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Q.Compare nuclear fission and nuclear fusion.

(OR)
Determine the binding energy per nucleon of the nucleus of 8O16_8\text{O}^{16}. Given: mass of hydrogen atom = 1.007825 u, mass of neutron = 1.008665 u and atomic mass of 8O16_8\text{O}^{16} = 15.994915 u.
Uttarakhand UbseUttarakhand Board Intermediate (Class 12) 2025Subjective· 3mImportance★★★★★
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Fission (splitting heavy nuclei) and fusion (combining light nuclei) both release nuclear binding energy, but differ in the nuclei involved, the conditions required, and their practical realisation.

AspectNuclear FissionNuclear Fusion
ProcessA heavy nucleus (e.g. U-235) splits into two lighter nuclei (plus neutrons)Two light nuclei (e.g. isotopes of hydrogen) combine to form a heavier nucleus
TriggerUsually initiated by bombardment with a neutronRequires extremely high temperature and pressure (tens of millions of kelvin) to overcome Coulomb repulsion between nuclei
Chain reactionSelf-sustaining chain reaction possible (each fission releases neutrons that trigger further fissions)Not a chain reaction in the same sense; needs continuously maintained extreme conditions
Energy released~200 MeV per fission event, but energy released per unit mass is lower than fusionEnergy released per unit mass of fuel is much higher than fission
Occurrence/useUsed in nuclear reactors and atomic bombs; occurs on Earth relatively 'easily'Powers the Sun and stars; used in hydrogen bombs; controlled fusion for power generation is still largely experimental
By-productsProduces long-lived radioactive fission fragments (nuclear waste)Produces comparatively little long-lived radioactive waste

OR

Mass defect: Δm=[Z mH+N mn]−M(816O)\Delta m = [Z\,m_H + N\,m_n] - M(^{16}_8\text O)

Here Z=8Z = 8 (protons), N=16−8=8N = 16-8 = 8 (neutrons):

Δm=8(1.007825)+8(1.008665)−15.994915\Delta m = 8(1.007825) + 8(1.008665) - 15.994915

=8.0626+8.06932−15.994915=16.13192−15.994915=0.137005 u= 8.0626 + 8.06932 - 15.994915 = 16.13192 - 15.994915 = 0.137005\ \text{u}

Converting to energy using E=Δm c2E = \Delta m\,c^2, with Δm\Delta m in kg (1 u=1.6605×10−27 kg1\,\text u = 1.6605\times10^{-27}\,\text{kg}):

Δm=0.137005×1.6605×10−27=2.275×10−28 kg\Delta m = 0.137005\times1.6605\times10^{-27} = 2.275\times10^{-28}\ \text{kg} …

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