's complicated. Here's ...

    www.aol.com/pfas-really-forever-chemicals...

    Broadly speaking, all PFAS have a chain of carbon atoms bonded to fluorine atoms. Some substances have every carbon-hydrogen bond replaced by a fluorine atom (per-fluorinated) others have only ...

  8. Intermolecular force - Wikipedia

    en.wikipedia.org/wiki/Intermolecular_force

    Ion–dipole and ion–induced dipole forces are stronger than dipole–dipole interactions because the charge of any ion is much greater than the charge of a dipole moment. Ion–dipole bonding is stronger than hydrogen bonding. [8] An ion–dipole force consists of an ion and a polar molecule interacting.

  9. The Vacuum of Space Won't Last Forever. In Fact, It ... - AOL

    www.aol.com/vacuum-space-wont-last-forever...

    Eventually, the vacuum of space will decay, and things will fall apart—in a zillion years. Our universe is glued together by quantum fields, like the Higgs, which set much of our physics.