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Fig. IV-13. Example of a p-polarized reflection spectrum from Ref. [154] for a stearyl alcohol monolayer on water. The dashed line is the baseline to be subtracted from the spectra. [Reprinted with permission from Joseph T. Buontempo and Stuart A. Rice, J. Chem. Phys. 98(7), 5835-5846 (April 1, 1993). Copyright 1993, American Institute of Physics.]... Fig. IV-13. Example of a p-polarized reflection spectrum from Ref. [154] for a stearyl alcohol monolayer on water. The dashed line is the baseline to be subtracted from the spectra. [Reprinted with permission from Joseph T. Buontempo and Stuart A. Rice, J. Chem. Phys. 98(7), 5835-5846 (April 1, 1993). Copyright 1993, American Institute of Physics.]...
P. R. Thornton, Scanning Electron Microscopy, Chapman and Hall, 1968. See also Scanning Electron Microscopy Systems and Applications, The Institute of Physics, London, 1973. [Pg.319]

Fig. XVn-16. Infrared absorption spectra of H2 physisorbed on NaCl(lOO) at 30 K. See text for explanations. (From Ref. 96. Reprinted with permission from American Institute of Physics, copyright 1993.)... Fig. XVn-16. Infrared absorption spectra of H2 physisorbed on NaCl(lOO) at 30 K. See text for explanations. (From Ref. 96. Reprinted with permission from American Institute of Physics, copyright 1993.)...
Pratt L R and Hummer G (eds) 1999 Simulation and theory of electrostatic interactions in solution computational chemistry, biophysics and aqueous solutions AlP Conf. Proc. (Sante Fe, NM, 1999) vol 492 (New York American Institute of Physics)... [Pg.558]

Figure A2.5.23. Reduced temperature = T/T versus reduced density p. = p/p for Ne, Ar, Kr, Xe, N2, O2, CO, and CH. The frill curve is the cubic equation (A2.5.26). Reproduced from [10], p 257 by pennission of the American Institute of Physics. Figure A2.5.23. Reduced temperature = T/T versus reduced density p. = p/p for Ne, Ar, Kr, Xe, N2, O2, CO, and CH. The frill curve is the cubic equation (A2.5.26). Reproduced from [10], p 257 by pennission of the American Institute of Physics.
Figure A2.5.31. Calculated TIT, 0 2 phase diagram in the vicmity of the tricritical point for binary mixtures of ethane n = 2) witii a higher hydrocarbon of contmuous n. The system is in a sealed tube at fixed tricritical density and composition. The tricritical point is at the confluence of the four lines. Because of the fixing of the density and the composition, the system does not pass tiirough critical end points if the critical end-point lines were shown, the three-phase region would be larger. An experiment increasing the temperature in a closed tube would be represented by a vertical line on this diagram. Reproduced from [40], figure 8, by pennission of the American Institute of Physics. Figure A2.5.31. Calculated TIT, 0 2 phase diagram in the vicmity of the tricritical point for binary mixtures of ethane n = 2) witii a higher hydrocarbon of contmuous n. The system is in a sealed tube at fixed tricritical density and composition. The tricritical point is at the confluence of the four lines. Because of the fixing of the density and the composition, the system does not pass tiirough critical end points if the critical end-point lines were shown, the three-phase region would be larger. An experiment increasing the temperature in a closed tube would be represented by a vertical line on this diagram. Reproduced from [40], figure 8, by pennission of the American Institute of Physics.
Kestin J (ed) 1973 Transport Phenomena, AlP Conference Proceedings No. 11 (New York American institute of Physics)... [Pg.691]

Figure A3.14.il. Spiral waves imaged by photoelectron electron microscopy for the oxidation of CO by O2 on a Pt(l 10) single crystal under UHV conditions. (Reprinted with pennission from [35], The American Institute of Physics.)... Figure A3.14.il. Spiral waves imaged by photoelectron electron microscopy for the oxidation of CO by O2 on a Pt(l 10) single crystal under UHV conditions. (Reprinted with pennission from [35], The American Institute of Physics.)...
Figure Bl.7.13. A schematic diagram of an ion-guide mass spectrometer. (Ervin K M and Annentrout P B 1985 Translational energy dependence of Ar + XY —> ArX + Y from thennal to 30 eV c.m. J. Chem. Phys. 83 166-89. Copyright American Institute of Physics Publishing. Reproduced with pemiission.)... Figure Bl.7.13. A schematic diagram of an ion-guide mass spectrometer. (Ervin K M and Annentrout P B 1985 Translational energy dependence of Ar + XY —> ArX + Y from thennal to 30 eV c.m. J. Chem. Phys. 83 166-89. Copyright American Institute of Physics Publishing. Reproduced with pemiission.)...
Bertini I, Martini G and Luchinat C 1994 Relaxation, background, and t neory Handbook of Electron Spin Resonance (ed C Poole and H Farach (New York American Institute of Physics) oh 3, pp 51-77... [Pg.1588]

Thust A and Rosenfeid R 1998 State of the art of focai-series reconstruction in HRTEM Electron Microscopy 1998 14th Int. Cent, on Electron Microscopy (Cancun) voi 1 (Bristoi institute of Physics Pubiishing) pp 119-20... [Pg.1652]

