[9] | 1 | #include "TROOT.h"
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| 2 | #include "TFile.h"
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| 3 | #include "TTree.h"
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| 4 | #include "TCanvas.h"
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| 5 | #include "TProfile.h"
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| 6 | #include "TF1.h"
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| 7 | #include "TGraph.h"
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[153] | 8 | #include "TLegend.h"
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[9] | 9 |
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| 10 | #include "interface/FuncDef.h"
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| 11 |
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[27] | 12 | void JetResol()
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[9] | 13 | {
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[39] | 14 | setTDRStyle();
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| 15 | gROOT->Reset();
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| 16 |
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[258] | 17 | TFile *f1 = new TFile("JET2.root","read");
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[39] | 18 | TTree *Analyze = (TTree*)f1->Get("Analysis");
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| 19 |
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[153] | 20 | const Int_t numBin=16;
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| 21 | double bins[numBin]={0,10,20,30,40,50,60,70,80,100,120,140,180,220,300,1200};
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[39] | 22 | TProfile *ETSoverET = new TProfile("ETSoverET","Jet resolution: E_{T}^{rec}/E_{T}^{mc}",(numBin-1),bins,-10,10);
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| 23 |
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| 24 | double rms[numBin];
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| 25 | double mean[numBin];
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| 26 |
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| 27 | TCanvas *c1 = new TCanvas("c1","JET resol",0,0,1000,650);
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| 28 | c1->cd(); int frame=0;
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| 29 | c1->Divide(6,2);
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| 30 |
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| 31 | float x[numBin-1];
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| 32 | float y[numBin-1];
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| 33 | float ex[numBin-1];
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| 34 | float ey[numBin-1];
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| 35 |
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| 36 | float finval=0;//valeur a remplir puis a fitter
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| 37 |
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| 38 | for ( int i=0; i<(numBin-1); i++) // premiÚre bin : i ==1 et pas i == 0
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| 39 | {
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| 40 | TAxis *xaxis = ETSoverET->GetXaxis();
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| 41 | float binCenter = xaxis->GetBinCenter(i+1);
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| 42 | int binMin = (int)xaxis->GetBinLowEdge(i+1);
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| 43 | int binMax = (int)xaxis->GetBinUpEdge(i+1);
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| 44 | char tempMin[500];
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| 45 | if(i==0)binMin=5;
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[91] | 46 | sprintf(tempMin,"JetPTResol.PT > %d",binMin);
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[39] | 47 | string mystringMin(tempMin);
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| 48 | char tempMax[500];
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[91] | 49 | sprintf(tempMax,"JetPTResol.PT < %d",binMax);
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[39] | 50 | string mystringMax(tempMax);
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| 51 | char tempName[500];
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[91] | 52 | sprintf(tempName,"(JetPTResol.SmearedPT)>>hETSoverET%d",i);
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[39] | 53 | string mystringName(tempName);
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| 54 |
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| 55 | c1->cd(++frame);
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| 56 | GaussValues(Analyze,tempName,rms[i],mean[i],mystringMin,mystringMax);
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| 57 | x[i]=binCenter;
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| 58 | finval=rms[i]/mean[i];
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| 59 | y[i]=(finval*100);
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| 60 | ex[i]=0;
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| 61 | ey[i]=0;
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| 62 | }
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| 63 |
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| 64 | TCanvas *c2 = new TCanvas("c2","JET resol",100,100,600,450);
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| 65 | c2->cd();
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| 66 |
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[153] | 67 | TF1 *fitfun = new TF1("user","sqrt(pow([0]/x,2)+pow([1]/sqrt(x),2)+pow([2],2))",10,800);
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| 68 | TF1 *fitfunCMS = new TF1("userCMS","sqrt(pow(1.05*100/sqrt(x),2)+pow(0.06*100,2)+pow(0*100/x,2))",10,800);
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| 69 | //TF1 *fitfunCMS = new TF1("userCMS","sqrt(pow(1.17*100/sqrt(x),2)+pow(0.039*100,2))",10,800);
