The op amps in the circuit below are ideal. impedance Žin = √₂/2 Compute the between the terminals indicate the corresponds and and b, and to its effective value. element Copy (or redraw ) and perform as you rules branch currents. can the circuit diagram. much analysis. as by using the ideal op-amp to mark node voltages and which Zin directly on the diagram.

Introductory Circuit Analysis (13th Edition)
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ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
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Do both parts urgent 

8
(b)
2496.
T
I
Hii
The op amps in the circuit below are ideal.
the
impedance
V₂/IL
and
Compute
between
indicate
corresponds and
(or redraw )
Copy
and perform
you
rules
branch
AT
www
the terminals.
the
element
its
R₁
can
_-433
to mark
currents
jwc
as
2.
the circuit diagram.
much analysis.
as
by using the ideal op-amp
and
Ra
ww
in
and b
to
effective value.
which Zin
node voltages
directly
on the diagram.
R3
ww
ww
R3
Transcribed Image Text:8 (b) 2496. T I Hii The op amps in the circuit below are ideal. the impedance V₂/IL and Compute between indicate corresponds and (or redraw ) Copy and perform you rules branch AT www the terminals. the element its R₁ can _-433 to mark currents jwc as 2. the circuit diagram. much analysis. as by using the ideal op-amp and Ra ww in and b to effective value. which Zin node voltages directly on the diagram. R3 ww ww R3
(c)
The diodes in the circuit are
biased and
Each
divde.
•exponential model
such
it is
that
represented by
I = Is e V/V+, where I is the current through.
V is the voltage across it.
the diode and
identical.
the
50 mV.
10 MA
with the diagram marked to help you get
started,
value of
find
the
R
the voltage drop across
Va= V₁ + 50mV
I₂ = 10mA- 50 mV
R
+
.
I₁ =
50mV
R
bath
50mV
R
R
forward-
ó
can be
50mV
Transcribed Image Text:(c) The diodes in the circuit are biased and Each divde. •exponential model such it is that represented by I = Is e V/V+, where I is the current through. V is the voltage across it. the diode and identical. the 50 mV. 10 MA with the diagram marked to help you get started, value of find the R the voltage drop across Va= V₁ + 50mV I₂ = 10mA- 50 mV R + . I₁ = 50mV R bath 50mV R R forward- ó can be 50mV
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