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== Interaction of free protons with ordinary matter == Although protons have affinity for oppositely charged electrons, this is a relatively low-energy interaction and so free protons must lose sufficient velocity (and [[kinetic energy]]) in order to become closely associated and bound to electrons. High energy protons, in traversing ordinary matter, lose energy by collisions with [[atomic nuclei]], and by [[ionization]] of atoms (removing electrons) until they are slowed sufficiently to be captured by the [[electron cloud]] in a normal atom. However, in such an association with an electron, the character of the bound proton is not changed, and it remains a proton. The attraction of low-energy free protons to any electrons present in normal matter (such as the electrons in normal atoms) causes free protons to stop and to form a new chemical bond with an atom. Such a bond happens at any sufficiently "cold" temperature (that is, comparable to temperatures at the surface of the Sun) and with any type of atom. Thus, in interaction with any type of normal (non-plasma) matter, low-velocity free protons do not remain free but are attracted to electrons in any atom or molecule with which they come into contact, causing the proton and molecule to combine. Such molecules are then said to be "[[protonated]]", and chemically they are simply compounds of hydrogen, often positively charged. Often, as a result, they become so-called [[Brønsted acid]]s. For example, a proton captured by a water molecule in water becomes [[hydronium]], the [[aqueous]] [[cation]] {{H3O+}}.
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