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[39] | 70 |
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[153] | 71 | TGraph *gr11 = new TGraph((numBin-1),x,y);
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[39] | 72 | gr11->Draw("AP");
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| 73 | gr11->SetTitle("");
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| 74 | gr11->GetXaxis()->SetTitle("E_{T}^{MC} [GeV]");
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| 75 | gr11->GetYaxis()->SetRangeUser(0,50);
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| 76 | gr11->GetYaxis()->SetTitle("#sigma(E_{T}^{rec}/E_{T}^{MC})_{fit}/<E_{T}^{rec}/E_{T}^{MC}>_{fit}");
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| 77 |
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| 78 | Double_t* params = fitfun->GetParameters();
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[153] | 79 |
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| 80 | fitfun->SetLineColor(6);
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[39] | 81 | gr11->Fit("user","QR");
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[153] | 82 | gr11->Fit("user","QR");
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| 83 | gr11->Fit("user","QR");
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| 84 | gr11->Fit("user","QR");
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| 85 | char tempResol[100];
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| 86 | sprintf(tempResol,"Delphes resolution: #frac{#sigma(E_{T}^{rec}/E_{T}^{MC})}{<E_{T}^{rec}/E_{T}^{MC}>} = #frac{%f}{#sqrt{E_{T}^{MC}}} #oplus %f",params[1],params[2]);
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| 87 | char tempResol2[100];
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| 88 | sprintf(tempResol2,"sqrt(pow(%f/sqrt(x),2)+pow(%f,2))",params[1],params[2]);
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[27] | 89 |
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[153] | 90 |
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| 91 | TF1 *fitfunDelphes = new TF1("userDelphes",tempResol2,7,1000);
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| 92 | fitfunDelphes->SetLineColor(6);
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| 93 | fitfunDelphes->Draw("same");
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| 94 |
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| 95 | //CMS values
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| 96 | fitfunCMS->SetLineColor(9);
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| 97 | fitfunCMS->Draw("same");
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| 98 |
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[60] | 99 | TPaveText *events = MakeTPave(0.2,0.75,0.35,0.8,"Events: pp #rightarrow gg ");
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| 100 | events->Draw();
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| 101 |
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[39] | 102 | TPaveText *Delphes = MakeTPave(0.2,0.15,0.35,0.2,"MG/ME + Delphes");
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| 103 | Delphes->Draw();
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[153] | 104 |
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| 105 | TLegend *legend = new TLegend(0.2,0.6,0.9,0.85,NULL,"NDC");
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| 106 | legend->AddEntry(fitfunCMS,"CMS resolution","l");
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| 107 | legend->AddEntry(fitfunDelphes,tempResol,"l");
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| 108 | legend->SetFillColor(10);
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| 109 | legend->SetBorderSize(0);
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| 110 | legend->Draw();
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| 111 |
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[39] | 112 | delete fitfun;
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| 113 | }
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[27] | 114 |
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[39] | 115 | void ElecResol()
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| 116 | {
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[9] | 117 |
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[39] | 118 | setTDRStyle();
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| 119 | gROOT->Reset();
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| 120 |
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[153] | 121 | TFile *f1 = new TFile("ETMIS2.root","read");
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[39] | 122 | TTree *Analyze = (TTree*)f1->Get("Analysis");
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| 123 |
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[153] | 124 | const Int_t numBin=11;
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| 125 | double bins[numBin]={0,10,20,30,40,50,60,70,80,100,120};
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[39] | 126 | TProfile *ETSminusET = new TProfile("ETSminusET","Electron resolution: E_{T}^{rec}/E_{T}^{mc}",(numBin-1),bins,-10,10);
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| 127 |
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| 128 | double rms[numBin];
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| 129 | double mean[numBin];
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| 130 |
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| 131 | TCanvas *c3 = new TCanvas("c3","ELEC resol",0,0,1000,650);
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| 132 | c3->cd(); int frame=0;
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| 133 | c3->Divide(6,2);
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| 134 |
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| 135 | float x[numBin-1];
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| 136 | float y[numBin-1];
