EDAX provides EDS, EBSD, WDS and Micro-XRF materials characterization solutions
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EDAX is part of the Ametek Materials Analysis Division
EDAX's EDS, EBSD, WDS and Micro-XRF products help with materials characterization applications across numerous markets
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Art Conservation
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EDAX Material Characterization Markets/Applications



 EDAX's energy dispersive spectroscopy (EDS), electron backscatter diffraction (EBSD), wavelength dispersive spectrometry (WDS) and micro x-ray fluorescence (Micro-XRF) products help solve material characterization problems for art and conservation applications Art and Conservation
Conservation is a profession devoted to the preservation of cultural heritage for the future. Conservation activities include examination, documentation, treatment, and preventive care. All of this work is supported by research and education.
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EDAX's energy dispersive spectroscopy (EDS), electron backscatter diffraction (EBSD), wavelength dispersive spectrometry (WDS) and micro x-ray fluorescence (Micro-XRF) products help solve material characterization problems for materials science applications Materials Science
Materials science is an interdisciplinary field applying the properties of matter to various areas of science and engineering. This scientific field investigates the relationship between the structure of materials at atomic or molecular scales and their macroscopic properties.
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 EDAX's energy dispersive spectroscopy (EDS), electron backscatter diffraction (EBSD), wavelength dispersive spectrometry (WDS) and micro x-ray fluorescence (Micro-XRF) products help solve material characterization problems for nano emerging technologies applications Nano/Emerging Technologies
Over centuries, innovative methods and new technologies are developed. These emerging technologies are technical innovations which represent progressive developments within a field for competitive advantage.
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 EDAX's energy dispersive spectroscopy (EDS), electron backscatter diffraction (EBSD), wavelength dispersive spectrometry (WDS) and micro x-ray fluorescence (Micro-XRF) products help solve material characterization problems for metals applications Metals
Metal alloys research studies the physical and chemical behavior of metallic elements, their intermetallic compounds, and mixtures, which are called alloys. This field makes up a significant part of materials science.
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 EDAX's energy dispersive spectroscopy (EDS), electron backscatter diffraction (EBSD), wavelength dispersive spectrometry (WDS) and micro x-ray fluorescence (Micro-XRF) products help solve material characterization problems for energy applications Energy
Renewable energy is energy that is produced from natural resources and is one of the fastest growing industries. In any emerging industry innovation plays a key role in bringing about the mainstream adoption of technology.
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 EDAX's energy dispersive spectroscopy (EDS), electron backscatter diffraction (EBSD), wavelength dispersive spectrometry (WDS) and micro x-ray fluorescence (Micro-XRF) products help solve material characterization problems for mineralogy applications Mineralogy
Mineralogy is the study of chemistry, crystal structure, and physical properties of minerals. Specific studies within mineralogy include the processes of mineral origin and formation, classification of minerals, their geographical distribution and their utilization.
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 EDAX's energy dispersive spectroscopy (EDS), electron backscatter diffraction (EBSD), wavelength dispersive spectrometry (WDS) and micro x-ray fluorescence (Micro-XRF) products help solve material characterization problems for forensics applications Forensics
Forensic chemistry is the application of chemistry to law enforcement or the failure of products or processes. Many different analytical methods may be used to reveal what chemical changes occurred during an incident, and therefore help reconstruct the sequence of events.
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 EDAX's energy dispersive spectroscopy (EDS), electron backscatter diffraction (EBSD), wavelength dispersive spectrometry (WDS) and micro x-ray fluorescence (Micro-XRF) products help solve material characterization problems for semiconductor applications Semiconductor
The biggest challenge for the failure analysis engineer is to physically expose and identify exactly which feature of the failed cell structure is responsible for the measured failure problem.
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