60. Three resistors and two 10.0-V batteries are arranged as shown in the circuit diagram. Which one of the following entries in the table is correct?
Power Delivered by Battery 1 |
Power Delivered by Battery 2 |
A)
2.5 W |
2.5 W |
B)
4.0 W |
1.0 W |
C)
1.0 W |
1.0 W |
D)
1.0 W |
4.0 W |
E)
4.0 W |
4.0 W |
60. Three resistors and two 10.0-V batteries are arranged as shown in the circuit diagram. Which one of...
Consider the following circuit with two ideal batteries and
three resistors. Note that the current directions have been chosen
for you
(a) Find i1, i2, and i3. Are the assumed current directions
correct? (12pt)
(b) Find the power dissipated in each resistor. (3pt)
(c) Find the power delivered to or by each battery and indicate
“delivered to” or “delivered by” for each. Which battery (if any)
is being charged? (3pt) (d) Find the total power dissipated and the
total power...
Four resistors and two batteries are connected in a circuit, as
shown.
a) Label the circuit and write down Kirchhoff’s rules!
b) Find the currents in the circuit.
c) Find the power delivered by the two batteries!
d) Find the power dissipated in each resistor!
1.522 2.5V WW w 112 MW 2.002 4.5V 4.002
Thee resistors and two batteries foem a circuit The emf &1-IVand-2 V are appäed to resistors A -10, R:-20, and 3 as in Fig 4 Wat is the power delivered to the resasitor R:? R, Figure 4. A resistior network with three resistors and twe batteries 04106 W 0 8 040 w O 0 002
The circuit shown in the figure below contains three resistors
(R1, R2, and R3) and three
batteries (VA, VB, and VC). The
resistor values are: R1=2 Ohms,
R2=R3=6 Ohms, and the battery voltages are
VA=25 V, VB=15 V, and VC=20 V.
When the circuit is connected, what will be the power dissipated by
R2?
a) 1.0 W
b) 2.0 W
c) 5.0 W
d) 6.0 W
e) 7.5 W
Vc R VA VB R2 { } R3
The circuit shown in the figure below contains three resistors (R1, R2, and R3) and three batteries (VA, VB, and Vc). The resistor values are: R1=2 Ohms, R=R3=4 Ohms, and the battery voltages are VA=25 V, V8=15 V, and Vc=20 V. When the circuit is connected, what will be the power dissipated by R1? Vc M R1 + VA VB - R2 R3 1.25 W 2.0W 12.5 W 6.25 W 8.13 W The circuit shown in the figure contains four...
Shown in the circuit below is a V= 10.0 V battery connected with
three resistors and a switch. The resistances for each resistor are
R1= 10 ohms, R2= 100 ohms, and R3=
1.0 ohms.
B) Calculate the current through each resistor when the switch
is closed.
A) Calculate the equivalent resistance when 1) the switch is
open and 2) when the switch is closed.
E R, Ion 2 loon R
The circuit shown in the figure below contains three resistors (R1, R2, and R3) and three batteries (VA, VB, and Vc). The resistor values are: R1=2 Ohms, R2=R3=6 Ohms, and the battery voltages are VA=25 V, V3=15 V, and Vc=20 V. When the circuit is connected, what will be the power dissipated by R2? Vc R1 + VA VB R2 R3 1.0 w 2.0 W 5.0 W 6.0 W 7.5 W
The circuit shown in the figure below contains three resistors (R1, R2, and R3) and three batteries (VA, VB, and Vc). The resistor values are: R1=2 Ohms, R2=R3=6 Ohms, and the battery voltages are VA=25 V, V8=15 V, and Vc=20 V. When the circuit is connected, what will be the power dissipated by R2? VC HA R VA ++ VB R2 R3 1.0 W 2.0W 5.0 W 6.0 W 7.5 W
The circuit shown in the figure below contains three resistors (R1, R2, and R3) and three batteries (VA, VB, and Vc). The resistor values are: R1=2 Ohms, R2=R3=6 Ohms, and the battery voltages are VA=25V, V8=15 V, and Vc=20 V. When the circuit is connected, what will be the power dissipated by R22 Vc R + VB 30 R3 1.0 W 2.0 W 5.0 W 6.0 W O 7.5 W
The circuit shown in the figure below contains three resistors (R1, R2, and R3) and three batteries (VA, VB, and Vc). The resistor values are: R1=2 Ohms, R2=R3=6 Ohms, and the battery voltages are VA-25 V, VB=15 V, and Vc=20 V. When the circuit is connected, what will be the power dissipated by R2? VC +42 RT VA +7 VB R2 w R3 1.0 W 2.0 W 5.0 W 6.0 W 7.5 W