The circuit shown in the figure below is connected for 1.50 min. (Assume R₁ = 7.10 , R₂ = 2.40 , and V = 14.0 V.) R₁ www 5.00 Ω _ 3.00 Ω 1.00 Ω 4.00 V 1.00 resistor 3.00 resistor 2.40 resistor R₂ (a) Determine the current in each branch of the circuit. branch magnitude (A) direction left branch middle branch right branch V (b) Find the energy delivered by each battery. 4.00 V battery J 14.0 V battery kJ J --Select- ---Select-- --Select- ✓ (c) Find the energy delivered to each resistor. 7.10 resistor J 5.00 resistor J J J

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Chapter1: Units, Trigonometry. And Vectors
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The circuit shown in the figure below is connected for 1.50 min. (Assume R₁ = 7.100, R₂ = 2.40 , and V = 14.0 V.)
R₁
www
5.00 ΩΣ 3.00 Ω
1.00 Ω
4.00 V
5.00 resistor
1.00 resistor
3.00
resistor
2.40 resistor
(a) Determine the current in each branch of the circuit.
branch
magnitude (A)
direction
left branch
--Select--- V
middle branch
---Select---
right branch
---Select--- ✓
(b) Find the energy delivered by each battery.
4.00 V battery
J
14.0 V battery
kJ
R₂
(c) Find the energy delivered to each resistor.
7.10 resistor
J
J
J
J
J
4
7
Transcribed Image Text:The circuit shown in the figure below is connected for 1.50 min. (Assume R₁ = 7.100, R₂ = 2.40 , and V = 14.0 V.) R₁ www 5.00 ΩΣ 3.00 Ω 1.00 Ω 4.00 V 5.00 resistor 1.00 resistor 3.00 resistor 2.40 resistor (a) Determine the current in each branch of the circuit. branch magnitude (A) direction left branch --Select--- V middle branch ---Select--- right branch ---Select--- ✓ (b) Find the energy delivered by each battery. 4.00 V battery J 14.0 V battery kJ R₂ (c) Find the energy delivered to each resistor. 7.10 resistor J J J J J 4 7
(e) Find the total amount of energy transformed into internal energy in the resistors.
50°F
kJ
Need Help? Read It
Master it
Transcribed Image Text:(e) Find the total amount of energy transformed into internal energy in the resistors. 50°F kJ Need Help? Read It Master it
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