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InduceChargeFP420.h
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1 #ifndef InduceChargeFP420_h
2 #define InduceChargeFP420_h
3 
5 //
6 //
8  //
9  //
10 public:
11  InduceChargeFP420(double w, double g) {
12  clusterWidth = w;
13  geVperElectron = g;
14  }
15  ~InduceChargeFP420() override {}
16  //
17  //
19  int numStrips,
20  double localPitch,
21  int numStripsW,
22  double localPitchW,
23  int xytype,
24  int verbosity) override;
25  //
26  //
27 private:
28  std::vector<float> signalCoupling;
29 
30  double clusterWidth;
32 };
33 
34 #endif
IChargeFP420::hit_map_type induce(const CDrifterFP420::collection_type &, int numStrips, double localPitch, int numStripsW, double localPitchW, int xytype, int verbosity) override
const double w
Definition: UKUtility.cc:23
std::vector< float > signalCoupling
The Signals That Services Can Subscribe To This is based on ActivityRegistry and is current per Services can connect to the signals distributed by the ActivityRegistry in order to monitor the activity of the application Each possible callback has some defined which we here list in angle e g
Definition: Activities.doc:4
InduceChargeFP420(double w, double g)
~InduceChargeFP420() override
std::vector< AmplitudeSegmentFP420 > collection_type
Definition: CDrifterFP420.h:13
std::map< int, float, std::less< int > > hit_map_type
Definition: IChargeFP420.h:11