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Se-79 beta shielding — range and bremsstrahlung

Selenium-79

Se-79 · Selenium, Z = 34, A = 79

Selenium-79 (Se-79) is slow enough to be handled as a material rather than as a trace: 5.13e+8 Bq/g, or 0.0139 Ci/g, puts a gigabecquerel at 1.95 g. Decay is by beta-minus decay, half-life 3.27 × 10⁵ years, and shedding even one per cent of the activity takes 4,741 years.

The beta endpoint is 0.151 MeV, mean 0.0528 MeV over 1 branch. That endpoint stops in 0.226 mm of acrylic or 0.107 mm of glass. Of the beta energy, 0.03% turns into X-rays in acrylic and 0.43% in lead.

Decay is the only handle: forty years leaves 99.99% of today's activity and ten thousand years leaves 97.90%, with ten half-lives at 3.27 million years and a mean life of 471,751 years per atom.

Half-life, specific activity and beta endpoint

Half-life3.27 × 10⁵ years (1.032e+13 s)
Decay modebeta-minus decay
Specific activity5.13e+8 Bq/g (0.0139 Ci/g)
Beta endpoint / mean0.151 MeV / 0.0528 MeV

0.226 mm of acrylic stops the 0.151 MeV endpoint

Katz–Penfold fit to the 0.151 MeV endpoint — ±10%, and a stopping thickness rather than an attenuation length. Why the material matters more than the thickness.

AbsorberRange for the endpoint (mm)
acrylic0.226
aluminum0.0989
water0.267
glass0.107
Shield materialFraction of beta energy converted to X-rays
acrylic (Z ≈ 6)0.03%
lead (Z = 82)0.43%

Activity over geological time

Ten half-lives is 3.27 million years. On any timescale a facility can be planned over the activity is constant — 99.99% is left after forty years — and the mean life 1/λ is 471,751 years.

ElapsedFraction remaining
1 half-life50.0 %
2 half-lives25.0 %
5 half-lives3.13 %
10 half-lives0.0977 %
Time to fall to 10 % of today's activity1.09 million years
Time to fall to 1 %2.17 million years
Time to fall to 0.1 %3.26 million years

Limits of these range figures

Beta and decay calculators for Se-79

Other Selenium nuclides: Se-75

Computed from the IAEA Nuclear Data Section — Livechart API (ENSDF) and the NIST X-Ray Mass Attenuation Coefficients. Derivations and citations.