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Thermoelectric power of liquid noble metals
Solid State Communications, 1975Abstract A model potential for electron-ion interaction is used to calculate the thermoelectric power of copper, silver and gold in the liquid state. The results obtained from this model potential agree well with experiment.
Shradha Nand N. +3 more
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Optical rotatory power of liquid crystals
Acta Crystallographica Section A, 1968A theory of the very high rotatory power exhibited by cholesteric liquid crystals is developed by the use of the Jones calculus for optical systems. The calculations are based on the model proposed by de Vries in which the liquid crystal is regarded as built up of a large number of thin birefringent layers arranged helically.
S. Chandrasekhar, K. N. S. Rao
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Thermoelectric Power of Liquid Germanium and Tin
physica status solidi (b), 1985AbstractMeasurements of the absolute thermopower S of liquid germanium and tin are reported. It is found that S = −0.5 μV/K for Ge at the melting temperature and S = −1.5 μV/K for Sn at 900 °C. Calculations of the resistivity and the thermoelectric power performed in the framework of Ziman's nearly‐free electron theory, using the pseudopotential ...
A. Bath, J. Hugel, R. Kleim
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The thermoelectric power of liquid Ag-Au
Philosophical Magazine, 1967Abstract The absolute thermoelectric power, S, of the liquid system Ag-Au has been measured as a function of composition. S for both liquid Ag and liquid Au is found to be slightly more positive than for the solid. However, S changes markedly on alloying, going negative for Ag concentrations of 30–75 at. %. It is shown that the Ziman theory of electron
R. A. Howe, J. E. Enderby
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The stopping power of liquid water
Mathematical Proceedings of the Cambridge Philosophical Society, 1951ABSTRACTExperiments are described in which the stopping power of liquid water relative to air has been re-determined for 5 MeV. α-particles, using only a limited portion of the range. The results confirm those of earlier experimenters, who concluded that liquid water did not obey the Bragg law.
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The Thermoelectric Power of Liquid Metals
1978In this review two types of systems where measurements of thermoelectric power, S, have proved to be particularly rewarding, will be considered.
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Thermoelectric powers of liquid cadmium zinc alloys
Solid State Communications, 1976Abstract The results of new measurements of the absolute thermoelectric power S of liquid cadmium zinc alloys are reported. These measurements extend up to about 730°C for most compositions. A linear dependence of S vs temperature is found. The dependence of S vs concentration, at 450°C, is discussed in the framework of Faber and Ziman's model.
A. Bath, R. Kleim
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Settling of cylinders in power law liquids
The Canadian Journal of Chemical Engineering, 1992AbstractNew measurements on drag coefficient and wall effects on the free settling motion of cylinders in two shearthinning polymer solutions are reported. The ranges of conditions covered in this study are: 1 < Re∞∞ < 40; 0.25 < (LID) < 2; 0.079 < dID < 0.4, and n = 0.65 and 0.74.
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Temporal analysis of power law liquid jets
Computers & Fluids, 2010zbMATH Open Web Interface contents unavailable due to conflicting licenses.
Gao, Zhanjun, Ng, Kam
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Bank Powers and Liquidity Creation
SSRN Electronic Journal, 2022Allen N. Berger +4 more
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