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| 137 | float ex[numBin-1];
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| 138 | float ey[numBin-1];
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| 139 |
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| 140 | float finval=0;//valeur a remplir puis a fitter
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| 141 |
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| 142 | for ( int i=0; i<(numBin-1); i++) // premiÚre bin : i ==1 et pas i == 0
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| 143 | {
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| 144 | TAxis *xaxis = ETSminusET->GetXaxis();
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| 145 | float binCenter = xaxis->GetBinCenter(i+1);
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| 146 | int binMin = (int)xaxis->GetBinLowEdge(i+1);
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| 147 | int binMax = (int)xaxis->GetBinUpEdge(i+1);
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| 148 | char tempMin[500];
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| 149 | if(i==0)binMin=5;
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[89] | 150 | sprintf(tempMin,"ElecEResol.E > %d",binMin);
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[39] | 151 | string mystringMin(tempMin);
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| 152 | char tempMax[500];
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[89] | 153 | sprintf(tempMax,"ElecEResol.E < %d",binMax);
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[39] | 154 | string mystringMax(tempMax);
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| 155 | char tempName[500];
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[89] | 156 | sprintf(tempName,"(ElecEResol.E-ElecEResol.SmearedE)>>hETSoverET%d",i);
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[39] | 157 | string mystringName(tempName);
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| 158 |
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| 159 | c3->cd(++frame);
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[153] | 160 | GaussValuesElec(Analyze,tempName,rms[i],mean[i],mystringMin,mystringMax);
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| 161 | //GaussValues(Analyze,tempName,rms[i],mean[i],mystringMin,mystringMax);
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[39] | 162 | x[i]=binCenter;
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| 163 | finval=rms[i]/binCenter;
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| 164 | y[i]=(finval*100);
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| 165 | ex[i]=0;
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| 166 | ey[i]=0;
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| 167 | }
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| 168 |
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| 169 | TCanvas *c4 = new TCanvas("c4","ELEC resol",100,100,600,450);
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| 170 | c4->cd();
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| 171 |
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| 172 | TF1 *fitfun = new TF1("user","sqrt(pow([0],2)+pow([1]/sqrt(x),2)+pow([2]/x,2))",1,400);
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| 173 |
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| 174 | TGraphErrors *gr11 = new TGraphErrors((numBin-1),x,y,ex,ey);
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| 175 | gr11->Draw("AP");
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| 176 | gr11->SetTitle("");
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| 177 | gr11->GetXaxis()->SetTitle("E [GeV]");
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| 178 | gr11->GetYaxis()->SetRangeUser(0,5);
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| 179 | gr11->GetYaxis()->SetTitle("#sigma/E");
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| 180 |
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| 181 | Double_t* params = fitfun->GetParameters();
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| 182 |
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| 183 | gr11->Fit("user","QR");
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| 184 | gr11->Fit("user","QRI");
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| 185 | gr11->Fit("user","QRI");
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| 186 | gr11->Fit("user","QRI");
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| 187 | char tempResol[500];
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| 188 | sprintf(tempResol,"#frac{#sigma}{E} = #frac{%f}{#sqrt{E}} #oplus #frac{%f}{E} #oplus %f",params[1]/100,params[2]/100,params[0]/100);
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| 189 |
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| 190 | TPaveText *leg1 = MakeTPave(0.4,0.6,0.8,0.65,tempResol);
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| 191 | leg1->Draw();
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| 192 |
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| 193 | TPaveText *Delphes = MakeTPave(0.2,0.15,0.35,0.2,"MG/ME + Delphes");
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| 194 | Delphes->Draw();
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| 195 |
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[60] | 196 | TPaveText *events = MakeTPave(0.2,0.75,0.35,0.8,"Events: WHq'#rightarrow W#tau#tauq'#rightarrowjjl#tauq', m_{H}=150 GeV ");
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[39] | 197 | events->Draw();
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| 198 |
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| 199 | delete fitfun;
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| 200 | }
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[9] | 201 |
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[39] | 202 | void TauJetInfo()
