///\file "basic/.README.txt" ///\brief Geant4 Basic Examples README page /*! \page README_basic Basic Examples The set of basic examples is oriented to "novice" users and covering many basic general use-cases typical of an "application"-oriented kind of development. - \ref ExampleB1 - Simple geometry with a few solids - Geometry with simple placements (G4PVPlacement) - Scoring total dose in a selected volume user action classes - Using G4Accumulable for automatic merging of scored values in multi-threading mode - Geant4 physics list (QBBC) - \ref ExampleB2 - Simplified tracker geometry with global constant magnetic field - Geometry with simple placements (G4PVPlacement) and parameterisation (G4PVParameterisation) - Scoring within tracker via G4 sensitive detector and hits - Geant4 physics list (FTFP_BERT) with step limiter - Started from novice/N02 example - \ref ExampleB3 - Schematic Positron Emitted Tomography system - Geometry with simple placements with rotation (G4PVPlacement) - Radioactive source - Scoring within Crystals via G4 scorers - Using G4Accumulable for automatic merging of scored values in multi-threading mode (a) and G4StatAnalysis for accumulating statistics (b) - Modular physics list built via builders provided in Geant4 - \ref ExampleB4 - Simplified calorimeter with layers of two materials - Geometry with replica (G4PVReplica) - Scoring within layers in four ways: via user actions (a), via user own object (b), via G4 sensitive detector and hits (c) and via scorers (d) - Geant4 physics list (FTFP_BERT) - Histograms (1D) and ntuple saved in the output file - Started from novice/N03 example - \ref ExampleB5 - A double-arm spectrometer with wire chambers, hodoscopes and calorimeters with a local constant magnetic field - Geometry with placements with rotation, replicas and parameterisation - Scoring within wire chambers, hodoscopes and calorimeters via G4 sensitive detector and hits - Geant4 physics list (FTFP_BERT) with step limiter - UI commans defined using G4GenericMessenger - Histograms (1D, 2D) and ntuple saved in the output file - Started from extended/analysis/A01 */