P4: Nuclear Physics, Radioactivity and Thermal Physics
Radioactive decay law, binding energy, nuclear fission/fusion, ideal gas laws, kinetic theory, specific heat capacity.
Radioactive decay law, binding energy, nuclear fission/fusion, ideal gas laws, kinetic theory, specific heat capacity.
Question:
Calculate the binding energy per nucleon of Helium-4 (mass defect Δm = 0.0304 u, 1 u = 931.5 MeV).
Model Solution & Mark Scheme:
Total binding energy = 0.0304 × 931.5 MeV = 28.32 MeV. 4 nucleons => Binding energy per nucleon = 28.32 / 4 = 7.08 MeV/nucleon.
Q1: Carbon-14 has half-life 5730 years. A sample has 25% original activity. Find age.
Answer: 25% = (½)² => 2 half-lives elapsed = 2 × 5730 = 11,460 years.
Q2: Calculate the root-mean-square speed of nitrogen molecules (m = 4.65 × 10⁻²⁶ kg) at 300 K (k = 1.38 × 10⁻²³ J/K).
Answer: ½m(c_rms)² = ³/₂kT => c_rms = √(3kT/m) = √(3 × 1.38×10⁻²³ × 300 / 4.65×10⁻²⁶) = 517 m/s.