Editing 1862: Particle Properties
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| [0,∞) in kg | | [0,∞) in kg | ||
| Mass (specifically {{w|rest mass}}) is the measure of an object or particle's resistance to force, as well as its ability to distort {{w|spacetime}} (its gravitational attraction). | | Mass (specifically {{w|rest mass}}) is the measure of an object or particle's resistance to force, as well as its ability to distort {{w|spacetime}} (its gravitational attraction). | ||
− | Theoretically, any object's mass could approach infinity, but mass cannot be below 0 | + | Theoretically, any object's mass could approach infinity, but mass cannot be below 0. The mass units shown (kilograms) are, however, far too large for particles. Some particles, such as photons, have zero rest mass and are therefore massless. |
All particles with rest mass obtain it through confinement, either by the {{w|Higgs field}} (the quarks; leptons; and W, Z, and Higgs bosons) or the strong nuclear force (hadrons). | All particles with rest mass obtain it through confinement, either by the {{w|Higgs field}} (the quarks; leptons; and W, Z, and Higgs bosons) or the strong nuclear force (hadrons). | ||
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==Transcript== | ==Transcript== | ||
+ | {{incomplete transcript|Do NOT delete this tag too soon. Is table alone the best solution? Layout is still not standard.}} | ||
:<big>Particle Properties in Physics</big> | :<big>Particle Properties in Physics</big> | ||
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| Rating | | Rating | ||
− | | [Star rating of 3.5/5 stars | + | | [Star rating of 3.5/5 stars] |
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| String type | | String type | ||
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| Heat | | Heat | ||
− | | [Scale labeled with pepper icons, from 0 (a grayed-out pepper) to 3 | + | | [Scale labeled with pepper icons, from 0 (a grayed-out pepper) to 3. Endpoints are a dot at zero end and an arrow at the other end.] |
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| Street value | | Street value |