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Discharge coefficient, sieve plates

Discharge coefficients for a sharp-edge orifice. The orifice Reynolds number is based on the orifice diameter and the theoretical velocity of the fluid at the orifice cross section.

Discharge coefficients for a Venturi meter. The throat Reynolds number is based on the throat diameter and the theoretical fluid velocity at the throat cross section.

Discharge coefficients for liquid flow. By permission, Cameron Hydraulic Data, Ingersoll-Rand Co., Washington, N.J., 1979.

Discharge coefficients for liquid hydrogen.

Discharge coefficients for the flow of vapor through sieve trays. I. Leibson, R. W. Kelley, and L. A. Bullington, Pet. Refiner, 36

Discharge coefficients for vapor flow, sieve trays. Used by permission, Smith, B. O., Design of Equilibrium Stage Processes, Chapter 15, by J. R. Fair, McGraw-Hill Book Co. pg. 288, all rights reserved.

Discharge coefficients for vapor flow, sieve trays. Used by permission. Smith, B. D., Design of Equilibrium Stage Processes, Chapter 15, by J. R. Fair, McGraw-Hill Book Co. pg. 288, all rights reserved.

Discharge coefficients from Tuve and Sprenkle.

Discharge collection system.

Discharge craves fOTaIj LiNii 3Mni 3Co2y302 cell opraating at various C-rates

Discharge cuiyes of a 2.65 A h AA-size LilSOCl battery designed

Discharge curve for a LijNiPSj battery.

Discharge curve for advanced prototype electric vehicle cell demonstrating 95 W h kg-1 cell-specific energy. Reprinted from S. R. Ovshinsky, S. K. Dhar, S. Venkatesan, D. A. Corrigan, A. Holland, M. A. Fetcenko, and P. R. Gifford, Ovonic Nickel Metal Hydride Technology for Consumer and Electric Vehicle Batteries-A Review and Update, in Batteries for Portable Applications and Electric Vehicles, C. F. Holmes and A. R. Landgrebe, eds., Electrochemical Society Proc. PV97-18, p. 706,

Discharge curve for Li-TiSj .

Discharge curve for miniature zinc—air battery .

Discharge curve for sea water-activated magnesium-silver chloride reserve cell

Discharge curve of a Iithium-suiphur dioxidecell at 20 C

Discharge curve of a lithium-cupric sulphide pacemaker cell al 37 C under a load of 12.3 kfi. By permission of the Electrochemical Society

Discharge curve of a lithium-cuprous sulphide thin coin cell under a load of 12.5 k 2.

Discharge curve of a primary button air - zinc cell PR-44 at the resistance 625 land at 293 K.

Discharge curve of a primary button air - zinc cell PR-44 at the resistance 625D and at 293 K.

Discharge curve of LiNi, Co

Discharge curve of LixCoC 2 positive electrode material, with Li metal as negative electrode. Reprinted from with permission, copyright 1980 Elsevier.

Discharge curve of the Li Li V205 electrochemical cell. At x 3, the system reaches the NaCl-like



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