The circuit shown in the figure below is connected for 3.10 min. (Assume R, = 6.00 N, R, = 1.90 N, and V = 16.0 V.) 5.00 3.009 R2 1.00 N R 4.00 V (a) Determine the current in each branch of the circuit. branch magnitude (A) direction 1x Your response differs from the correct answer by more than 10%. Double check your calculations. left branch down middle branch down right branch up
The circuit shown in the figure below is connected for 3.10 min. (Assume R, = 6.00 N, R, = 1.90 N, and V = 16.0 V.) 5.00 3.009 R2 1.00 N R 4.00 V (a) Determine the current in each branch of the circuit. branch magnitude (A) direction 1x Your response differs from the correct answer by more than 10%. Double check your calculations. left branch down middle branch down right branch up
Introductory Circuit Analysis (13th Edition)
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ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
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The circuit shown in the figure below is connected for 3.10 min. (Assume R, = 6.00 N, R, = 1.90 N, and V = 16.0 V.)
. 5.00 Ω 3.00 Ω
R2-
1.00 2
4.00 V
(a) Determine the current in each branch of the circuit.
branch
magnitude (A)
direction
left branch
down
Your response differs from the correct answer by more than 10%. Double check your calculations.
middle branch
down
right branch
up
(b) Find the energy delivered by each battery.
4.00 v battery
16.0 V battery
kJ
(c) Find the energy delivered to each resistor.
6.00 N resistor
ESP
5.00 Ω resistor
01:24 p. m.
1.00 Ω resistor
viernes
30/04/2021
3.00 n resistor
1.90 Ω resistor
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