6.7 The voltage at the terminals of the 750 uH inductor in Fig. P6.7(a) is shown in Fig. P6.7(b). The inductor current i is known to be zero for t < 0. PSPICE MULTISIM a) Derive the expressions for i for t > 0. b) Sketch i versus t for 0 < ts∞. mer Figure P6.7 hose scre locatlons i Vz (mV) brofor 150 pural Vs 750 µH i net (a) 50 t (ms) (b)

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Publisher:Robert L. Boylestad
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The voltage at the terminals of the 750 uH inductor in Fig. P6.7 (a) is shown in Fig. P6.7 (b). The inductor i is known to be zero for t <0. current 
a) Derive the expressions for i for t >= 0. 
b) Sketch i versus t for 0 =<t=< unlimited

6.7 The voltage at the terminals of the 750 uH inductor
in Fig. P6.7(a) is shown in Fig. P6.7(b). The inductor
MULTISIM current i is known to be zero for t < 0.
PSPICE
290b
a) Derive the expressions for i for t > 0.
b) Sketch i versus t for 0 <ts ∞.
mer
Figure P6.7
reon locati
i
v, (mV)
150
Jon 250b
Vs
750 µH3
(a)
50
t (ms)
(b)
Transcribed Image Text:6.7 The voltage at the terminals of the 750 uH inductor in Fig. P6.7(a) is shown in Fig. P6.7(b). The inductor MULTISIM current i is known to be zero for t < 0. PSPICE 290b a) Derive the expressions for i for t > 0. b) Sketch i versus t for 0 <ts ∞. mer Figure P6.7 reon locati i v, (mV) 150 Jon 250b Vs 750 µH3 (a) 50 t (ms) (b)
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