Download presentation
Presentation is loading. Please wait.
1
Solving circuits step by step (traditional)
DC Parallel Circuits Solving circuits step by step (traditional)
2
RT = _________1________ _1 + _1 + _1_ R1 R2 R3
12K W 22K W 15K W RT = _________1________ _1 + _ _1_ R R R3 R1 I1 E1 P1 R2 I2 E2 P2 R3 I3 E3 P3 RT IT ET PT
3
RT = _________1________ _1 + _1 + _1_ R1 R2 R3
12K W 22K W 15K W RT = _________1________ _1 + _ _1_ R R R3 __1__ = 12000 __1__ = 22000 __1__ = 15000 Add Invert __1__ = 5115
4
RT = _________1________ _1 + _1 + _1_ R1 R2 R3
_1 + _ _1_ R R R3 12K W 22K W 15K W RT = 5120 W Ohms R1 I1 E1 P1 R2 I2 E2 P2 R3 I3 E3 P3 RT IT ET PT 12K W 22K W 15K W
5
12K W 22K W 15K W 12K W 22K W 15K W 5.120 K W 12V R1 I1 E1 P1 R2 I2 E2
RT IT ET PT 12K W 22K W 15K W 5.120 K W 12V
6
Rule for Parallel Resistors:
Voltage stays the same in a parallel circuit. 12K W 22K W 15K W Volts R1 I1 E1 P1 R2 I2 E2 P2 R3 I3 E3 P3 RT IT ET PT 12K W 22K W 15K W 5.115K W 12V 12V 12V 12V
7
12K W 22K W 15K W I = E / R I = 12 / 5.115K 12 / = R1 I1 E1 P1 R2 I2 E2 P2 R3 I3 E3 P3 RT IT ET PT 12K W 12V 22K W 12V 15K W 12V ? 12V 5.115KW
8
12K W 22K W 15K W I = E / R I = 12 / 12K 12 / 12000 = .001 12K W 12V
12 / = .001 R1 I1 E1 P1 R2 I2 E2 P2 R3 I3 E3 P3 RT IT ET PT 12K W 12V 22K W 12V 15K W 12V 5.115K W 2.35mA 12V
9
12K W 22K W 15K W I = E / R I = 12 / 22K 12 / = R1 I1 E1 P1 R2 I2 E2 P2 R3 I3 E3 P3 RT IT ET PT 12K W 1mA 12V 22K W 12V 15K W 12V 5.115K W 23.5mA 12V
10
12K W 22K W 15K W I = E / R I = 12 / 15K 12 / 15000 = .0008 12K W 1mA
12 / = .0008 R1 I1 E1 P1 R2 I2 E2 P2 R3 I3 E3 P3 RT IT ET PT 12K W 1mA 12V 22K W 545mA 12V 15K W 12V 5.115K W 23.5mA 12V
11
12K W 22K W 15K W I = E / R Double-check Add Amps 12K W 1mA 12V 22K W
RT IT ET PT 12K W 1mA 12V 22K W 545mA 12V 15K W 800mA 12V _____ 5.115K W 2.35mA 12V
12
12K W 22K W 15K W I = E / R Double-check Add Amps 12K W 1mA 12V .001
RT IT ET PT 12K W 1mA 12V .001 22K W 545mA 12V 15K W 800mA .0008 12V _____ 5.115K W 2.35mA 12V
13
12K W 22K W 15K W I = E / R Amps 12K W 1mA 12V 22K W 545mA 12V 15K W
RT IT ET PT 12K W 1mA 12V 22K W 545mA 12V 15K W 800mA 12V 5.115K W 2.35mA 12V
14
P I E 12K W 22K W 15K W P = I x E P = 1mA x 12V P = .001 x 12 = 12.0 m
