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for the circuit in given figurea identify the nodes and at least two loopsb identify any elements connected in series
for the circuit in given figurea identify the nodes and at least five loops in the circuitb identify any elements
in many circuits the ground is often the metal case that houses the circuit occasionally a failure occurs whereby a
the circuit in figure-1 is organized around the three signal lines a b and ca identify the nodes and at least five
are any of the elements in given figure in series or parallelif so identify the ones that are then if v2nbsp 10 v
are any of the elements in given figure in series or parallel if so identify the ones that are then if i1nbsp -5 ma
a use the passive sign convention to assign voltage variables consistent with the currents in given figurewrite three
if a wire is connected between nodes b and c in given figure what can be said about the voltages across each of the
the kcl equations for a three-node circuit are as followsnode a -i1nbsp i2nbsp-i4nbsp 0node b -i2nbsp-i3nbsp i5nbsp
for the circuit in given figure write a complete set of connection and element constraints and then find vxnbspand
for the circuit in given figure write a complete set of connection and element constraints then find vxnbspand
in given figurea assign a voltage and current variable to every elementb use kvl to find the voltage across each
given figure shows a subcircuit connected to the rest of the circuit at four pointsa use element and connection
use voltage division in given figure to find vx vy and vznbspthen show that the sum of these voltages equals the source
you wish to drive a 1-komega load from your car battery as shown in given figurethe load needs 5 v across it to operate
equivalent resistance is defined at a particular pair of terminals in given figure the same circuit is looked at from
find reqnbspbetween nodes a and b for each of the circuits in given figure what conclusion can you draw about resistors
1 using no more than four 1-komega resistors show how the following equivalent resistors can be constructed 2 komega
for each of the circuits in given figure find the equivalent practical voltage source at terminals a and
in given figure the i - v characteristic of network n is v 50i 5 vfind the equivalent practical current source for
two 10-komega potentiometers a variable resistor whose value between the two ends is 10 komega and between one end and
the current through rlnbspin given figure is 100 ma use source transformations to find rl validate your answer using
the box in the circuit in given figure is a resistor whose value can be anywhere between 8 and 80 komegause circuit
use multisim to show the power balance in the circuit of given figure that is that the sum of the power in the circuit
consider the circuit of given figureuse matlab to find all of the voltages and currents in the circuit and find the