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Difference between revisions of "Annihilation"

(About Annihilation)
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===About Annihilation===
 
===About Annihilation===
 
*'''Annihilation''' occurs when [[particle]]s of [[matter]] and [[antimatter]] interact at extremely close range.
 
*'''Annihilation''' occurs when [[particle]]s of [[matter]] and [[antimatter]] interact at extremely close range.
*Follows the principle of [[mass-energy equivalence]] (E=mc²).
+
*Follows the principle of [[Mass-Energy Equivalence|mass-energy equivalence]] (E=mc²).
 
*During '''annihilation''' the total [[Rest Mass|rest mass]], as well as the [[Kinetic Energy|kinetic energy]], of the [[particle]]s is equal to the total [[energy]] of the two [[Gamma-ray|gamma ray]] [[photon]]s.
 
*During '''annihilation''' the total [[Rest Mass|rest mass]], as well as the [[Kinetic Energy|kinetic energy]], of the [[particle]]s is equal to the total [[energy]] of the two [[Gamma-ray|gamma ray]] [[photon]]s.
 
*In '''annihilation''' [[Conservation of Momentum|conservation of momentum]] is conserved due to the [[momentum]] of the [[Gamma-ray|gamma ray]] [[photon]]s travelling in opposite directions.
 
*In '''annihilation''' [[Conservation of Momentum|conservation of momentum]] is conserved due to the [[momentum]] of the [[Gamma-ray|gamma ray]] [[photon]]s travelling in opposite directions.

Revision as of 09:17, 19 May 2024

Key Stage 5

Meaning

Annihilation is the process in which matter and antimatter interact converting all their rest mass into energy resulting in two or more gamma ray photons being emitted in opposite directions.

About Annihilation

Equation

Assuming both particles are at rest

\(2E_0 = 2hf\)

Where

\(E_0\) = Rest Mass Energy of each particle

\(hf\) = The energy of eachgamma ray photon emitted

\(h\) = Planck's Constant

\(f\) = The frequency of the emitted photon


In the special case that one of the particles is in motion

\(2E_0 + E_k = 2hf\)

Where

\(E_k\) = The kinetic energy of the particle

Examples