The dark saturation current of a solar cell is 1.7E-8 A/m², the cell temperature is 371 K, the short-circuit current density is 165 A/m?, Vmax is 0.526 V and the available solar radiation is 781 W/m² . The Boltzmann's gas constant is 1.381X10-23 J/K and the electronic charge is 1.602X10-19 J/N. Calculate Open-circuit voltage Voc in Volts = Current density at maximum power Imax in A/m²= Maximum power Pmax in W/m? =

icon
Related questions
Question

answer queckly

The dark saturation current of a solar cell is 1.7E-8 A/m², the cell temperature is 371 K, the short-circuit current
density is 165 A/m², Vmax is 0.526 V and the available solar radiation is 781 W/m² . The Boltzmann's gas
constant is 1.381X10-23 J/K and the electronic charge is 1.602X10-19 J/V. Calculate
Open-circuit voltage Voc in Volts =
Current density at maximum power Imax in A/m2=
Maximum power Pmax in W/m2 =
% Maximum efficiency nmax =
Transcribed Image Text:The dark saturation current of a solar cell is 1.7E-8 A/m², the cell temperature is 371 K, the short-circuit current density is 165 A/m², Vmax is 0.526 V and the available solar radiation is 781 W/m² . The Boltzmann's gas constant is 1.381X10-23 J/K and the electronic charge is 1.602X10-19 J/V. Calculate Open-circuit voltage Voc in Volts = Current density at maximum power Imax in A/m2= Maximum power Pmax in W/m2 = % Maximum efficiency nmax =
Expert Solution
trending now

Trending now

This is a popular solution!

steps

Step by step

Solved in 4 steps

Blurred answer