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X-ray science
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From Wikipedia, the free encyclopedia
v
t
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X-ray science
Characteristics
X-ray
Absorption edge
Moseley's law
Synchrotron radiation
Water window
K-edge
L-edge
Siegbahn notation
Characteristic X-ray
High-energy X-rays
Sources and instruments
X-ray tube
Betatron
Synchrotron
Synchrotron light source
Free-electron laser
X-ray nanoprobe
Interaction with matter
Rayleigh scattering
Photoelectric effect
Compton scattering
Auger effect
Photoionization
Photodisintegration
Radiation damage
Anomalous X-ray scattering
X-ray diffraction
X-ray fluorescence
Applications
Imaging
X-ray radiography
Panoramic radiography
Tomosynthesis
CDI
CT
Helical CT
XACT
Soft x-ray microscopy
XPCI
STXM
Ptychography
Diffraction tomography
XDCT
DCT
3DXRD
X-Ray Fluorescence Imaging
X-ray holography
X-ray telescope
DFXM
DXA
Spectroscopy
XAS
XPS
ARPES
AES
EXAFS
XANES
EDS
XFH
Scattering
X-ray crystallography
X-ray diffraction
Backscatter X-ray
SAXS
GISAXS
WAXS
X-ray reflectivity
RIXS
XRS
XS
EDXRD
Others
X-ray astronomy
History
X-ray lithography
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