92   if(U < 10*
eV || 0==N) { 
return 0.0; }
   104     G4bool ChargedNucleon(
false);
   106       ChargedNucleon = 
true; 
   112     if (ChargedNucleon) { 
   118     G4double RelativeVelocity = std::sqrt(RelativeVelocitySqr);
   122       (10.63/RelativeVelocitySqr - 29.92/RelativeVelocity + 42.9)
   126       (34.10/RelativeVelocitySqr - 82.20/RelativeVelocity + 82.2)
   134         AveragedXSection = ((Z-1)*ppXSection + (A-Z)*npXSection)/
G4double(A-1);
   138         AveragedXSection = ((A-Z-1)*ppXSection + Z*npXSection)/
G4double(A-1);
   145     G4double PauliFactor = 1.0 - 1.4*FermiRelRatio;
   146     if (FermiRelRatio > 0.5) {
   148       PauliFactor += 0.4*FermiRelRatio*x*x*std::sqrt(x);
   242     if( (Ncharged == Npart) ||
   248   } 
else if ( deltaN > 0 ) {
   259   if ( Npart < Ncharged ) 
 
G4double GetExcitationEnergy() const
 
G4PreCompoundTransitions()
 
static const double hbarc
 
G4double GetTransitionsr0()
 
void SetNumberOfHoles(G4int valueTot, G4int valueP=0)
 
static const double millibarn
 
static const G4double sixdpi2
 
G4int GetNumberOfHoles() const
 
virtual G4double CalculateProbability(const G4Fragment &aFragment)
 
double A(double temperature)
 
static const double proton_mass_c2
 
static G4Proton * Proton()
 
G4double GetFermiEnergy()
 
const G4ParticleDefinition * proton
 
virtual void PerformTransition(G4Fragment &aFragment)
 
void SetNumberOfParticles(G4int value)
 
static const double c_light
 
G4double G4Log(G4double x)
 
G4double G4Exp(G4double initial_x)
Exponential Function double precision. 
 
G4int GetNumberOfParticles() const
 
virtual ~G4PreCompoundTransitions()
 
void SetNumberOfCharged(G4int value)
 
static const double neutron_mass_c2
 
G4double GetLevelDensity()
 
G4int GetNumberOfCharged() const