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This ebook is going into element with 5 wide articles relating to contemporary advances in floor technology (1974). The contents are: 1) choice of the constitution and homes of stable surfaces by means of electron diffraction and emission (measuring the constitution and homes of reliable surfaces by way of measuring and examining scattering emission of electrons from those surfaces), 2) Electron spectroscopy of chemisorption of metals (study of chemisorption on fresh, unmarried crystal surfaces of metals using the strategy of box emission of from adsorbate coated surfaces and the tactic of photoemission spectroscopy), three) floor plasma oscillations and similar floor results in solids (study of oscillations in solid-state plasmas), four) idea of dynamical houses of dielectric surfaces (study of the lattice vibrations current on surfaces), five) a few reviews at the digital homes of liquid-metal surfaces (theories and research of liquid-metal surfaces).

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Phys. , 60(18), 2204. -H. -L. (2010) Chemical approaches towards singlespecies single-walled carbon nanotubes. Nanoscale, 2(10), 1901– 1918. E. (1997) Evidence for charge transfer in doped carbon nanotube bundles from. Raman Scattering, 388(6639), 257– 259. C. (1999) Electrochemical References 63. 64. 65. 66. 67. 68. 69. 70. 71. oxidation of single wall carbon nanotube bundles in sulfuric acid. J. Phys. Chem. B, 103(21), 4292– 4297. , and Zakhidov, A. (2001) Raman scattering study of electrochemically doped single wall nanotubes.

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Chem. B, 103(21), 4292– 4297. , and Zakhidov, A. (2001) Raman scattering study of electrochemically doped single wall nanotubes. Synth. , 116(1–3), 411– 414. S. (2004) Spectroelectrochemical studies of single wall carbon nanotubes films. Chem. Phys. , 392(4-6), 396–402. B. (2004) Electrochemical gating of individual single-wall carbon nanotubes observed by electron transport measurements and resonant Raman spectroscopy. Appl. Phys. , 84(12), 2052. Gupta, S. (2011) Ion transport and electrochemical tuning of Fermi level in single-wall carbon nanotubes: In situ Raman scattering.

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