93   fMassCof = particleMass*particleMass ; 
 
  107   G4double pSquared = y[3]*y[3] + y[4]*y[4] + y[5]*y[5] ;
 
  111   G4double pModuleInverse  = 1.0/std::sqrt(pSquared);
 
  113   G4double inverse_velocity = Energy * pModuleInverse / c_light;
 
  119   dydx[0] = y[3]*pModuleInverse ;                         
 
  120   dydx[1] = y[4]*pModuleInverse ;                         
 
  121   dydx[2] = y[5]*pModuleInverse ;                    
 
  133   dydx[3] = cofMag * Field[0] + cofEl * (y[4]*Field[2] - y[5]*Field[1]);   
 
  134   dydx[4] = cofMag * Field[1] + cofEl * (y[5]*Field[0] - y[3]*Field[2]); 
 
  135   dydx[5] = cofMag * Field[2] + cofEl * (y[3]*Field[1] - y[4]*Field[0]); 
 
  151   dydx[7] = inverse_velocity;
 
G4double GetCharge() const 
 
Definition of the G4MonopoleEquation class. 
 
virtual void EvaluateRhsGivenB(const G4double y[], const G4double Field[], G4double dydx[]) const 
 
G4MonopoleEquation(G4ElectroMagneticField *emField)
 
virtual void SetChargeMomentumMass(G4ChargeState particleChargeState, G4double momentum, G4double mass)
 
G4double MagneticCharge() const 
 
static const double eplus