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Uranium-236 undergoes nuclear fission to produce barium-144, krypton-89 and three free neutrons - AQA - A-Level Physics - Question 32 - 2017 - Paper 2

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Uranium-236 undergoes nuclear fission to produce barium-144, krypton-89 and three free neutrons. What is the energy released in this process? | Nuclide | Bi... show full transcript

Worked Solution & Example Answer:Uranium-236 undergoes nuclear fission to produce barium-144, krypton-89 and three free neutrons - AQA - A-Level Physics - Question 32 - 2017 - Paper 2

Step 1

Calculate the total binding energy of the reactants

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Answer

The reactants consist of 236U. The binding energy per nucleon for 236U is 7.5 MeV. Since 236U has 92 nucleons (protons + neutrons), the total binding energy for 236U is:

Ereaction=7.5extMeV/nucleon×236 nucleons=1770 MeVE_{reaction} = 7.5 ext{ MeV/nucleon} \times 236 \text{ nucleons} = 1770 \text{ MeV}

Step 2

Calculate the total binding energy of the products

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Answer

The products of the reaction are barium-144 and krypton-89, along with three free neutrons.

  • For 144Ba (56 nucleons, binding energy 8.3 MeV):

EBa=8.3extMeV/nucleon×144=1199.2extMeVE_{Ba} = 8.3 ext{ MeV/nucleon} \times 144 = 1199.2 ext{ MeV}

  • For 89Kr (36 nucleons, binding energy 8.6 MeV):

EKr=8.6extMeV/nucleon×89=765.4extMeVE_{Kr} = 8.6 ext{ MeV/nucleon} \times 89 = 765.4 ext{ MeV}

  • For the three free neutrons (1 nucleon each, binding energy 0 MeV):

Eneutrons=0extMeVE_{neutrons} = 0 ext{ MeV}

Total binding energy for products:

Eproducts=1199.2extMeV+765.4extMeV+0=1964.6extMeVE_{products} = 1199.2 ext{ MeV} + 765.4 ext{ MeV} + 0 = 1964.6 ext{ MeV}

Step 3

Calculate the energy released

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Answer

The energy released during the fission process can be calculated by taking the difference between the total binding energy of the reactants and the total binding energy of the products:

Ereleased=EreactantsEproducts=1770extMeV1964.6extMeV=194.6extMeVE_{released} = E_{reactants} - E_{products} = 1770 ext{ MeV} - 1964.6 ext{ MeV} = -194.6 ext{ MeV}

In the context of binding energy calculations, ensure to adjust based on system energy definitions if necessary: in practical terms, this indicates released energy, thus following our question context.

From the given options, the closest magnitude to the binding differences is 191 MeV, correlating with option C.

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