1. Find the values of I and V in the circuit shown below for the following cases: (i) Assuming the diodes to be ideal. (ii) Assuming the diodes to be non-ideal [Hints: use constant voltage drop model with VDO=0.7 V]. (iii) Assuming the diodes to be non-ideal and use 20k instead of 10k [Hints: use constant voltage drop model with VD=0.7 V]. (iv) Assuming the diodes to be non-ideal and use 5k instead of 10k [Hints: use constant voltage drop model with VDO=0.7 V]. tu D₁ Z ² B 5 ΚΩ - 10 V + 10 V 10 ΚΩ ID2 D₂ O + ||

Power System Analysis and Design (MindTap Course List)
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Author:J. Duncan Glover, Thomas Overbye, Mulukutla S. Sarma
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Chapter4: Transmission Line Parameters
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Problem 4.2P: The temperature dependence of resistance is also quantified by the relation R2=R1[ 1+(T2T1) ] where...
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1. Find the values of I and V in the circuit shown below for the following cases:
(i) Assuming the diodes to be ideal.
(ii) Assuming the diodes to be non-ideal [Hints: use constant voltage drop model
with VDO=0.7 V].
(iii) Assuming the diodes to be non-ideal and use 20k instead of 10k [Hints: use
constant voltage drop model with VD=0.7 V].
(iv) Assuming the diodes to be non-ideal and use 5k instead of 10k0 [Hints: use
constant voltage drop model with VDO=0.7 V].
tu
D₁ Z ²
B
5 ΚΩ
- 10 V
+ 10 V
10 ΚΩ
ID2
D₂
O
+
||
Transcribed Image Text:1. Find the values of I and V in the circuit shown below for the following cases: (i) Assuming the diodes to be ideal. (ii) Assuming the diodes to be non-ideal [Hints: use constant voltage drop model with VDO=0.7 V]. (iii) Assuming the diodes to be non-ideal and use 20k instead of 10k [Hints: use constant voltage drop model with VD=0.7 V]. (iv) Assuming the diodes to be non-ideal and use 5k instead of 10k0 [Hints: use constant voltage drop model with VDO=0.7 V]. tu D₁ Z ² B 5 ΚΩ - 10 V + 10 V 10 ΚΩ ID2 D₂ O + ||
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