Skip to content
Question of 50

Q.(a) Explain the principle and working of a nuclear reactor with the help of a labelled diagram.

(b) If one microgram of 92U235 is completely destroyed in an atom bomb. How much energy will be released?
Andhra Pradesh BieapBIEAP Intermediate Board 2026Subjective· 8mImportance★★★★★
0% · 0/50 Questions
🔒 Locked · start free trial →

You're viewing a preview — the full solution, concept, methods & PYQ mapping are locked.

Start your 14-day free trial to unlock the full solution →
Figure — Labelled schematic of a nuclear reactor
Figure — Labelled schematic of a nuclear reactor

A nuclear reactor works by sustaining a controlled, self-sustaining chain reaction of nuclear fission (using fuel, moderator, control rods and coolant) to produce heat that generates electricity; converting 1 microgram of mass entirely to energy (E = mc²) releases about 9 × 10⁷ J.

(a) Principle and working of a nuclear reactor:

Principle: A nuclear reactor works on the principle of a controlled, self-sustaining nuclear fission chain reaction. When a heavy nucleus like ²³⁵U absorbs a slow (thermal) neutron, it splits into two lighter nuclei, releasing a large amount of energy along with 2–3 fast neutrons. If, on average, exactly one of these released neutrons goes on to cause a further fission (multiplication factor k = 1, the critical condition), the reaction sustains itself at a steady, controlled rate, continuously releasing energy as heat.

Main components (as would appear in a labelled diagram of a reactor core):

  1. Fuel — fissile material such as enriched Uranium-235 (or Plutonium-239), formed into fuel rods.
  2. Moderator — a material (heavy water D₂O, or graphite) surrounding the fuel rods that slows down the fast neutrons produced in fission to thermal (slow) speeds, since slow neutrons are far more likely to cause further fission in ²³⁵U.
  3. Control rods — rods of a strongly neutron-absorbing material (cadmium or boron), which can be inserted into or withdrawn from the core to absorb excess neutrons and control the reaction rate, keeping k = 1 (or shutting the reactor down by fully inserting them).
  4. Coolant — a fluid (water, heavy water, or liquid sodium) circulated through the core to carry away the heat generated.
  5. Shielding — thick concrete walls surrounding the reactor to absorb stray radiation and protect the surroundings. …

Unlock everything free for 14 days

  • Full step-by-step solutions
  • Concept-first explanations
  • Methods, shortcuts & mistakes
  • PYQ mapping + timed mock tests

Full access for 14 days. No credit card required.