Advertisements
Advertisements
प्रश्न
- Write one nuclear fusion reaction.
- State the approximate value of energy released in the reaction mentioned in part (a).
- Give reason for the release of energy stated in part (b).
उत्तर
-
- \[\ce{\underset{\text{(deuterium)}}{^2_1H} + \underset{\text{(deuterium)}}{^2_1H} -> \underset{\text{(helium isotope)}}{^3_2He}} + \underset{\text{(neutron)}}{^1_0n} + 3.3 \text{MeV}\]
- \[\ce{\underset{\text{(helium isotope)}}{^3_2He} + \underset{\text{(deuterium)}}{^2_1H} -> \underset{\text{(helium) }}{^4_2He}} + \underset{\text{(proton)}}{^1_1H} + 18.3 \text{MeV}\]
- We estimate that 0.42 MeV of energy was released.
- When two deuterium nuclei \[\ce {^2_1H}\] fuse , nucleus of helium isotope \[\ce {^3_2He}\] is formed and 3.3 MeV energy is released. This helium isotope again gets fused with one deuterium nucleus to form a helium nucleus \[\ce {^4_2He}\] and 18.3 MeV of energy is released in this process.
APPEARS IN
संबंधित प्रश्न
Complete the following fusion reaction:
\[\ce {^3_2He + ^2_1H -> ^\underline{}_2He + ^\underline{}_1H + energy}\]
Complete the following fusion reaction:
\[\ce {^2_1H + ^2_1H -> ^\underline{}_2He + ^1_\underline{}n + energy}\]
Name the process, nuclear fission or nuclear fusion, in which the energy released per unit mass is more?
Give two examples of nuclear fusion.
Nuclear fusion is possible only at an extremely high temperature of the order of ____ K.
Mark the correct choice as
- Assertion: Extreme temperature is necessary to execute nuclear fusion.
- Reason: In a nuclear fusion, the nuclei of the reactants combine releasing high energy.
Which of the following are suitable for the fusion process?
Use the analogy to fill in the blank
Nuclear Fusion : Extreme temperature, Nuclear Fission : ______.
Use the analogy to fill in the blank.
Nuclear Fusion : Extreme temperature, Nuclear Fission : ______.
What is nuclear fusion?