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Radioactivity|Anti Particle|α Decay|Calculation Of Kinetic Energy Of Final Product

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α Decay|Calculation Of Kinetic Energy Of Final Product|β-Decay

α Decay|Calculation Of Kinetic Energy Of Final Product|β-Decay

Introduction || Phenomenon of Radioactivity || Calculation of Alpha and Beta Particles || Kinetics OF Radioactivity

_83^212Bi decays as per following equation. _83^212Birarr_82^208Ti+_2^4He The kinetic energy of alpha -particle emitted is 6.802 MeV. Calculate the kinetic energy of Ti recoil atoms.

Radioactive decay follows first-order kinetic. The mean life and half-life of nuclear decay process are tau = 1// lambda and t_(1//2) = 0.693//lambda . Therefore are a number of radioactive elements in nature, their abundance is directly proportional to half life. The amount remaining after n half lives of radioactive elements can be calculated using the relation: N = N_(0) ((1)/(2))^(n) The rate of radioactive decay is

A nucles with mass number 220 initilly at rest enits an a - particle . If the Q value of the reaction is 5.5MeV , calculate the kinetic energy of the a - particle

Formation OF Isotopes,Isobars and Isodiaphers by Emission OF α,β Particles || Group Displacement Law || Calculation OF no. OF α and β Particle in a Given Question