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A fission reaction is given by .(92)^(23...

A fission reaction is given by `._(92)^(236)U rarr ._(54)^(140)Xe + ._(54)^(140)Xe + ._(38)^(94)Sr + x +y`, where `x` and `y` are two particles. Considering `._(92)^(236)U` to be at rest, the kinetic energies of the products are denoted by `K_(xe),K_(Sr),K_(x)(2MeV)` and `K_(y)(2Me V)`, respectively. Let the binding energies per nucleon of `._(92)^(236)U, ._(54)^(140)Xe` and `._(38)^(94)Sr` be `7.5 MeV, 8.5 Me V` and `8.5 MeV`, respectively. Considering different conservation laws, the correct options `(s)` is (are)

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A fission reaction is given by _(92)^(236) U rarr_(54)^(140) Xe + _(38)^(94)St + x + y , where x and y are two particle Consider _(92)^(236) U to be at rest , the kinetic energies of the products are deneted by k_(xe) K _(st) K _(x) (2MeV ) and Ky(2MeV) repectively . Let the binding energy per nucleus of _(92)^(236) U, _(54)^(140) Xe and _(38)^(94)St be 7.5 MeV , 8.4 MeV and 8.5 MeV, respectively Considering different conservation laws, the correct option (s) is (are)

A fission reaction is given by _(92)^(236) U rarr_(54)^(140) Xe + _(38)^(94)St + x + y , where x and y are two particle Consider _(92)^(236) U to be at rest , the kinetic energies of the products are deneted by k_(xe) K _(st) K _(s) (2MeV ) and repectively . Let the binding energy per nucleus of _(92)^(236) U, _(54)^(140) Xe and _(38)^(94)St be 7.5 MeV , 8.4 MeV and 8.5 MeV, respectively Considering different conservation laws, the correct sption (s) is (are)

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