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TCIF data

Microscope data

class iplt.MicroscopeData((object)self[, (float)cs=20000000.0[, (float)cc=20000000.0[, (float)ca=0.07[, (float)de=4.8065294265747065[, (float)alpha=0.00010000000474974513[, (float)kv=1.9999999556392617e+25]]]]]])
GetAccelerationVoltage((MicroscopeData)self) → float :

returns acceleration voltage

GetAmplitudeContrast((MicroscopeData)self) → float :

returns amplitude contrast

GetChromaticAberration((MicroscopeData)self) → float :

returns chromatic aberration

GetConvergenceAngle((MicroscopeData)self) → float :

returns converge angle

GetEnergySpread((MicroscopeData)self) → float :

returns energy spread

GetSphericalAberration((MicroscopeData)self) → float :

returns spherical aberration

GetWavelength((MicroscopeData)self) → float :

returns wavelength

SetAccelerationVoltage((MicroscopeData)self, (float)kv) → None :

sets acceleration voltage

SetAmplitudeContrast((MicroscopeData)self, (float)ca) → None :

sets amplitude contrast

SetChromaticAberration((MicroscopeData)self, (float)cc) → None :

sets chromatic aberration

SetConvergenceAngle((MicroscopeData)self, (float)alpha) → None :

sets converge angle

SetEnergySpread((MicroscopeData)self, (float)de) → None :

sets energy spread

SetSphericalAberration((MicroscopeData)self, (float)cs) → None :

sets spherical aberration

__init__((object)self[, (float)cs=20000000.0[, (float)cc=20000000.0[, (float)ca=0.07[, (float)de=4.8065294265747065[, (float)alpha=0.00010000000474974513[, (float)kv=1.9999999556392617e+25]]]]]]) → None