On a hyperbolic conservation law of electron transport in solid materials for electron probe microanalysis
Author:
Publisher
Springer Science and Business Media LLC
Subject
General Mathematics
Link
http://link.springer.com/content/pdf/10.1007/s00574-016-0170-x.pdf
Reference20 articles.
1. G. F. Bastin and H. J. M. Heijligers. Quantitative electron probe microanalysis of ultra-light elements (boron-oxygen). In: K. F. J. Heinrich and D. E. Newbury (editors), Electron Probe Quantitation, pages 145–161. Plenum Press (1991).
2. H. Bethe. Zur theorie des durchgangs schneller korpuskularstrahlen durch materie. Ann. Phys., 5 (1930), 325.
3. D. B. Brown and R. E. Ogilvie. An Electron Transport Model for the Prediction of X-Ray Production and Electron Backscattering in ElectronMicroanalysis. Journal of Applied Physics, 37(12) (1966), 4429.
4. D. B. Brown, D. B. Wittry and K. D. F. Prediction of X-Ray Production and Electron Scattering in Electron-Probe Analysis Using a Transport Equation. Journal of Applied Physics, 40(4) (1969), 1627.
5. T. A. Brunner and J. P. Holloway. One-dimensional Riemann solvers and the maximum entropy closure. Journal of Quantitative Spectroscopy & Radiative Transfer, 69 (2001), 543–566.
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