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The Design of Diagnostic Medical Facilities where ... - ResearchGate

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Figure C.3: Transmission <strong>of</strong> primary radiation through concrete<br />

1.00E+00<br />

30 kVp<br />

Transmission<br />

1.00E-01<br />

1.00E-02<br />

1.00E-03<br />

1.00E-04<br />

50 kVp<br />

70 kVp<br />

75 kVp<br />

90 kVp<br />

100 kVp<br />

125 kVp<br />

150 kVp<br />

1.00E-05<br />

1.00E-06<br />

0 50 100 150 200 250 300 350 400<br />

Thickness (mm)<br />

(Compiled from Simpkin, 1995)<br />

Figure C.4: Transmission <strong>of</strong> primary and secondary radiation through concrete<br />

Transmission<br />

1.00E+00<br />

1.00E-01<br />

1.00E-02<br />

1.00E-03<br />

1.00E-04<br />

100 kVp (P)<br />

100 kVp (S)<br />

125 kVp (P)<br />

125 kVp (S)<br />

150 kVp (P)<br />

150 kVp (S)<br />

(P) - Primary<br />

(S) - Secondary<br />

1.00E-05<br />

1.00E-06<br />

0 50 100 150 200 250 300 350 400<br />

Thickness (mm)<br />

(Compiled from Simpkin, 1995)<br />

<strong>The</strong> <strong>Design</strong> <strong>of</strong> <strong>Diagnostic</strong> <strong>Medical</strong> <strong>Facilities</strong> <strong>where</strong> Ionising Radiation is used 95

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