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Calculate the energy in fusion reaction:...

Calculate the energy in fusion reaction:
`""_(1)H^(2) + ""_(1)H^(2) to ""_(2)He^(3) + ""_(0)n^(1)`, where B.E. Of `""_(1)H^(2) = 2.23 `MeV and `""_(2)He^(3) = 7.73` MeV.

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To calculate the energy released in the fusion reaction: \[ \text{ }_{1}^{2}\text{H} + \text{ }_{1}^{2}\text{H} \rightarrow \text{ }_{2}^{3}\text{He} + \text{ }_{0}^{1}\text{n} \] we will follow these steps: ...
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Calculate the energy in the given fusion reaction. ""_(1)H^(2) + ""_(1)H^(2) to ""_(2)He^(3) +n Given, B.E. of ""_(1)H^(2) = 2.23 MeV and B.E. of ""_(2)He^(3) = 7.73 MeV.

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  2. Calculate the amount of energy released during the alpha-decay of .(...

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  10. Find the kinetic energy of emitted a-particles in the following nuclea...

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  11. The mass defect is 0.5% in a nuclear fusion reaction. Find the energy ...

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  12. Find the number of fissions required to produce a power of 2,000 W, if...

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  13. Two radioactive substances X and Y initially contain an equal number o...

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  14. (a) Write the relation between half-life and average life of a radioac...

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  15. Find the activity of 1.00 mg of radon Rn^222, whose atomic mass is 222...

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  16. Calculate the energy in fusion reaction: ""(1)H^(2) + ""(1)H^(2) to...

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  17. A radioactive sample has a half-life of 4 years. Calculate the time in...

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  18. In how many years 1 g of pure radium will be reduced to 1 milligram? T...

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