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Bassett, John

Watson EB, Cherniak DJ (1997) Oxygen diffusion in zircon. Earth Planet Sci Lett 148 527-544 Wendlandt RW (1991) Oxygen diffusion in basalt and andesite melts Experimental results and discussion of chemical versus tracer diffusion. Contrib Mineral Petrol 108 463-471 West AR (1984) Solid State Chemistry and Its Applications. John Wiley and Sons, New York Whipple RTP (1954) Concentration contours in grain boundary diffusion. Phil Mag 45 1225-1236 White AF, Peterson MI (1990) Role of reactive-surface area characterization in geochemical kinetic models. In Melchior DC, Bassett RL (eds) Chemical Modeling of Aqueous Systems. II. Am Chem Soc Symp 416 461-475... [Pg.189]

John T. O. Kirk and Richard A. E. Tilney-Bassett, The Plastids. Freeman, San Francisco, 1967. [Pg.137]

Bassett, Ross Knox. 2002. To the Digital Age Research Labs, Start-up Companies, aitd the Rise of MOS Technology. Baltimore Johns Hopkins University Press. [Pg.248]

Fig. 2.4 DSC melting endotherms of high crystallinity polypropylene (7) crystallized frtnn the melt for 3 h at 145 °C, (2) partially melting scan (3) fully remelted after the partial melting From figure 3, Weng J, Olley RH, Bassett DC and Jaaskelainen P, Changes in the Melting Behavior with the Radial Distance in Isotactic Polypropylene Spherulites. J. Polym. Sci. Polym. Phys. 41 2342-2354. Copyright 2003 by John Wiley Sons, Inc. Reprinted by permission of John Wiley Sons, Inc... Fig. 2.4 DSC melting endotherms of high crystallinity polypropylene (7) crystallized frtnn the melt for 3 h at 145 °C, (2) partially melting scan (3) fully remelted after the partial melting From figure 3, Weng J, Olley RH, Bassett DC and Jaaskelainen P, Changes in the Melting Behavior with the Radial Distance in Isotactic Polypropylene Spherulites. J. Polym. Sci. Polym. Phys. 41 2342-2354. Copyright 2003 by John Wiley Sons, Inc. Reprinted by permission of John Wiley Sons, Inc...
G. H. Jeffery, ). Bassett J- Mendham etal., Vogel s Textbook of Quantitative Chemical Analysis, 5th ed., John Wiley Sons, New York, 1989, p. 297. [Pg.511]

Figure 3.37 Optical micrographs of single compact polyethylene axiahte grown from a 1% solution in xylene at ca. 86°C. View (a) is nearly normal to the truncated lonzenge lamellar surfaces, (b) is 90° away, showing the edges of lamellae/lamellar bundles, and (c) is along the axis of the symmetry axis or spine. The width of each optical micrograph is 60 pm. From Bassett et al. [54] with permission of John Wiley Sons, Inc. Figure 3.37 Optical micrographs of single compact polyethylene axiahte grown from a 1% solution in xylene at ca. 86°C. View (a) is nearly normal to the truncated lonzenge lamellar surfaces, (b) is 90° away, showing the edges of lamellae/lamellar bundles, and (c) is along the axis of the symmetry axis or spine. The width of each optical micrograph is 60 pm. From Bassett et al. [54] with permission of John Wiley Sons, Inc.

See other pages where Bassett, John is mentioned: [Pg.283]    [Pg.539]    [Pg.3778]    [Pg.233]    [Pg.303]    [Pg.556]    [Pg.25]    [Pg.27]   
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