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Elasticity electron

Figure 9-7. Elastic electron-diffraction pattern of a highly textured hcxaphenyl film. The Miller indices arc assigned using the intcrplauar spacings calculated in Kef. 11371. Inset Intensity of the f020) peak as a function of the angle between momentum transfer and the Teflon rubbing direction (see text) - taken from Ref. 138. ... Figure 9-7. Elastic electron-diffraction pattern of a highly textured hcxaphenyl film. The Miller indices arc assigned using the intcrplauar spacings calculated in Kef. 11371. Inset Intensity of the f020) peak as a function of the angle between momentum transfer and the Teflon rubbing direction (see text) - taken from Ref. 138. ...
Ed being the energy of the fast electron. To a good approximation, the effect of inelastically scattered electrons on the elastic electron wave field may be treated via a first order perturbation method. From Equation (4) we have... [Pg.162]

Lacour, S. R Jones, J. Wagner, S. Suo, Z. 2005. Stretchable interconnects for elastic electronic surfaces. Proc. IEEE 93 1459-1467. [Pg.29]

Model dependence of the Zemach correction, as well as its dependence on the proton radius is theoretically unsatisfactory. A much better approach is suggested in [8], where the values of the proton and deuteron first Zemach moments were determined in a model independent way from the analysis of the world data on the elastic electron-proton and electron-deuteron scattering. The respective moments turned out to be [8]... [Pg.221]

Byron Jr., F.W. and Joachain, C.J. (1973). Elastic electron-atom scattering at intermediate energies. Phys. Rev. A 8 1267-1282. [Pg.399]

The precision of this atomic table top measurement exceeds the accuracy of previous measurements based on elastic electron scattering by an order of magnitude. The reanalysis of electron scattering data by Sick and Trautmann [43] yields a value with an increased uncertainty, which is in good agreement with the data obtained in the Garching experiment. [Pg.29]

Figure 4.7 A comparison of the inelastic cross sections Q2iCA/s 2 Vs) f°r potassium-noble-gas collisions, with the elastic electron-noble-gas scattering cross sections (z, Q21 , < ). Figure 4.7 A comparison of the inelastic cross sections Q2iCA/s 2 Vs) f°r potassium-noble-gas collisions, with the elastic electron-noble-gas scattering cross sections (z, Q21 , < ).
Fig. 8.10. Differential cross section for elastic electron scattering on sodium. Open circles, Lorentz and Miller (1991) closed circles, Srivastava and Vuskovic (1980) crosses, 54.4 eV, Allen et al. (1987), and 100 eV, Teubner, Buckman and Noble (1978) solid curve, coupled channels optical broken curve, 3-state coupled channels (Bray et al., I99ld). From Bray et al. (I99ld). Fig. 8.10. Differential cross section for elastic electron scattering on sodium. Open circles, Lorentz and Miller (1991) closed circles, Srivastava and Vuskovic (1980) crosses, 54.4 eV, Allen et al. (1987), and 100 eV, Teubner, Buckman and Noble (1978) solid curve, coupled channels optical broken curve, 3-state coupled channels (Bray et al., I99ld). From Bray et al. (I99ld).
Obviously, theory of vibrationally inelastic electron scattering is open to all complications that have been encountered in the theory of elastic electron scattering1,2,21. In contrast to the electronic structure theory, we do not have in the theory of electron scattering any standard procedures as configuration interaction, Mpller-Plesset theory or coupled clusters, not speaking about the... [Pg.131]

Fig. 2 Electron-atom interactions. (A) Elastic electron-electron interaction dominates the scattering intensity at low and medium scattering angles (B) Rutherford scattering at the nucleus causes high-angle scattering and (C) electrons can excite atom-bonded electrons from the ground state to higher unoccupied states or to the vacuum level, element specific X-rays are produced when the excited electron returns to the ground state. (View this art in color at www.dekker.com.)... Fig. 2 Electron-atom interactions. (A) Elastic electron-electron interaction dominates the scattering intensity at low and medium scattering angles (B) Rutherford scattering at the nucleus causes high-angle scattering and (C) electrons can excite atom-bonded electrons from the ground state to higher unoccupied states or to the vacuum level, element specific X-rays are produced when the excited electron returns to the ground state. (View this art in color at www.dekker.com.)...

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Elastic-peak electron spectroscopy experiments

Elasticity electron density

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