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Some Considerations on Horizontal Displacement and Horizontal Displacement Coefficient B

zadanie brzegowe przestrzennej teorii sprężystości i jego zastosowanie do zagadnień mechaniki górotworu , 1969, Vol. 14, b. 3. [9] F lisiak J., M azurek J., T ajduś A., Wyznaczanie parametrów teorii Budryka–Knothego dla polskich kopalń siarki , ZN AGH, Górnictwo, 1992, 16, b. 4, [10] H ejmanowski R., K winta A., Determining the coefficient of horizontal displacements with the use of orthogonal polynomials , Arch. Min. Sci., 2009, Vol. 54, 441–454. [11] K nothe S., S roka A., Stochastyczna ocena wpływu eksploatacji na obiekty budowlane w

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The effect of hydrotropes on the solubility and mass transfer coefficient of 2-nitrobenzoic acid

-Kumar M. & Sathyamurthy N. (1998). Effect of Hydrotropes on Solubility and Mass-Transfer Coefficient of Butyl Acetate. J. Chem. Eng. Data.   43 , 695-699. Nagendra-Gandhi, N., Dharmendira-Kumar M. & Sathyamurthy N. (1998). Solubility and Mass Transfer Coefficient Enhancement of Ethyl Benzoate through Hydrotropy. Hungarian J. Ind. Chem.   26 , 63-68. Nagendra-Gandhi, N. & Dharmendira-Kumar M. (2000). Effect of Hydrotropes on Solubility and Mass Transfer Coefficient of Amyl Acetate. Bioprocess Eng.   23 , 31

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DC conductivity and Seebeck coefficient of nonstoichiometric MgCuZn ferrites

conductivity of ferrites. The present study is aimed at investigating DC electrical resistivity and Seebeck coefficient in a series of Mg 0.5−x Cu x Zn 0.5 Fe 1.9 O 4−δ (x = 0, 0.1, 0.15, 0.2 and 0.25) ferrites for probable applications as core materials of transformer and high definition TV deflection yokes. 2 Experimental Reagent grade MgO, CuO, ZnO and Fe 2 O 3 were taken in stoichiometric proportions and mixed in an agate mortar for 8 hours. The mixed oxide powder was pre-sintered at 800 °C for 4 hours. The samples were again ground for 10 hours and then sieved

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Chezy’s resistance coefficient in an egg-shaped conduit

the rough model method. Journal of Scientific Research and Report. Vol. 6(6) p. 468–475. DOI 10.9734/JSRR/2015/16682. A chour B. 2015b. Chezy’s resistance coefficient in a circular conduit. Open Civil Engineering Journal. Vol. 9 p. 187–195. DOI 10.2174/1874149501509010187. A chour B. 2015c. Chezy’s resistance coefficient in a rectangular channel. Journal of Scientific Research and Report. Vol. 7(5) p. 338–347. DOI 10.9734/JSRR/2015/18385. A chour B., B edjaoui A. 2006. Discussion. Exact solutions for normal depth problem. Journal of Hydraulic

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Comparison of Values of Pearson's and Spearman's Correlation Coefficients on the Same Sets of Data

.A., 1915. Frequency distribution of the values of the correlation coefficient in samples from an indefinitely large population. Biometrika 10: 507-521. Fisher R.A., 1921. On the "probable error" of a coefficient of correlation deduced from a small sample. Metron 1: 3-32. Galton F., 1869. Hereditary genius. An inquiry into its laws and consequences. MacMillan, London. Galton F., 1875. Statistics by intercomparison. Philosophical Magazine 49: 33-46. Galton F., 1885

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Discharge coefficient of a rectangular sharp-edged broad-crested weir

., Shokri, N., 2012. Flow characteristics of rectangular broad-crested weirs with sloped upstream face. J. Hydrol. Hydromech., 60, 2, 87-100. Govinda Rao, N.S., Muralidhar, D., 1963. Discharge characteristics of weirs of finite-crest width. La Houille Blanche, 18, 5, 537-545. Hager, W.H., Schwalt, M., 1994. Broad-crested weir. J. Irrig. Drain. Eng., 120, 1, 13-26. Harrison, A.J.M., 1967. The streamlined broad-crested weir. Proc. ICE Proc., 38, 4, 657-678. Horton, R.E., 1907. Weir experiments, coefficients

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Boundary Element Method Applied to Added Mass Coefficient Calculation of the Skewed Marine Propellers

REFERENCES 1. Burrill, L. C., Robson, W.: Virtual mass and moment of inertia of propellers. Trans. North East Coast Institution of Engineers and Shipbuilders 78, 325-360, 1962. 2. Sahin I, Crane JW and Waston KP: Added mass coefficients for submerged bodies by a low-order panel method. J Fluids Eng 1993; 115:452–7. 3. Sahin I, Crane JW, Waston KP: Application of a panel method to hydrodynamics of underwater vehicles. Ocean Eng 1997; 24(6):501–12. 4. George D. Watt: Estimates for the added mass of a multicomponent, deeply submerged vehicle

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Enhancement of Solubility and Mass Transfer Coefficient of Benzoic Acid Through Hydrotropy

Hydrotrope. Langmuir, 10, 2945-2949. DOI: 10.1021/la00021a016. 15. Srinivas, V. & Balasubramanian, D. (1998). When Does the Switch from Hydrotropy to Micellar Behavior Occur? Lagmuir. 14, 6658-6661. DOI: 10.1021/la980598c. 16. Nagendra Gandhi, N., Dharmendira Kumar, M. & Sathyamurthy, N. (1998). Solubility and mass transfer coefficient enhancement of ethyl benzoate through hydrotropy. Hungarian J. Ind. Chem ., 26, 63-68. http://www.vein.hu/HJIC/content/v26n1.html. 17. Meyyappan, N. & Nagendra Gandhi, N. (2005). Solubility

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The Possibilities to Decrease the Coefficient of Friciton Between Head and Socket of the Endoprosthesis of Hip Joint

Čechoslovaca. 1997. č. 64, s. 282 - 291. [4] WIERZCHOLSKI, K. 2011. Topology of calculating pressure and friction coefficients for time-dependent human hip joint lubrication. In Acta of bioengineering and biomechanics. Wroclav University of Technology, 2011. No. 13, p. 41 - 56. [5] SUCHAN, L. et al.2010. Acetabular screw Head - induced Ceramic Acetabular Liner Fracture in Comentless Ceramic -on- Ceramic Total Hip Arthroplasty. In Orthopedics. 2010. č. 5 [6] TSAROUHAS, A. 2008. Protrusion Of The Ceramic Head Through The

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Determination of Overall Heat Transfer Coefficient by Simple Thermal Analyze

aluminum alloy A356 solidification cast in cylindrical permanent molds, Revista Matéria, v. 13, n. 2, pp. 294 – 303, 2008 [4] Konopka Z., Łągiewka M., Zyska A.: Evaluation of the heat transfer coefficient at the metal-mould interface during flow, Archives of Foundry Engineering, Volume 7, Issue 4/2007, 101-104 [5] Ulkarni S.N. K., Adhakrishna D.K. R: Effect of casting/mould interfacial heat transfer during solidification of aluminium alloys cast in CO 2 -sand mould, Materials Science-Poland, 29(2), 2011, pp. 135-142 [6] Jabbari M., Fardi Ilkhchy A

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