Question 1: Using the data for the mass of a proton and a neutron given previously determine the binging energy in a mole of 15N atoms, N = 6.02 x 1023 mol1. 1 proton = 1.00727647 amu, 1 neutron 1.008665 amu, c = 3 x 10° m s1, 1 kg m? s² = 1 J, 1 amu = 1.66 x 1024 g.

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Question 1: Using the data for the mass of a proton and a neutron given previously determine the binging energy in a mole of
15N atoms, N = 6.02 x 1023 mol1.
1 proton = 1.00727647 amu, 1 neutron = 1.008665 amu, c = 3 x 10 ms', 1 kg m2 s? =1J, 1 amu = 1.66 x 1024 g.
Transcribed Image Text:Question 1: Using the data for the mass of a proton and a neutron given previously determine the binging energy in a mole of 15N atoms, N = 6.02 x 1023 mol1. 1 proton = 1.00727647 amu, 1 neutron = 1.008665 amu, c = 3 x 10 ms', 1 kg m2 s? =1J, 1 amu = 1.66 x 1024 g.
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Nuclear binding energy refers to the energy that is required to split up nucleus of an atom into its components, i.e. protons and neutrons. E=m.c2For N15 nucleus the nuclear binding energy can be calculated as: E= {[Z m (H1) + Nmn] - m(N15)} c2

where, m (H1) = mass of a proton                 mn = mass of a neutron           m(N15) = atomic mass of N15                   Z = atimic number                   N = number of neutrons in the nucleus

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