R1 I1 E1 P1 R2 I2 E2 P2 R3 I3 E3 P3 RT IT ET PT 12K W 1mA 12V 22K W 545mA 12V 15K W 800mA 12V 5.115K W 2.35mA 12V
15
P I E 12K W 22K W 15K W P = I x E P = 545mA x 12V P = .000545 x 12 =
R1 I1 E1 P1 R2 I2 E2 P2 R3 I3 E3 P3 RT IT ET PT 12K W 1mA 12V 12.0mW 22K W 545mA 12V 15K W 800mA 12V 5.115K W 2.35mA 12V
16
P I E 12K W 22K W 15K W P = I x E P = 800mA x 12V P = .0008 x 12 =
R1 I1 E1 P1 R2 I2 E2 P2 R3 I3 E3 P3 RT IT ET PT 12K W 1mA 12V 12.0mW 22K W 545mA 12V 6.54mW 15K W 800mA 12V 5.115K W 2.35mA 12V
17
P I E 12K W 22K W 15K W P = I x E P = 2.35mA x 12V P = .00235 x 12 =
R1 I1 E1 P1 R2 I2 E2 P2 R3 I3 E3 P3 RT IT ET PT 12K W 1mA 12V 12.0mW 22K W 545mA 12V 6.54mW 15K W 800mA 12V 9.60mW 5.115K W 2.35mA 12V
18
P I E 12K W 22K W 15K W P = I x E P = 2.35mA x 12V P = .00235 x 12 =
Double-check R1 I1 E1 P1 R2 I2 E2 P2 R3 I3 E3 P3 RT IT ET PT 12K W 1mA 12V 12.0mW 12.0 22K W 545mA 12V 6.54mW + 6.54 15K W 800mA 12V 9.60mW + 9.60 5.115K W 2.35mA 12V 28.2mW = 28.14
19
12K W 22K W 15K W Ohms Amps Volts Watts 12K W 1mA 12V 12.0mW 22K W
R1 I1 E1 P1 R2 I2 E2 P2 R3 I3 E3 P3 RT IT ET PT 12K W 1mA 12V 12.0mW 22K W 545mA 12V 6.54mW 15K W 800mA 12V 9.6.0mW 5.115K W 2.35mA 12V 28.2 mW
20
Solving circuits step by step (short)
DC Parallel Circuits Solving circuits step by step (short)
21
Same first step: copy all information to the chart
24V 150 W 330 W 180 W R1 I1 E1 P1 R2 I2 E2 P2 R3 I3 E3 P3 RT IT ET PT 24V 24V 24V 24V
22
Calculate current values for 1, 2, and 3
150 W 330 W 180 W I = E/R I = 24/150 = 0.16 I = 160mA R1 I1 E1 P1 R2 I2 E2 P2 R3 I3 E3 P3 RT IT ET PT 24V 150 W 160mA 330 W 24V 72.7mA 180 W 133mA 24V 24V
23
Add current at 1, 2, and 3 to get the total
24V 150 W 330 W 180 W IT = I1+I2+I3 IT = = 366mA R1 I1 E1 P1 R2 I2 E2 P2 R3 I3 E3 P3 RT IT ET PT 24V 150 W 160mA 330 W 24V 72.7mA 180 W 133mA 24V 24V
24
and IT Now calculate RT using ET RT = ET/IT RT = 24 / .366 = 65.6W R1
24V 150 W 330 W 180 W RT = ET/IT RT = 24 / .366 = 65.6W R1 I1 E1 P1 R2 I2 E2 P2 R3 I3 E3 P3 RT IT ET PT 24V 150 W 160mA 330 W 24V 72.7mA 180 W 133mA 24V 366mA 24V
25
Now solve for power using the power formula
P = I x E R1 I1 E1 P1 R2 I2 E2 P2 R3 I3 E3 P3 RT IT ET PT 24V 150 W 160mA 330 W 24V 72.7mA 180 W 133mA 24V 65.6W 366mA 24V
Similar presentations
© 2025 SlidePlayer.com. Inc.
All rights reserved.