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An electron positron pair (rest mass of each particle = 0.51 MeV) is produced by a γ -ray photon of energy 2.42 MeV. The K.E. (in MeV) imparted to each of the charged particles shall be :
    Correct answer is '0.7'. Can you explain this answer?
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    An electron positron pair (rest mass of each particle = 0.51MeV) is pr...
    Rest mass energy + kinetic energy = energy of gamma photon
    The correct answer is: 0.7
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    An electron positron pair (rest mass of each particle = 0.51MeV) is pr...
    Process in which a photon with energy greater than or equal to 1.02MeV interacts with the nucleus of an atom. This process is known as pair production.

    In pair production, the photon interacts with the electric field of the nucleus and is converted into an electron-positron pair. The energy of the photon is converted into the rest mass energy of the two particles.

    The rest mass energy of an electron or positron is given by the equation E = mc^2, where E is the energy, m is the rest mass, and c is the speed of light. Given that the rest mass of each particle is 0.51MeV, the total energy required to produce the pair is 2 * 0.51MeV = 1.02MeV.

    It is important to note that the energy of the photon must be greater than or equal to the rest mass energy of the particles in order for pair production to occur. This is due to the conservation of energy and momentum.

    Pair production is a fundamental process in particle physics and is used to explain the creation of particle-antiparticle pairs in high-energy interactions. It is also an important process in medical imaging techniques such as positron emission tomography (PET), where positrons are used to detect and visualize metabolic processes in the human body.
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    An electron positron pair (rest mass of each particle = 0.51MeV) is produced by aγ-ray photon of energy 2.42MeV. The K.E. (inMeV) imparted to each of the charged particles shall be :Correct answer is '0.7'. Can you explain this answer?
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