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Effect of Ba:Ti Molar Ratio and Sintering Temperature on the Structural and Electrical Properties of BaTiO<sub>3</sub>-Type Solid Solutions, Synthesized by the Hydrothermal Method. [PDF]
Palmas Léon JA +8 more
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High- and ultrahigh-spatial-resolution geochronology. [PDF]
Li QL, Wang H.
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Linking mineral chemistry and radiological risk in rare-metal-bearing monzogranite in Egypt. [PDF]
Ghoneim MM.
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Hereditary Behavior for Center Segregation and Inclusions in Q355 Steel Slabs with Ti and Nb Addition. [PDF]
Tong K +6 more
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2018
When an accelerated electron strikes a substance, it sometimes ejects the inner shell electron of the atom existing in the substance and creates a vacancy. This phenomenon is called electron beam excitation.
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When an accelerated electron strikes a substance, it sometimes ejects the inner shell electron of the atom existing in the substance and creates a vacancy. This phenomenon is called electron beam excitation.
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Archives of Dermatology, 1980
• Several causes of noncaseating epithelioid granulomas of the skin must be considered before the diagnosis of sarcoidosis can be made. We report here three such cases that were studied retrospectively with scanning electron microscopy in combination with backscattered electron imaging and x-ray energy spectrometry.
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• Several causes of noncaseating epithelioid granulomas of the skin must be considered before the diagnosis of sarcoidosis can be made. We report here three such cases that were studied retrospectively with scanning electron microscopy in combination with backscattered electron imaging and x-ray energy spectrometry.
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Surface Science, 1971
Abstract Electron probe microanalysis has been reviewed with special emphasis on beam target interactions. Methods for the quantitative interpretation of X-ray data obtained by this technique are discussed and compared. Modifications in the theory are described for the special case of the analysis of surface layers.
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Abstract Electron probe microanalysis has been reviewed with special emphasis on beam target interactions. Methods for the quantitative interpretation of X-ray data obtained by this technique are discussed and compared. Modifications in the theory are described for the special case of the analysis of surface layers.
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1975
Electron-probe microanalysis (EPMA), or electron microprobe analysis (EMA), is essentially (1) a nondestructive instrumental method of qualitative and quantitative analysis for chemical elements (2)—based on measurement of the wavelengths and intensities of their characteristic x-ray spectral lines (3)—excited by an electron beam having diameter of the
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Electron-probe microanalysis (EPMA), or electron microprobe analysis (EMA), is essentially (1) a nondestructive instrumental method of qualitative and quantitative analysis for chemical elements (2)—based on measurement of the wavelengths and intensities of their characteristic x-ray spectral lines (3)—excited by an electron beam having diameter of the
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