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Lecture
Equations of Solar Cells
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Related lectures (32)
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Diode Equations
Covers diode equations in semiconductor devices, including dark IV curve and photocurrent.
P-N junction and solar cells
Covers the equations and models of solar cells, including P-N junction behavior, photocurrent generation, and heterojunction characteristics.
Photovoltaics
Covers the principles of photovoltaics, including the absorption process, bandgap importance, and electron-hole pair separation.
Absorption, generation and recombination
Explores the optical properties of solar cells, focusing on absorption, reflection, and generation of electron-hole pairs.
Solar Cells: Energy Generation and Efficiency
Covers the history and physics of solar cells, emphasizing their efficiency metrics and operation under different conditions.
Photovoltaic Devices and Light Emitting Diodes
Provides an overview of photovoltaic devices and light emitting diodes, focusing on their mechanisms, efficiency factors, and material considerations.
Solar Cells: Working Principles
Covers the working principles of solar cells and the challenges in improving efficiency.
Generation and Recombination
Explores the fundamental concepts of generation and recombination in semiconductors for photovoltaic devices.
Solar Cells: Band Diagrams and Efficiency
Covers the principles of single solar cells, including band diagrams, efficiency, and the impact of illumination on performance.
Recombination Processes: Semiconductors
Explores recombination processes in semiconductors, including radiative, Auger, and Shockley-Read-Hall recombination, and their impact on semiconductor materials.