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Randles

C. P. Reeg, A. C. Randle, and J. H. Duir, Proceedings, 23rd Oil Shale Symposium, Colorado School of Mines Press, Golden, Colo., 1990, pp. 68—95. [Pg.358]

Randle, V. and Engler, O. (2000) Macrotexture, Microtexture and Orientation Mapping (Gordon Breach, New York). [Pg.388]

Rl. Randles, J., A theory of burnout in heated channels at low mass velocities, AEEW-R279, H.M. Stationery Office, London (1963). [Pg.292]

Reversible Systems The peak current for a reversible couple (at 25°C), is given by the Randles-Sevcik equation ... [Pg.31]

Radical ions, 33, 44 Raman spectroelectrochemistry, 45 Randles-Sevcik equation, 31 Rate constant, 12, 18 Rate determining step, 4, 14 Reaction mechanism, 33, 36, 113 Reaction pathway, 4, 33 Reaction rate, 12 Receptor-based sensors, 186 Redox recycling, 135... [Pg.208]

Ran Randles, J.E.B. Trans. Symp. Electrode Proc. Philadelphia 1959, New York Wiley, 1961, p. 209. [Pg.381]

Greville GD Vol 1, p 297, in Carbohydrate Metabolism and Its Disorders. Dickens F, Randle PJ, Whelan WJ (editors). Academic Press, 1968. [Pg.135]

Randle PJ The glucose-fatty acid cycle—biochemical aspects. Atherosclerosis Rev 1991 22 183-... [Pg.236]

Chang J, Jozwiak R, Wang B, Ng T, Ge YC, Bolton W, Dwyer DE, Randle C, Osborn R, Cunningham AL, Saksena NK (1998) Unique HIV type 1 V3 region sequences derived from six different regions of brain region-specific evolution within host-determined quasispecies. AIDS Res Hum Retroviruses 14(l) 25-30... [Pg.109]

The principle of the jet method, which also utilizes a condenser, was originated by Kenrick and improved by Randles and later by McTigue et al. It may be summarized as follows A jet of one liquid is directed down the axis of a tube, the inner surface of which is covered by a stream of the second liquid. If the reference electrodes are the same and the outer... [Pg.22]

The standard Volta potential of the calomel electroded (Hg.Cl ) was determined for the first time by Klein and Lange, but the accepted and usually used value of this potential (equal to 0.207 V) was found by Randles.48 Later measurements by Parrel and McTigue et al.21 and Antropov et al. gave 0.212 V and 0.220 V, respectively. In the methanol a value equal to 0.25 has been found. [Pg.24]

In the calculation of H the standard Volta potential of the calomel electrode found by Randles has been used (see Section V). The other estimators of (abs), for instance, -4.73 V by Corner andTryson seem to be doubtful. A detailed discussion of this topic may be found in the papers by Trasatti. ... [Pg.30]

Many attempts to estimate x on the basis of different nonthermody-namic assumptions have shown that the value of this potential is positive and that it is comparatively small. According to subsequent estimates by Frumkin, Randles, and Trasatti x is equal to +0.1, +0.08 0.06, and +0.13 V, respectively. Dynamic experiments have confirmed this order of value. The time of establishing the equilibrium value has been found to be about 3 ms. [Pg.44]


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Application to a Randles Circuit

Bounded Randles cell

Charge transfer Randles circuit

Electrical circuits models Randles

Electrochemical impedance spectroscopy Randles circuit

Ershler-Randles model

Randle-Cycle

Randles JEB

Randles analysis

Randles cell

Randles circuit

Randles equivalent circuit

Randles equivalent circuit Nyquist plot

Randles equivalent circuit, diagram

Randles general

Randles impedances

Randles model

Randles- Sevdk equation

Randles-Ershler electric equivalent circuit

Randles-SevCik relationship

Randles-Sevcfk equation

Randles-Sevcik equation

Randles-Sevcik equation derivation

Randles-Sevcik expression

Randles-Sevcik function

Randles-Seveik equation

Randles-type equivalent circuits

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