59 |
Float_t MIP;//Mev g/cm2 energia al minimo nel silicio per 0.38 mm |
Float_t MIP;//Mev g/cm2 energia al minimo nel silicio per 0.38 mm |
60 |
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61 |
Float_t emin; |
Float_t emin; |
62 |
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63 |
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// |
64 |
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Bool_t usepl18x; |
65 |
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66 |
//parametri bethe-bloch |
//parametri bethe-bloch |
67 |
Float_t pigr; |
Float_t pigr; |
68 |
Float_t Na; |
Float_t Na; |
117 |
Float_t Get_lpetot(){ Process(); return lpetot;}; ///< Number of available dE/dx measurements before interaction or exit from the calo (interaction plane) |
Float_t Get_lpetot(){ Process(); return lpetot;}; ///< Number of available dE/dx measurements before interaction or exit from the calo (interaction plane) |
118 |
Float_t Get_lppskip(){ Process(); return lppskip;}; ///< Number of available dE/dx measurements before interaction or exit from the calo (interaction plane) |
Float_t Get_lppskip(){ Process(); return lppskip;}; ///< Number of available dE/dx measurements before interaction or exit from the calo (interaction plane) |
119 |
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120 |
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void UsePlane18X(Bool_t use){usepl18x = use;}; |
121 |
|
// |
122 |
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123 |
// |
// |
124 |
CaloBragg(); |
CaloBragg(); |
125 |
CaloBragg(PamLevel2 *L2); |
CaloBragg(PamLevel2 *L2); |
139 |
void Print(); |
void Print(); |
140 |
void Print(Option_t *option){Print();}; |
void Print(Option_t *option){Print();}; |
141 |
// |
// |
142 |
ClassDef(CaloBragg,2); |
ClassDef(CaloBragg,3); |
143 |
}; |
}; |
144 |
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145 |
#endif |
#endif |