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The .(92)^(235)U absorbs a slow neutron ...

The `._(92)^(235)U` absorbs a slow neutron (thermal neutron) & undergoes a fission represented by

(i) The energy release E per fission.
(ii) The energy release when 1g of `._(92)^(236)U` undergoes complete fission.
Given : `._(92)^(235)U = 235.1175 am u` (atom), `._(56)^(141)Ba = 140.9577 am u` (atom), `._(36)^(92)Kr = 91.9264 am u`(atom), `._(0)^(1)n = 1.00898 am u`.

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Calculate the amount of energy released when 1 kg of ""_(92)^(235)"U" undergoes fission reaction.

The energy released when one nucleus of ._(92)u^(235) undergoes fission is 188 MeV. The energy released when 100g of undergoes fission is ._(92)u^(235)

The ._(92)U^(235) absorbs a slow neturon (thermal neutron) & undergoes a fission represented by ._(92)U^(235)+._(0)n^(1)rarr._(92)U^(236)rarr._(56)Ba^(141)+_(36)Kr^(92)+3_(0)n^(1)+E . Calculate: The energy released when 1 g of ._(92)U^(235) undergoes complete fission in N if m=[N] then find (m-2)/(5) . [N] greatest integer Given ._(92)U^(235)=235.1175"amu (atom)" , ._(56)Ba^(141)=140.9577 "amu (atom)" , ._(36)r^(92)=91.9263 "amu(atom)" , ._(0)n^(1)=1.00898 "amu", 1 "amu"=931 MeV//C^(2)

The ._(92)U^(235) absorbs a slow neturon (thermal neutron) & undergoes a fission represented by ._(92)U^(235)+._(0)n^(1)rarr._(92)U^(236)rarr._(56)Ba^(141)+_(36)Kr^(92)+3_(0)n^(1)+E . Calculate: The energy released when 1 g of ._(92)U^(235) undergoes complete fission in N if m=[N] then find (m-2)/(5) . [N] greatest integer Given ._(92)U^(235)=235.1175"amu (atom)" , ._(56)Ba^(141)=140.9577 "amu (atom)" , ._(36)r^(92)=91.9263 "amu(atom)" , ._(0)n^(1)=1.00898 "amu", 1 "amu"=931 MeV//C^(2)