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| 203 | {
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| 204 |
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| 205 | setTDRStyle();
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| 206 | gROOT->Reset();
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| 207 |
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[258] | 208 | TFile *f1 = new TFile("TAUJET2.root","read");
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[39] | 209 | TTree *Analyze = (TTree*)f1->Get("Analysis");
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| 210 |
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[60] | 211 | TCanvas *ct1 = new TCanvas("ct1","Tau information",100,100,600,450);
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| 212 | ct1->cd();
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[39] | 213 |
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| 214 | TH1F *tauEnergy =MakeNormTH1F(20,0.8,1,Analyze,"TauJetPTResol.EnergieCen>>tauEnergy",1, 0, 1,2,false);
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| 215 | tauEnergy->Draw();
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| 216 | tauEnergy->SetTitle("");
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| 217 | tauEnergy->GetYaxis()->SetTitle("Fraction of events");
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| 218 | tauEnergy->GetXaxis()->SetTitle("C_{#tau}");
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| 219 |
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| 220 |
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| 221 | TPaveText *Delphes1 = MakeTPave(0.3,0.85,0.45,0.9,"MG/ME + Delphes");
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| 222 | Delphes1->Draw();
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| 223 | TPaveText *ctau = MakeTPave(0.3,0.75,0.45,0.8,"C_{#tau} = #frac{#sum E^{towers} (#DeltaR = 0.15)}{E^{jet}}");
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| 224 | ctau->Draw();
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[153] | 225 | TPaveText *events1 = MakeTPave(0.3,0.65,0.45,0.7,"Events: WHq'#rightarrow WWWq'#rightarrow lllq', m_{H}=150 GeV ");
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[39] | 226 | events1->Draw();
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| 227 |
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| 228 |
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[60] | 229 | TCanvas *ct2 = new TCanvas("ct2","Tau information",100,100,600,450);
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| 230 | ct2->cd();
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[39] | 231 | TH1F *NumTrack =MakeNormTH1F(6,0,6,Analyze,"TauJetPTResol.NumTrack>>NumTrack",1, 0, 1,2,false);
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| 232 | NumTrack->Draw();
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| 233 | NumTrack->SetTitle("");
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| 234 | NumTrack->GetYaxis()->SetTitle("Fraction of events");
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| 235 | NumTrack->GetXaxis()->SetTitle("N^{tracks}");
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| 236 |
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| 237 | TPaveText *Delphes = MakeTPave(0.6,0.85,0.85,0.9,"MG/ME + Delphes");
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| 238 | Delphes->Draw();
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| 239 | TPaveText *numtracks = MakeTPave(0.6,0.75,0.85,0.8,"#DeltaR < 0.4, p_{T}^{track} > 2 GeV");
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| 240 | numtracks->Draw();
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[153] | 241 | TPaveText *events = MakeTPave(0.6,0.65,0.85,0.7,"Events: WHq'#rightarrow WWWq'#rightarrow lllq', m_{H}=150 GeV ");
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[39] | 242 | events->Draw();
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| 243 |
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[9] | 244 | }
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[23] | 245 |
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[27] | 246 | void ETmisResol()
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[23] | 247 | {
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[39] | 248 |
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| 249 | setTDRStyle();
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| 250 | gROOT->Reset();
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| 251 |
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[258] | 252 | TFile *f1 = new TFile("JET2.root","read");
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[39] | 253 | TTree *Analyze = (TTree*)f1->Get("Analysis");
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| 254 |
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| 255 | TF1 *fitfun = new TF1("user","[0]*sqrt(x)",0,600);
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[153] | 256 | const Int_t numBin=6;
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| 257 | double bins[numBin]={180,260,340,420,500,580};
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[39] | 258 | TProfile *ETSoverET = new TProfile("ETSoverET","ETmis resol",(numBin-1),bins,-1000,1000);
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| 259 |
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| 260 |
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| 261 | double rms[numBin-1];
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| 262 |
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| 263 | TCanvas *c5 = new TCanvas("c5","PTmis resol",0,0,1000,650);
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| 264 | c5->cd(); int frame=0;
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| 265 | c5->Divide(6,2);
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| 266 |
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| 267 | double x[numBin];
