47   if(0 == 
theZ)      { index = 0; }
 
   49   else               { index = 
theA + 1; }
 
  101   for (
G4int i=0; i<nbins; ++i) {
 
  107     if(ds < sum*0.01) { 
break; }
 
  122   } 
else if(
OPTxs <= 2) { 
 
  152   for(i=0; i<100; ++i) {
 
  153     T = theMinKinEnergy + delta*rndm->
flat();
 
  169     if(probmax*rndm->
flat() <= prob) { 
break; }
 
G4double SampleKineticEnergy(const G4Fragment &aFragment)
 
static G4double ComputePowerParameter(G4int resA, G4int idx)
 
static G4double ComputePowerParameter(G4int resA, G4int idx)
 
virtual G4double GetAlpha() const =0
 
G4DeexPrecoParameters * theParameters
 
static G4double ComputeCrossSection(G4double K, G4double cb, G4double resA13, G4double amu1, G4int idx, G4int Z, G4int resA)
 
virtual G4double GetBeta() const =0
 
static G4double ComputeCrossSection(G4double K, G4double cb, G4double resA13, G4double amu1, G4int idx, G4int Z, G4int A, G4int resA)
 
G4double CrossSection(G4double ekin) const 
 
static constexpr double MeV
 
G4PreCompoundFragment(const G4ParticleDefinition *, G4VCoulombBarrier *aCoulombBarrier)
 
G4double CalcEmissionProbability(const G4Fragment &aFragment)
 
G4double theCoulombBarrier
 
T max(const T t1, const T t2)
brief Return the largest of the two arguments 
 
virtual G4double ProbabilityDistributionFunction(G4double K, const G4Fragment &aFragment)=0
 
virtual ~G4PreCompoundFragment()
 
G4double theEmissionProbability
 
static constexpr double pi