For the circuit shown in the figure below in which RA 23 an
For the circuit shown in the figure below, in which RA = 23 and RB = 3 , find the current through and the potential difference across each resistor. Place your result in the table for east of reading.
| resistor | current (A) | potential difference (V) |
|---|---|---|
| 4 | ||
| RA (23 ) | ||
| 6 | ||
| RB (3 ) | ||
| 24 |
Solution
RB=3 ohms and 24 ohms are in parallel
1/R1 =1/3 +1/24
R1 = 2.67 ohms
6 and 2.67 ohms are in series
R2=6+2.67 =8.67 ohms
RA=23 ohms and 8.67 ohms are in parallel
1/R3 =1/23 + 1/8.67
R3=6.3 ohms
4 and 6.3 ohms are in series ,so equivalent resistance
Req = 4+6.3 =10.3 ohms
Total Current flowing in the circuit
I=V/Req=24/10.3 =2.33 A
So Current flowing through each resistor is
I4=I=2.33 A
I6=2.33*(23/23+8.67) =1.69 A
IRA =2.33-1.69=0.64 A
IRB=1.69*(24/3+24) =1.5 A
I24=1.69-1.5 =0.19 A
Voltage across each resistor
V4 = 2.33*4=9.32 Volts
V6=1.69*6=10.14 Volts
VRA=0.64*23=14.72 Volts
VRB=1.5*3=4.5 V
V24=0.19*24=4.56 Volts