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| 268 | double y[numBin];
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| 269 |
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| 270 | for ( int i=0; i<(numBin-1); i++) // premiÚre bin : i ==1 et pas i == 0
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| 271 | {
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| 272 | TAxis *xaxis = ETSoverET->GetXaxis();
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| 273 | float binCenter = xaxis->GetBinCenter(i+1);
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| 274 | int binMin = (int)xaxis->GetBinLowEdge(i+1);
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| 275 | int binMax = (int)xaxis->GetBinUpEdge(i+1);
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| 276 | char tempMin[500];
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| 277 | sprintf(tempMin,"ETmisResol.SEt>%d",binMin);
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| 278 | string mystringMin(tempMin);
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| 279 | char tempMax[500];
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| 280 | sprintf(tempMax,"ETmisResol.SEt<%d",binMax);
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| 281 | string mystringMax(tempMax);
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| 282 |
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| 283 | char tempName[500];
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| 284 | sprintf(tempName,"ETmisResol.ExSmeare>>hETSoverET%d",i);
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| 285 | string mystringName(tempName);
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| 286 |
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| 287 | c5->cd(++frame);
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| 288 | GaussValuesETmis(Analyze,tempName,rms[i],mystringMin,mystringMax);
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| 289 | x[i]=binCenter;
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| 290 | y[i]=rms[i];
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| 291 |
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| 292 | }
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| 293 |
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| 294 | TCanvas *c6 = new TCanvas("c6","ETmis resolution",100,100,600,450);
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| 295 | c6->cd();
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| 296 |
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| 297 | x[numBin]=0;
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| 298 | y[numBin]=0;
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| 299 | TGraph *gr11 = new TGraph((numBin),x,rms);
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| 300 | gr11->Draw("AP");
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| 301 | gr11->GetXaxis()->SetTitle("Offline sum of E_{T} [GeV]");
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| 302 | gr11->GetYaxis()->SetTitle("Resolution of x-component of MET [GeV]");
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| 303 | gr11->Fit("user","RQ");
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| 304 | gr11->Fit("user","RQ");
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| 305 | gr11->Fit("user","RQ");
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| 306 | gr11->Fit("user","RQ");
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[153] | 307 | gr11->GetYaxis()->SetRangeUser(0,60);
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[39] | 308 | gr11->GetXaxis()->SetRangeUser(1,600);
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[23] | 309 |
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[39] | 310 | Double_t* params = fitfun->GetParameters();
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| 311 |
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| 312 | char tempResol[500];
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| 313 | sprintf(tempResol,"%f * #sqrt{E_{T}}",params[0]);
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[23] | 314 |
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[39] | 315 | TPaveText *leg1 = MakeTPave(0.4,0.6,0.8,0.65,tempResol);
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| 316 | leg1->Draw();
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[23] | 317 |
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[153] | 318 | TPaveText *leg2 = MakeTPave(0.2,0.8,0.8,0.85,"WHq'#rightarrow WWWq'#rightarrow lllq', m_{H}=150 GeV ");
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[39] | 319 | leg2->Draw();
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[27] | 320 |
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[39] | 321 | TPaveText *Delphes = MakeTPave(0.2,0.15,0.35,0.2,"MG/ME + Delphes");
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| 322 | Delphes->Draw();
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| 323 |
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| 324 |
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| 325 | delete fitfun;
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[23] | 326 | }
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| 327 |
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| 328 | void General()
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| 329 | {
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[264] | 330 | JetResol();
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| 331 | ElecResol();
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| 332 | ETmisResol();
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| 333 | //TauJetInfo();
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[39] | 334 |
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[27] | 335 | }
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[23] | 336 |
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| 337 |
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