HW2. In Fig. (a), a PV module is connected to a variable resistor R via a cable with a resistance Rw =6 N .The approximated I-V curve of the PV module is depicted in Fig. (b). By adjusting R, the PV module can output different amount of power. When R = 10 N, the PV module outputs a maximum electrical power of 1600 W, which is dissipated by both Rw and R. The short-circuit current of the PV module is known to be 13.75 A. What is the value of V; of the I-V curve show in Fig. (b)? Choose the value that is closest to the answer. Rw PV V Module - Fig. (a). Isc O' Voc ос

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HW2. In Fig. (a), a PV module is connected to a variable resistor R via a cable with a resistance
Rw =6 N . The approximated I-V curve of the PV module is depicted in Fig. (b). By adjusting
R, the PV module can output different amount of power. When R = 10 N, the PV module
outputs a maximum electrical power of 1600 W, which is dissipated by both Rw and R. The
short-circuit current of the PV module is known to be 13.75 A.
What is the value of V; of the I-V curve show in Fig. (b)? Choose the value that is closest to
the answer.
PV
V
Module
Fig. (a).
SC
Voc
Fig. (b).
+
Transcribed Image Text:HW2. In Fig. (a), a PV module is connected to a variable resistor R via a cable with a resistance Rw =6 N . The approximated I-V curve of the PV module is depicted in Fig. (b). By adjusting R, the PV module can output different amount of power. When R = 10 N, the PV module outputs a maximum electrical power of 1600 W, which is dissipated by both Rw and R. The short-circuit current of the PV module is known to be 13.75 A. What is the value of V; of the I-V curve show in Fig. (b)? Choose the value that is closest to the answer. PV V Module Fig. (a). SC Voc Fig. (b). +
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