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KTA 1 Folien zur Vorlesung vom 27.11.2013

KTA1 · 2014. 1. 26. · Bhabha (e+) Positron annihilation 10 100 E (MeV) 0.20 0.15 0.10 0.05 1000 1.0 0.5 Figure 30.11: Fractional energy loss per radiation length in lead as a function

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Page 1: KTA1 · 2014. 1. 26. · Bhabha (e+) Positron annihilation 10 100 E (MeV) 0.20 0.15 0.10 0.05 1000 1.0 0.5 Figure 30.11: Fractional energy loss per radiation length in lead as a function

KTA  1  

Folien  zur  Vorlesung  vom  27.11.2013  

Page 2: KTA1 · 2014. 1. 26. · Bhabha (e+) Positron annihilation 10 100 E (MeV) 0.20 0.15 0.10 0.05 1000 1.0 0.5 Figure 30.11: Fractional energy loss per radiation length in lead as a function

Energieverlust  von  Elektronen  

Page 3: KTA1 · 2014. 1. 26. · Bhabha (e+) Positron annihilation 10 100 E (MeV) 0.20 0.15 0.10 0.05 1000 1.0 0.5 Figure 30.11: Fractional energy loss per radiation length in lead as a function

Gewichtsfaktoren  für  Äquivalentdosis  

Aus  W.R.  Leo:  Techniques  for  Nuclear  and  ParLcle  Physics  Experiments  

Page 4: KTA1 · 2014. 1. 26. · Bhabha (e+) Positron annihilation 10 100 E (MeV) 0.20 0.15 0.10 0.05 1000 1.0 0.5 Figure 30.11: Fractional energy loss per radiation length in lead as a function

MiQlere  Strahlungsdosis  von  verbreiteten  Quellen  

Aus  W.R.  Leo:  Techniques  for  Nuclear  and  ParLcle  Physics  Experiments  

Page 5: KTA1 · 2014. 1. 26. · Bhabha (e+) Positron annihilation 10 100 E (MeV) 0.20 0.15 0.10 0.05 1000 1.0 0.5 Figure 30.11: Fractional energy loss per radiation length in lead as a function

Aus  W.R.  Leo:  Techniques  for  Nuclear  and  ParLcle  Physics  Experiments