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Difference between revisions of "Rest Energy"

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<math>c =</math> The speed of [[light]] (<math>3.00\times10^{8}ms^{-1}</math> in a [[vacuum]]).
 
<math>c =</math> The speed of [[light]] (<math>3.00\times10^{8}ms^{-1}</math> in a [[vacuum]]).
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===Examples===
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{| border="1" style="border-collapse:collapse"
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| style="height:20px; width:150px; text-align:center;"|[[Subatomic Particle|Particle]]
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| style="height:20px; width:150px; text-align:center;"|[[Rest Mass]] / kg
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| style="height:20px; width:150px; text-align:center;"|[[Unified Atomic Mass Units]]
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| style="height:20px; width:150px; text-align:center;"|'''Rest Energy / MeV'''
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|-
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| style="height:20px; width:150px; text-align:center;"|[[Proton]] (<math>p</math>)
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| style="height:20px; width:150px; text-align:center;"|<math>1.67\times10^{-27}</math>
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| style="height:20px; width:150px; text-align:center;"|<math>1.007</math>
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| style="height:20px; width:150px; text-align:center;"|<math>938</math>
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|-
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| style="height:20px; width:150px; text-align:center;"|[[Neutron]] (<math>n</math>)
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| style="height:20px; width:150px; text-align:center;"|<math>1.67\times10^{-27}</math>
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| style="height:20px; width:150px; text-align:center;"|<math>1.009</math>
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| style="height:20px; width:150px; text-align:center;"|<math>939</math>
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|-
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| style="height:20px; width:150px; text-align:center;"|[[Electron]] (<math>e</math>)
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| style="height:20px; width:150px; text-align:center;"|<math>9.11\times10^{-31}</math>
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| style="height:20px; width:150px; text-align:center;"|<math>0.05486</math>
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| style="height:20px; width:150px; text-align:center;"|<math>5.11</math>
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|-
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| style="height:20px; width:150px; text-align:center;"|[[Muon]] (<math>\mu</math>)
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| style="height:20px; width:150px; text-align:center;"|<math>1.88\times10^{-28}</math>
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| style="height:20px; width:150px; text-align:center;"|<math>0.1134</math>
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| style="height:20px; width:150px; text-align:center;"|<math>106</math>
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|-
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| style="height:20px; width:150px; text-align:center;"|[[π-meson]] (<math>\pi^±</math>)
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| style="height:20px; width:150px; text-align:center;"|<math>2.49\times10^{-28}</math>
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| style="height:20px; width:150px; text-align:center;"|<math>0.1500</math>
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| style="height:20px; width:150px; text-align:center;"|<math>140</math>
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|-
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| style="height:20px; width:150px; text-align:center;"|[[π-meson]] (<math>\pi^0</math>)
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| style="height:20px; width:150px; text-align:center;"|<math>2.41\times10^{-28}</math>
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| style="height:20px; width:150px; text-align:center;"|<math>0.1449</math>
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| style="height:20px; width:150px; text-align:center;"|<math>135</math>
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|-
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| style="height:20px; width:150px; text-align:center;"|[[K-meson]] (<math>K^±</math>)
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| style="height:20px; width:150px; text-align:center;"|<math>8.80\times10^{-28}</math>
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| style="height:20px; width:150px; text-align:center;"|<math>0.5300</math>
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| style="height:20px; width:150px; text-align:center;"|<math>494</math>
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|-
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| style="height:20px; width:150px; text-align:center;"|[[K-meson]] (<math>K^0</math>)
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| style="height:20px; width:150px; text-align:center;"|<math>8.87\times10^{-28}</math>
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| style="height:20px; width:150px; text-align:center;"|<math>0.5442</math>
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| style="height:20px; width:150px; text-align:center;"|<math>498</math>
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|-
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| style="height:20px; width:150px; text-align:center;"|[[Photon]] (<math>\gamma</math>)
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| style="height:20px; width:150px; text-align:center;"|<math>0</math>
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| style="height:20px; width:150px; text-align:center;"|<math>0</math>
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| style="height:20px; width:150px; text-align:center;"|<math>0</math>
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|-
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| style="height:20px; width:150px; text-align:center;"|[[Neutrino]] (<math>\nu</math>)
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| style="height:20px; width:150px; text-align:center;"|<math>0</math>
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| style="height:20px; width:150px; text-align:center;"|<math>0</math>
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| style="height:20px; width:150px; text-align:center;"|<math>0</math>
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|}

Revision as of 15:40, 19 July 2019

Key Stage 5

Meaning

Rest energy is the energy associated with the mass of a particle, by the mass-energy equivalence, which is stationary relative to the observer.

About Rest Energy

The rest energy of a subatomic particle is released in an annihilation with its antiparticle.
The total rest energy is the product of the rest mass and the speed of light squared.
The rest energy of subatomic particles is usually quoted in electron-volts (eV).

Equation

The rest energy is given by the equation

\(E=mc^2\)

Where

\(E =\) The rest energy of a particle.

\(m =\) The rest mass of a particle.

\(c =\) The speed of light (\(3.00\times10^{8}ms^{-1}\) in a vacuum).

Examples

Particle Rest Mass / kg Unified Atomic Mass Units Rest Energy / MeV
Proton (\(p\)) \(1.67\times10^{-27}\) \(1.007\) \(938\)
Neutron (\(n\)) \(1.67\times10^{-27}\) \(1.009\) \(939\)
Electron (\(e\)) \(9.11\times10^{-31}\) \(0.05486\) \(5.11\)
Muon (\(\mu\)) \(1.88\times10^{-28}\) \(0.1134\) \(106\)
π-meson (\(\pi^±\)) \(2.49\times10^{-28}\) \(0.1500\) \(140\)
π-meson (\(\pi^0\)) \(2.41\times10^{-28}\) \(0.1449\) \(135\)
K-meson (\(K^±\)) \(8.80\times10^{-28}\) \(0.5300\) \(494\)
K-meson (\(K^0\)) \(8.87\times10^{-28}\) \(0.5442\) \(498\)
Photon (\(\gamma\)) \(0\) \(0\) \(0\)
Neutrino (\(\nu\)) \(0\) \(0\) \(0\)