FEDRA emulsion software from the OPERA Collaboration
energy.C File Reference
#include "TMultiLayerPerceptron.h"
Include dependency graph for energy.C:

Functions

ee AddInitiatorBT (ss)
 
ee CalculateEnergyValues ()
 
c1 cd (1)
 
c1 cd (2)
 
c1 cd (3)
 
c2 cd (4)
 
c2 cd (5)
 
c2 cd (6)
 
c1 Divide (3, 1)
 
c2 Divide (3, 2)
 
h1 Draw ()
 
gSystem Exec (cmd)
 
ee PrintInitiatorBTs ()
 
ss PrintNice ()
 
 strcpy (cmd,"cp Shower.root Shower2.root")
 

Variables

TCanvasc1 =new TCanvas("c1","c1",1200,400)
 
TCanvasc2 =new TCanvas()
 
 ee = new EdbShowerRec()
 
 gEDBDEBUGLEVEL =2
 
TH1D * gh1 = ee->GetHistLongProfile()
 
TH1D * gh2 = ee->GetHistNBaseTracks()
 
TH1D * gh3 = ee->GetHistdeltaR_mean()
 
TH1D * gh4 = ee->GetHistdeltaR_rms()
 
TH1D * gh5 = ee->GetHistdeltaT_mean()
 
TH1D * gh6 = ee->GetHistdeltaT_rms()
 
TH1F * h1 = ee->GetHistEnergyUnCorrectedb()
 
TH1F * h2 = ee->GetHistEnergyCorrectedb()
 
TH1F * h3 = ee->GetHistEnergyNominal()
 
 return
 
 ss = new EdbSegP(1,12.1,45.4,0.2,0.14,32,1)
 

Function Documentation

◆ AddInitiatorBT()

ee AddInitiatorBT ( ss  )

◆ CalculateEnergyValues()

ee CalculateEnergyValues ( )

◆ cd() [1/6]

c1 cd ( )

◆ cd() [2/6]

c1 cd ( )

◆ cd() [3/6]

c1 cd ( )

◆ cd() [4/6]

c2 cd ( )

◆ cd() [5/6]

c2 cd ( )

◆ cd() [6/6]

c2 cd ( )

◆ Divide() [1/2]

canv Divide ( ,
 
)

◆ Divide() [2/2]

c2 Divide ( ,
 
)

◆ Draw()

h1 Draw ( )

◆ Exec()

gSystem Exec ( cmd  )

◆ PrintInitiatorBTs()

ee PrintInitiatorBTs ( )

◆ PrintNice()

showertrack PrintNice ( )

◆ strcpy()

strcpy ( cmd  ,
"cp Shower.root Shower2.root"   
)

Variable Documentation

◆ c1

TCanvas* c1 =new TCanvas("c1","c1",1200,400)

◆ c2

TCanvas* c2 =new TCanvas()

◆ ee

ee = new EdbShowerRec()

◆ gEDBDEBUGLEVEL

gEDBDEBUGLEVEL =2

◆ gh1

TH1D* gh1 = ee->GetHistLongProfile()

◆ gh2

TH1D* gh2 = ee->GetHistNBaseTracks()

◆ gh3

TH1D* gh3 = ee->GetHistdeltaR_mean()

◆ gh4

TH1D* gh4 = ee->GetHistdeltaR_rms()

◆ gh5

TH1D* gh5 = ee->GetHistdeltaT_mean()

◆ gh6

TH1D* gh6 = ee->GetHistdeltaT_rms()

◆ h1

TH1F* h1 = ee->GetHistEnergyUnCorrectedb()

◆ h2

TH1F* h2 = ee->GetHistEnergyCorrectedb()

◆ h3

TH1F* h3 = ee->GetHistEnergyNominal()

◆ return

return

◆ ss

ss = new EdbSegP(1,12.1,45.4,0.2,0.14,32,1)