std::numeric_limits<double>::min(),
std::numeric_limits<double>::max(),
.1,
- "parametrc_precision" );
+ "parametric_precision" );
myStepLen->setSizePolicy( QSizePolicy( QSizePolicy::Expanding, QSizePolicy::Fixed ) );
TopLayout->addWidget(myStepLen, 1, 1);
connect(myStepLen, SIGNAL(valueChanged(double)), this, SLOT(StepLengthChanged(double)));
std::numeric_limits<double>::min(),
std::numeric_limits<double>::max(),
.1,
- "parametrc_precision" );
+ "parametric_precision" );
myIntegStepLen->setSizePolicy( QSizePolicy( QSizePolicy::Expanding, QSizePolicy::Fixed ) );
TopLayout->addWidget(myIntegStepLen, 2, 1);
connect(myIntegStepLen, SIGNAL(valueChanged(double)), this, SLOT(IntegrationStepChanged(double)));
std::numeric_limits<double>::min(),
std::numeric_limits<double>::max(),
.1,
- "parametrc_precision" );
+ "parametric_precision" );
myPropTime->setSizePolicy( QSizePolicy( QSizePolicy::Expanding, QSizePolicy::Fixed ) );
TopLayout->addWidget(myPropTime, 3, 1);
connect(myPropTime, SIGNAL(valueChanged(double)), this, SLOT(PropagationTimeChanged(double)));