Problem 1 Energy must be supplied to break a single 2"Al (atomic number: 13) nucleus into separated protons and neutrons. If the nucleus has a mass of 26 .9815386 amu. (mass of proton = 1.0073, mass of neutron = 1.0087, c = 3.00 x 10° m/s, 1 MeV = 1.60 x 1013 J, 1 amu or u = 1.66 x 10-27 kg, Avogadro's number: 6.023 x 1023) What is the total mass (in amu) of the nucleons of the given nucleus? b. What is the mass defect (in kg) of a single nucleus? Determine the nuclear binding energy (in MeV) of a single nucleus. d. Compute for the energy releascd (in Joules) upon the formation of 1 mole of Al-27 nucleus. a. с.

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Problem 1
Energy must be supplied to break a single 2"Al (atomic number: 13) nucleus into separated protons and
neutrons. If the nucleus has a mass of 26 .9815386 amu. (mass of proton = 1.0073, mass of neutron = 1.0087,
c = 3.00 x 10° m/s, 1 MeV = 1.60 x 10-13 J, 1 amu or u = 1.66 x 10-27 kg, Avogadro's number: 6.023 x 1023)
%3D
%3D
%3D
X
What is the total mass (in amu) of the nucleons of the given nucleus?
b. What is the mass defect (in kg) of a single nucleus?
Determine the nuclear binding energy (in MeV) of a single nucleus.
d. Compute for the energy released (in Joules) upon the formation of 1 mole of Al-27 nucleus.
a.
C.
Transcribed Image Text:Problem 1 Energy must be supplied to break a single 2"Al (atomic number: 13) nucleus into separated protons and neutrons. If the nucleus has a mass of 26 .9815386 amu. (mass of proton = 1.0073, mass of neutron = 1.0087, c = 3.00 x 10° m/s, 1 MeV = 1.60 x 10-13 J, 1 amu or u = 1.66 x 10-27 kg, Avogadro's number: 6.023 x 1023) %3D %3D %3D X What is the total mass (in amu) of the nucleons of the given nucleus? b. What is the mass defect (in kg) of a single nucleus? Determine the nuclear binding energy (in MeV) of a single nucleus. d. Compute for the energy released (in Joules) upon the formation of 1 mole of Al-27 nucleus. a. C.
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