"
Back Surface Recombination Velocity Dependent of Absorption Coefficient as Applied to Determine Base Optimum Thickness of an n+/p/p+ Silicon Solar Cell"
written by Meimouna Mint Sidi Dede, Mamadou Lamine Ba, Mamour Amadou Ba, Mor Ndiaye, Sega Gueye, El Hadj Sow, Ibrahima Diatta, Masse Samba Diop, Mamadou Wade, Gregoire Sissoko,
published by
Energy and Power Engineering,
Vol.12 No.7, 2020
has been cited by the following article(s):
[1]
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AC Back Surface Recombination Velocity as Applied to Optimize the Base Thickness under Temperature of an (n+-p-p+) Bifacial Silicon Solar Cell, Back …
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World Journal of …,
2023 |
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[2]
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Determination of the Base Optimum Thickness of Back Illuminated (n+/p/p+) Bifacial Silicon Solar Cell, by Help of Diffusion Coefficient at Resonance …
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Journal of …,
2023 |
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[3]
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Monochromatic ligth of short wavelength as applied to determine (N+/P/P+) Silicon solar cell base thickness under the influence of both magnetic field and …
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…,
2022 |
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[4]
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Ousmane SOW, Sega GUEYE, Richard MANE, Gora DIOP, Ibrahima DIATTA, Khady LOUM
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2022 |
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[5]
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Diffusion Coefficient at Double Resonances in Frequency and Temperature, Applied to (n+/p/p+) Silicon Solar Cell Base Thickness Optimization under Long …
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Journal of …,
2022 |
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[6]
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Back Illuminated N/P/P+ Bifacial Silicon Solar Cell under Modulated Short-Wavelength: Determination of Base Optimum Thickness
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Energy and …,
2021 |
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[7]
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AC Recombination Velocity as Applied to Determine n+/p/p+ Silicon Solar Cell Base Optimum Thickness
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Energy and Power …,
2020 |
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[8]
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Diffusion Coefficient at Resonance Frequency as Applied to n+/p/p+ Silicon Solar Cell Optimum Base Thickness Determination
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Journal of …,
2020 |
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[1]
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Study In Transient Regime Of A Silicon Solar Cell: Influence Of Temperature And Magnetic Field
Journal of Fluid Flow, Heat and Mass Transfer,
2024
DOI:10.11159/jffhmt.2024.031
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