Q.The equation 411H→24He+2+1β0+Q represents:
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🔒 Start your 14-day free trial to unlock the full solution →Concept understanding — Nuclear Fusion
Nuclear fusion is the combination of two lighter nuclei into a single heavier nucleus, releasing an enormous amount of energy -- it is fusion, via a proton-proton chain of reactions such as hydrogen nuclei combining to helium, that powers the Sun and other stars and is the ultimate source of the energy Earth receives as sunlight. Fusion produces relatively more energy per unit mass of fuel than fission does, which is its key advantage; but it also requires an extremely high temperature, of order 108 K, to force the positively charged light nuclei close enough together t …
Four light hydrogen nuclei (protons) combine to form one heavier helium nucleus with release of energy Q — this is the fusion of …
Four protons uniting into a helium nucleus with energy release is nuclear fusion (the solar reaction).
The reaction 411H→24He+2+1β0+Q combines four light nuclei (protons) into one heavier nucleus (helium), releasing energy Q. Building a heavier nucleus from lighter ones is nuclear fusion …
- CBSE 2026Set ANNUAL1 markMCQQ.The necessary temperature should be for thermo-nuclear fusion is(a) 273 K(b) 10^8 K(c) 0 K(d) 10^-5 K
›Reveal solutionSolution
Fusing light nuclei requires overcoming their electrostatic repulsion, which needs temperatures of the order 10^8 K.
For two positively charged nuclei to fuse, they must approach close enough for the short-range nuclear force to take over, overcoming the long-range Coulomb repulsion between them. This requires the nuclei to have very high kinetic energy, corresponding to temperatures of the order of 10^7-10^8 K. Among the given ch …
- CBSE 2025Set ANNUAL1 markQ.What do you understand by nuclear fusion?
›Reveal solutionSolution
Fusion is the opposite of fission: light nuclei join to form a heavier one, and because the binding energy per nucleon is higher for the product, energy is released.
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- CBSE 2025Set ANNUAL1 markQ.______ process is responsible for the production of energy in sun. (Nuclear fission / Nuclear fusion)
›Reveal solutionSolution
The Sun (and other stars) generate their energy through nuclear fusion — light hydrogen nuclei combining to form helium, releasing enormous energy.
Inside the Sun's core, extremely high temperature (~1.5×107 K) and pressure allow light nuclei — mainly protons (hydrogen nuclei) — to overcome their mutual Coulomb repulsion and fuse together. Through the proton–proton chain, four hydrogen nuclei ultimately combine to form one helium-4 nucleus:
411H→ 24He+2e++2ν+energy …
- CBSE 2024Set ANNUAL1 markQ.Why is nuclear fusion not possible in the laboratory?
›Reveal solutionSolution
The required temperatures are too extreme for any laboratory material to confine, since both nuclei are positively charged and repel strongly.
Nuclear fusion requires two positively-charged nuclei to be brought close enough together (within the range of the strong nuclear force, ∼10−15 m) to fuse. Since both nuclei are positively charged, they strongly repel each other electrostatically (Coulomb repulsion), and this repulsive barrier increases sharply as they approach each other. To overcome this barrier, the nuclei need extremely large kinetic energies, corresponding to temperatures of the order of 107–108 K (achieved naturally inside stars, where fusion powers their energy output). At such temperatures, matter exists as a plasma, and no ordinary solid material container can withstand or physically confine it (it would instantly vaporise/melt); controlled fusion instead requires exotic confinement methods (magnetic or inertial confinement), which are extremely difficult and remain a major …
- CBSE 2023Set BS1 markMCQQ.The equation 411H→24He+2+1β0+Q represents:i) nuclear fissionii) nuclear fusioniii) nuclear disintegrationiv) none of these
›Reveal solutionSolution
Four protons uniting into a helium nucleus with energy release is nuclear fusion (the solar reaction).
The reaction 411H→24He+2+1β0+Q combines four light nuclei (protons) into one heavier nucleus (helium), releasing energy Q. Building a heavier nucleus from lighter ones is nuclear fusion …
- CBSE 2021Set A1 markMCQQ.The source of solar energy is (A) nuclear fission (B) chemical reaction (C) annihilation of elementary particles (D) nuclear fusion
›Reveal solutionSolution
Solar energy is produced by nuclear fusion of hydrogen into helium.
In the Sun's core, under enormous temperature and pressure, hydrogen nuclei fuse to form helium (the proton–proton cycle). The mass of the helium nucleus is slightly less than the mass of the four protons that formed it; this mass defect Δm is converted into energy according …
- CBSE 2017Set ANNUAL1 markMCQQ.Solar energy is mainly caused due to(a) fission of uranium present in the sun(b) fusion of protons during synthesis of heavier elements(c) gravitational contraction(d) burning of hydrogen in oxygen.
›Reveal solutionSolution
The Sun's energy is generated by thermonuclear fusion — four protons fuse (via the proton–proton chain) into a helium nucleus, releasing energy because the products are less massive than the reactants (ΔE=Δmc2).
Inside the Sun's core, at temperatures of about 1.5×107K and enormous pressure, hydrogen nuclei (protons) undergo a sequence of nuclear fusion reactions (the proton-proton cycle):
411H⟶24He+2e++2ν+energy
The mass of the resulting helium-4 nucleus is slightly less than the mass of four protons. This mass defect Δm is converted into energy according to Einstein's relation:
E=Δmc2
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