Question

In: Physics

The most common isotope of boron is 115B. part b) Calculate this binding energy from equation...

The most common isotope of boron is 115B.

part b) Calculate this binding energy from equation EB=C1A−C2A2/3−C3Z(Z−1)/A1/3−C4(A−2Z)2/A±C5A−4/3. Express your answer using four significant figures. (in MeV)

part c) Why is the fifth term zero?

Solutions

Expert Solution


Related Solutions

Calculate the total binding energy and the binding energy per nucleon of (a) 7 Be, (b)...
Calculate the total binding energy and the binding energy per nucleon of (a) 7 Be, (b) 56 Fe
Calculate (in MeV) the binding energy per nucleon for 14N. Calculate (in MeV) the binding energy...
Calculate (in MeV) the binding energy per nucleon for 14N. Calculate (in MeV) the binding energy per nucleon for 56Fe. Calculate (in MeV) the binding energy per nucleon for 207Pb.
Calculate the nuclear binding energy (in joules) and the nuclear binding energy per nucleon of: 113...
Calculate the nuclear binding energy (in joules) and the nuclear binding energy per nucleon of: 113 Cd 48 ​ (112.904401 amu) (Round each final answer to 4 significant figures.) ______J _______J/nucleon
Part1. Calculate the nuclear binding energy (in J) and the nuclear binding energy per nucleon of...
Part1. Calculate the nuclear binding energy (in J) and the nuclear binding energy per nucleon of 241 Pu 94 (241.0568453 amu). Part 2. A freshly isolated sample of 90Y was found to have an activity of 8.2 × 105 disintegrations per minute at 1:00 p.m. on December 3, 2006. At 2:15 p.m. on December 17, 2006, its activity was measured again and found to be 2.2 × 104 disintegrations per minute. Calculate the half-life of 90Y.
H-2 has an atomic mass of 2.013098 u. Calculate its binding energy. Calculate the binding energy...
H-2 has an atomic mass of 2.013098 u. Calculate its binding energy. Calculate the binding energy per nucleon for H-2. A clock mechanism at rest has a period of exactly 1 second. When this clock is observed while moving with a speed of 0.89 c, what is its period?
H-2 has an atomic mass of 2.013098 u. Calculate its binding energy. Calculate the binding energy...
H-2 has an atomic mass of 2.013098 u. Calculate its binding energy. Calculate the binding energy per nucleon for H-2.
62Ni has the largest known binding energy per nucleon. Calculate the binding energy for the complete...
62Ni has the largest known binding energy per nucleon. Calculate the binding energy for the complete nucleus in kJ/mol and MeV and the binding energy per nucleon in MeV/nucleon given mNi-62 = 61.9283451 amu, mp = 1.00727647 amu, mn = 1.00866492 amu, and 1 amu = 1.6605387310-27 kg. E = ___________________ kJ/mol = ____________________ MeV E/nucleon = ____________________ MeV/nucleon
2Ni has the largest known binding energy per nucleon. Calculate the binding energy for the complete...
2Ni has the largest known binding energy per nucleon. Calculate the binding energy for the complete nucleus in kJ/mol and MeV and the binding energy per nucleon in MeV/nucleon given mNi-62 = 61.9283451 amu, mp = 1.00727647 amu, mn = 1.00866492 amu, and 1 amu = 1.6605387310-27 kg. E = ___________________ kJ/mol = ____________________ MeV E/nucleon = ____________________ MeV/nucleon
Nuclear binding energy Part D Calculate the mass defect of the helium nucleus 52He. The mass...
Nuclear binding energy Part D Calculate the mass defect of the helium nucleus 52He. The mass of neutral 52He is given by MHe=5.012225amu. Express your answer in atomic mass units to four significant figures.   amu   SubmitHintsMy AnswersGive UpReview Part Part E Calculate the binding energy E of the helium nucleus 52He (1eV=1.602×10−19J). Express your answer in millions of electron volts to four significant figures. E =   MeV   SubmitHintsMy AnswersGive UpReview Part Part F Calculate the binding energy per nucleon of...
Calculate the binding energy of the 2H nucleus and the 56Fe nucleus.
Calculate the binding energy of the 2H nucleus and the 56Fe nucleus.
ADVERTISEMENT
ADVERTISEMENT
ADVERTISEMENT