What is the minimum total energy released whenan electron and its antiparticle (positron)
annihilate each other?
(1) 1.64 × 10^–13 J (3) 5.47 × 10^–22 J
(2) 8.20 × 10^–14 J (4) 2.73 × 10^–22 J

Answers

Answer 1
Answer:

Answer:

(1) 1.64 * 10^(-13) J

Explanation:

Energy released in this process is given by

Q = \Delta m c^2

here we have

\Delta m = 9.1 * 10^(-31) kg

since here mass of two electrons converted into energy so we have

Q = 2(9.1 /times 10^(-31))(3* 10^8)^2

Q = 1.64 * 10^(-13) J

so here energy released is the energy of rest mass energy due to two charges i.e. electrons and positrons

Answer 2
Answer:

The minimum total energy released when an electron and its antiparticle (positron) annihilate each other is 1.64 x 10⁻¹³ J.

What is the minimum total energy released?

The minimum total energy released when an electron and its antiparticle (positron) annihilate each other is calculated as follows;

E = Δmc²

where;

  • m is the mass of the two electrons
  • c is speed of light

E = (2 x 9.11 x 10⁻³¹) x (3 x 10⁸)²

E = 1.64 x 10⁻¹³ J

Learn more about energy here: brainly.com/question/25959744

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