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Calculate the hot particle beta skin dose rate in Gy/Sec for a 0.1 Bq particle of 98 Tc on the arm. The decay scheme of
Calculate the hot particle beta skin dose rate in Gy/Sec for a 0.1 Bq particle of 98Tc on the arm. The decay scheme of 98Tc is attached.
43-TECHNETIUM-98 y(i) E(i) Radiations (Bq-s)-1 (MeV) y(i)xE(i) B- 1 1.00 1.185x10-01* 1.19x10-01 y 1 1.00 6.524x10-01 6.52x10-01 ce-K, y 1 2.21x10-03 6.303x10-01 1.39x10-03 Decay Scheme ce-L, y 1 2.65x10-04 6.492x10-01a 1.72x10-04 ce-M, y 1 4.85x10-05 (6)+ 6.518x10-01a 3.16x10-05 0.0 4. 2x 106 y Intensities: I(y+ce) Y 2 1.02 7.454x10-01 7.60x10-01 98TC55 per 100 parent decays ce-K, y 2 1.60*10-03 7.232x10-01 1.15x10-03 % B-=100 ce-L, Y 2 1.89x10-04 7.421x10-01a 1.40*10-04 Q (g.s. )=17967 ce-M, Y 2 3.46*10-05 7.448x10-0la 2.58x10-05 745.35 102 EB- IB- Kal X-ray Log ft 1.65x10-03 1.928x10-02 3.18x10-05 397 100 14.02 4+ 1397.77 Ka2 X-ray 652.41 100 8.69x10-04 1.915x10-02 1.66x10-05 KB X-ray 5.15x10-04 2.170*10-02* 1.12x10-05 2+ 652.41 L X-ray 1.93x10-04 2.560x10-03* 4.94x10-07 Auger-K 7.75x10-04 1.620*10-02* 0.0 1.26*10-05 Auger-L 4.07x10-03 2.530*10-03* 1.03x10-05 9Ru54 44" Listed X, y, and y Radiations 1.41 Listed B. ce, and Auger Radiations 1.21*10-01 Listed Radiations 1.53 * Average Energy (MeV). a Maximum Energy (MeV) for subshell. Ruthenium-98 Daughter is stable.M 10[__J*9 sec /3\"R[cm ]X0'5X1[cm3] where . Eg [M] is the average energy | [@ Is the activity * R =0.9R;,x iInCM Assuming radiation yield is 1Step by Step Solution
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