Burke P G 1996 Atomic, Molecular and Optical Physics Handbook ed G W Drake (New York American Institute of Physics Press) oh 45... [Pg.2058]

Dynamics and Pattern Formation in Biological and Complex Systems ed S Kim, K J Lee and W Sung (Melville, NY American Institute of Physics) pp 95-111... [Pg.2665]

Bruno G, Capezuttuto P and Losurdo M 1995 On the use of the piasma in iii-V semiconductor processing Phenomena In Ionized Gases (ICPIG Hoboken, NJ, 1995 (AiP Conference Proceedings voi 22) ed K FI Becker, W E Carr and E E Kunhardt (Woodbury, NY American Institute of Physics) pp 146-55... [Pg.2812]

J. Heyrovsky Institute of Physical Chemistry, Academy of Sciences of the Czech Republic, Dolejskova 3, 18223 Prague 8, Czech Republic Department of Physical Chemistry and The Fritz Haber Research Center, The Hebrew University, Jerusalem 91904, Israel Department of Chemistry, University of California, Irvine, CA 92697-2025, U.S.A. [Pg.365]

R. W. Hockney and J. W. Eastwood, Computer Simulations Using Particles, Institute of Physics Publishing, Bristol, 1988. [Pg.493]

Figure 7.24 (and on cover) from Groot R D and T J Madden 1998. Dynamic simulation of diblock copolymer microphase separation. The Journal of Chemical Physics 108 8713-8724. Americcm Institute of Physics. [Pg.19]

The isotope produced was the 20-hour 255Fm. During 1953 and early 1954, while discovery of elements 99 and 100 was withheld from publication for security reasons, a group from the Nobel Institute of Physics in Stockholm bombarded 238U with 160 ions, and isolated a 30-min alpha-emitter, which they ascribed to 250-100, without claiming discovery of the element. This isotope has since been identified positively, and the 30-min half-life confirmed. [Pg.212]

References D. D. Wagman, et ah, The NBS Tables of Chemical Thermodynamic Properties, in J. Phys. Chem. Ref. Data, 11 2,1982 M. W. Chase, et ah, JANAF Thermochemical Tables, 3rd ed., American Chemical Society and the American Institute of Physics, 1986 (supplements to JANAF appear in J. Phys. Chem. Ref. Data) Thermodynamic Research Center, TRC Thermodynamic Tables, Texas A M University, College Station, Texas I. Barin and O. Knacke, Thermochemical Properties of Inorganic Substances, Springer-Verlag, Berlin, 1973 J. B. Pedley, R. D. Naylor, and S. P. Kirby, Thermochemical Data of Organic Compounds, 2nd ed.. Chapman and Hall, London, 1986 V. Majer and V. Svoboda, Enthalpies of Vaporization of Organic Compounds, International Union of Pure and Applied Chemistry, Chemical Data Series No. 32, Blackwell, Oxford, 1985. [Pg.533]

Figure 8.13 The MgATa oxygen Is and carbon Is X-ray photoelectron spectra of a 2 1 mixture of CO and CO2 gases. (Reproduced, with permission, from Allan, C. J. and Siegbahn, K. (November 1971), Publication No. UUIP-754, p. 48, Uppsala University Institute of Physics)... Figure 8.13 The MgATa oxygen Is and carbon Is X-ray photoelectron spectra of a 2 1 mixture of CO and CO2 gases. (Reproduced, with permission, from Allan, C. J. and Siegbahn, K. (November 1971), Publication No. UUIP-754, p. 48, Uppsala University Institute of Physics)...
Reproduced, with permission, from Siegbahn, K. (September 1975), Publication No. UUIP-909, p20 Uppsala University Institute of Physics]... [Pg.309]

T. Ikegami, E. Hasegawa, and Y. Takeda, "GaUium Arsenide Related Compounds, 1992," iu the Proceedings of the 19th International Symposium, Oct. 2, 1992, Kariu awa, Japan, Institute of Physics, Bristol, U.K., 1993. [Pg.166]

J. S. Harris, ed.. Proceedings of the 15th International Symposium on Gallium, Arsenide, and Belated Compounds, Sept. 11 —14, 1988, Atlanta, Ga., No. 96, Institute of Physics, Bristol, U.K., 1989. [Pg.166]

C. E. Poole, Jr. and H. A. Earach, eds.. Handbook of Electron Spin Resonance Datasources, Computer Technology, Relaxation and ENDOR, American Institute of Physics, New York, 1994. [Pg.410]

N. J. Eisch, ed.. Advances in Plasma Physics Proceedings of the Thomas H. Stix Symposium, American Institute of Physics, AIP Press, Woodbury, N. Y., 1994. [Pg.120]

JxTNxTF Thermochemical Tables, 3rd ed., American Chemical Society, Washington, D.C., and American Institute of Physics, New York, for the National Bureau of Standards, 1985. [Pg.149]


See other pages where Institute of Physics is mentioned: [Pg.971]    [Pg.1967]    [Pg.477]    [Pg.565]    [Pg.166]    [Pg.166]    [Pg.166]    [Pg.18]    [Pg.124]    [Pg.124]    [Pg.19]    [Pg.120]    [Pg.377]   
See also in sourсe #XX -- [ Pg.598 ]




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