Nuclear Fission
Q12.
(a) The unstable uranium nucleus
is produced in a nuclear reactor.
(i) Complete the equation which shows the formation of
+ 
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(ii)
can decay by nuclear fission in many different ways. Complete the equation which shows one possible decay channel.

+
+
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(2 marks)
(b) Calculate the energy released, in MeV, in the fission reaction.
Atomic mass of
= 144.92694u
Δm = mU – mBa – mKr – 4mn
Δm = 236.04573 – 144.92694 – 86.91340 – 4 × 1.00867 
Δm = 0.17071u 
Q = 0.17071 × 931.3MeV
Q = 159 MeV 
(3 marks)
(Total 5 marks)