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- Proton (5009 bytes)
25: ! align="center" bgcolor=gray | Properties
36: | 1.602 176 53(14) × 10<sup>−19</sup> [[Coulomb|C]]
41: |[[Quark]] Composition:
46: ... about 10<sup>35</sup> years, although some theories predict that the [[proton decay|proton may decay]...
50: ...ns in the nucleus determines the chemical properties of the atom and which [[chemical element]] it is. - Neutron (7687 bytes)
15: <tr><th align="center" bgcolor=gray>Properties</th></tr>
22: <tr><td>[[Quark]] composition: </td><td>2 Down, 1 Up</td></tr>
32: ... and consists of two down [[quark]]s and one up [[quark]]. The neutron's [[antimatter]] equivalent is the...
34: ...es it impossible to observe them directly, and makes them very important as agents in nuclear change.
36: ...ree neutron goes on its way unchecked until it makes a "head-on" collision with an atomic nucleus. Sin... - Matter (1902 bytes)
1: ...is one), which mediate the [[four fundamental forces]], are thus not considered matter, even though th...
3: ...ion]]. [[Chemistry]] is the [[science]] that studies how nuclei and electrons combine to form [[chemic...
5: ...]. In small quantities matter can exhibit properties which are entirely different from those of the bu...
9: *[[Phases of matter]]
10: *[[Particle physics]], which provides a bit of historical background - Temperature (22519 bytes)
1: ...e of the average [[kinetic energy]] of the particles in a sample of matter.
3: ==General description==
4: The formal properties of temperature are studied in [[thermodynamics]].
6: ... temperature system, until thermal equilibrium is established. This heat transfer may occur via [[heat...
8: ...the system. Thus, an increase in temperature corresponds in an increase in the rate of movement of th...
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