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Citation(s) in
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11
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Eversole WG
, Kindsvater HM, Peterson JD.
The Diffusion Coefficient of Cupric Sulfate from 0.0 to 0.35 Molar at 25°C.
ACTA ACUST UNITED AC
2002. [DOI:
10.1021/j150417a006
]
[
Citation(s) in
RCA
: 18
]
[
Impact Index Per Article: 0.8
]
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[Indexed: 11/30/2022]
Number
Cited by Other Article(s)
1
Hernández-Labrado G
, Collazos-Castro J, Polo J. Digital simulations to solve electrochemical processes involving a diffusion coefficient varying linearly with the concentration.
J Electroanal Chem (Lausanne)
2008. [DOI:
10.1016/j.jelechem.2007.11.033
]
[
Citation(s) in
RCA
: 4
]
[
Impact Index Per Article: 0.3
]
[
Reference Citation Analysis
]
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[Indexed: 11/28/2022]
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2
Barrer RM
. Measurement of diffusion and thermal conductivity "constants" in non-homogeneous media, and in media where these "constants" depend respectively on concentration or temperature.
ACTA ACUST UNITED AC
2002. [DOI:
10.1088/0959-5309/58/3/313
]
[
Citation(s) in
RCA
: 28
]
[
Impact Index Per Article: 1.3
]
[
Reference Citation Analysis
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[Indexed: 11/12/2022]
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3
Diffusion in aqueous copper sulfate and copper sulfate-sulfuric acid solutions.
J SOLUTION CHEM
1987. [DOI:
10.1007/bf00650751
]
[
Citation(s) in
RCA
: 13
]
[
Impact Index Per Article: 0.4
]
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[Indexed: 10/26/2022]
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4
The diffusion coefficient of copper sulphate in aqueous solution.
Electrochim Acta
1984. [DOI:
10.1016/0013-4686(84)80002-x
]
[
Citation(s) in
RCA
: 55
]
[
Impact Index Per Article: 1.4
]
[
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[Indexed: 11/21/2022]
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5
Lu Z
, Muir D, Ritchie I. A comparative study of the dissolution of nickel and copper in acidified CuSO4-acetonitrile-H2O and CuCl2-NaCl-H2O solutions.
J Electroanal Chem (Lausanne)
1984. [DOI:
10.1016/0368-1874(84)87096-3
]
[
Citation(s) in
RCA
: 4
]
[
Impact Index Per Article: 0.1
]
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[Indexed: 10/18/2022]
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6
Applications of porous flow through electrodes. II. Hydrogen evolution and metal ion removal at packed metal wool electrodes.
J APPL ELECTROCHEM
1984. [DOI:
10.1007/bf01269936
]
[
Citation(s) in
RCA
: 4
]
[
Impact Index Per Article: 0.1
]
[
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[Indexed: 10/25/2022]
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7
Effects of radial diffusion on the efficiency of porous flow-through electrodes.
J APPL ELECTROCHEM
1980. [DOI:
10.1007/bf00615486
]
[
Citation(s) in
RCA
: 6
]
[
Impact Index Per Article: 0.1
]
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[Indexed: 11/26/2022]
Abstract
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8
Miller DG
, Rard JA, Eppstein LB, Robinson RA. Mutual diffusion coefficients, electrical conductances, osmotic coefficients, and ionic transport coefficientsl ij for aqueous CuSO4 at 25°C.
J SOLUTION CHEM
1980. [DOI:
10.1007/bf00647737
]
[
Citation(s) in
RCA
: 5
]
[
Impact Index Per Article: 0.1
]
[
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[Indexed: 12/01/2022]
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9
Ateya BG
, Arafat EAS, Kafafi SA. Hydrodynamic effects on the efficiency of porous flow-through electrodes.
J APPL ELECTROCHEM
1977. [DOI:
10.1007/bf00611031
]
[
Citation(s) in
RCA
: 13
]
[
Impact Index Per Article: 0.3
]
[
Reference Citation Analysis
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[Indexed: 11/28/2022]
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10
McLarnon F
, Muller R, Tobias C. Interferometric study of transient diffusion layers.
Electrochim Acta
1976. [DOI:
10.1016/0013-4686(76)85045-1
]
[
Citation(s) in
RCA
: 29
]
[
Impact Index Per Article: 0.6
]
[
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[Indexed: 11/26/2022]
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11
Newman J
, Hsueh L. The effect of variable transport properties on mass transfer to a rotating disk.
Electrochim Acta
1967. [DOI:
10.1016/0013-4686(67)80086-0
]
[
Citation(s) in
RCA
: 21
]
[
Impact Index Per Article: 0.4
]
[
Reference Citation Analysis
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[Indexed: 10/17/2022]
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