Your value of psi is
psi =
(1 pt)
(1 pt each) Consider the circuit illustrated:
a) Find the Thevenin equivalent voltage and resistance between points a and b. Use psi, and R_(3)=(50+psi)Omega.
V_(Th)=,V(+-1%)
R_(Th)=,Omega (+-1%)
b) Find V_(a) and the current through a 100Omega resistor that is placed between points a and b.
V_(a)=,V(+-1%)
I_(ab)=,mA(+-1%)
(1 pt each) Consider the circuit illustrated:
a) Find the Thevenin equivalent voltage and resistance between points a and b. Use R_(1)=(100-(psi)/(2))Omega, R_(2)=(200-psi)Omega, and R_(3)=R_(4)=R_(5)=(50+psi)Omega.
V_(Th)=,V(+-1%)
R_(Th)=,Omega (+-1%)
b) Find the Norton equivalent current
I_(N)=,mA(+-1%)
c) Find V_(a) and the current through a 100Omega resistor that is placed between points a and b.
V_(a)=,V(+-1%)
I_(ab)=,mA(+-1%)
Your value of w is
W
97
(1 pt)
R
1.(1 pt each) Consider the circuit illustrated:
a) Find the Thevenin equivalent voltage and resistance between points a and b. Use R1 = (100+), R = (200- y) Q2, and R3 =(50+w)
10V
VTh =
V ( 1%)
b
RTh =
( 1%)
b) Find Va and the current through a 100Q resistor that is placed between points a and b.
Va =
V (+ 1%)
Iab =
mA ( 1%)
R
a
2. (1 pt each) Consider the circuit illustrated:
a) Find the Thevenin equivalent voltage and resistance between points a and b. Use R1 = (100-/2) 2, R = (200-) Q2, and R3 = R4 = Rs = (50+y) 2.
2 mA
10 V
VTh =
V (+ 1%)
RTh =
( 1%)
b) Find the Norton equivalent current
IN=
mA (+ 1%)
c) Find Va and the current through a 100resistor that is placed between points a and b.
Va=
V (+ 1%)
Iab =
mA (1%)