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Processing and transport properties of the Bi-based cuprate superconductorsLo, Wai January 1993 (has links)
No description available.
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612 |
Novel high Tc superconducting 1212 phases and related materialsParberry, James Michael January 1994 (has links)
No description available.
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613 |
Focused electron beam induced chemistry and its application in microelectronicsHoyle, P. C. January 1994 (has links)
No description available.
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614 |
Cyclic deformation of copper single crystalsJin, N. Y. January 1983 (has links)
No description available.
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615 |
New applications of the molecular symmetry groupBone, Richard George Andrew January 1992 (has links)
No description available.
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616 |
Fully coupled electrothermal modelling of semiconductor deviceYing-jian, Wu January 1992 (has links)
No description available.
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617 |
Microwave measurement of single crystals of high temperature superconductorsCholerton, Simon Derrick January 1993 (has links)
No description available.
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618 |
Electronically excited states in surface dynamicsSiller, Lidija January 1995 (has links)
No description available.
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619 |
TEM characterisation of III-V semiconductor multiple quantum well structuresNg, Inn-Khuan January 1997 (has links)
No description available.
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620 |
Electrical and electrochemical studies of some solid electrolytesSivapalan, Nagalingam January 1987 (has links)
In Chapter 1 solid electrolytes are reviewed. The historical development, mechanism of ionic conduction in solids and the properties and applications of important solid electrolytes are given. Chapter 2 discusses impedance methods as applied to electrochemistry and the equivalent circuit representation of the solid electrolyte/electrode interface. The application of a computer program that gives theoretical impedance and/or admittance plots is also described. The application of four-electrode conductivity measurements to solid electrolytes is described in Chapter 3. Since this is the first time these four-electrode measurements have been employed with solid electrolytes, a detailed review of the theoretical calculations and the errors involved are presented. The results from the experiments on the solid electrolyte PyAg<SUB>5</SUB>I<SUB>6</SUB>(Py=C<SUB>5</SUB>H<SUB>6</SUB>N) are also given. In Chapter 4, the cathodic deposition of silver from PyAg<SUB>5</SUB>I<SUB>6</SUB> and its subsequent recovery by anodic polarisation are examined. The behaviour of solid silver and silver painted electrodes in this perspective is compared. The solid electrolyte galvanic cell AgmidPyAg<SUB>5</SUB>I<SUB>6mid</SUB>Me<SUB>4</SUB>NI<SUB>5</SUB>, C is investigated in Chapter 5. Various cell parameters are measured and the charge/discharge characteristics examined. Finally in Chapter 6 the behaviour of zeolites as solid ionic conductors is reviewed and the results of some preliminary studies on zeolite-Y are presented.
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