An electric circuit consists of four resistors, R1 = 12 Ohm, R2= 12 Ohm, R3 R4 = 6 Ohm, are connected with source of emf E1 = 6 Volt, E2 = 12 Volt. Determine the electric current flows in the circuit as shown in figure below. = 3 Ohm and %3D %3D %3D E, R3 R2 R, R4 E2 I

Physics for Scientists and Engineers: Foundations and Connections
1st Edition
ISBN:9781133939146
Author:Katz, Debora M.
Publisher:Katz, Debora M.
Chapter29: Direct Current (dc) Circuits
Section29.1: Measuring Potential Differences Between Two Points
Problem 29.2CE
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Please answer the questions with complete and detailed solution. Use the international standard unit. I have attached the formula that we regularly use as a reference. Thank you!

VOLTAGE DIVISION
THEOREM(VDT) FOR RESISTORS
CONNECTED IN SERIES
|q|B
W=
F
B=
qvsinė
m
E,
ту
r=
|q|B
f=
ER,
E,
R, +R2
R2
E,
ER2
É2 =
R, +R2
CURRENT DIVISION
THEOREM(CDT) FOR RESISTORS
CONNECTED IN PARALLEL
Magnetic Force on a Current-
Carrying Wire
F=BILsine
R2
R, +R2
mmf= NI
I,
H.
E,
R, R,
mmf= 0.4TNI
IR,
Ri +R2
r=
Ho
flux passing_P
B =
area
А
тmf_NI
F-qxv x Β
R =
HollyA
!!
R
R
Transcribed Image Text:VOLTAGE DIVISION THEOREM(VDT) FOR RESISTORS CONNECTED IN SERIES |q|B W= F B= qvsinė m E, ту r= |q|B f= ER, E, R, +R2 R2 E, ER2 É2 = R, +R2 CURRENT DIVISION THEOREM(CDT) FOR RESISTORS CONNECTED IN PARALLEL Magnetic Force on a Current- Carrying Wire F=BILsine R2 R, +R2 mmf= NI I, H. E, R, R, mmf= 0.4TNI IR, Ri +R2 r= Ho flux passing_P B = area А тmf_NI F-qxv x Β R = HollyA !! R R
An electric circuit consists of four resistors, R1 = 12 Ohm, R2= 12 Ohm, R3 = 3 Ohm and
%D
%3D
R4 = 6 Ohm, are connected with source of emf E1 = 6 Volt, E2 = 12 Volt. Determine the
electric current flows in the circuit as shown in figure below.
E,
R,
R2
R,
R.
E2
I
Transcribed Image Text:An electric circuit consists of four resistors, R1 = 12 Ohm, R2= 12 Ohm, R3 = 3 Ohm and %D %3D R4 = 6 Ohm, are connected with source of emf E1 = 6 Volt, E2 = 12 Volt. Determine the electric current flows in the circuit as shown in figure below. E, R, R2 R, R. E2 I
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