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5. Five resistors R1 5.00 Ω R.-3.00 Ω R,-15.0 Ω R4= 10.0 Ω and and R,-7.00...
Five resistors R1=9.00 Ω, R2=7.00 Ω, R3=13.0 Ω, R4=10.0 Ω, and R5=7.00 Ω are mounted as shown in the figure. The voltage of the battery is V = 22 Volts. What is the power dissipated in the R3 resistor? WWWWW R4 R5 R R3
6. Six resistors R1=5.00 92, R2=8.00 92, R3=14.0 2, R4=10.0 22, R5=10.0 12, and R6=3.00 22 are mounted as shown in the figure. The voltage of the battery is V= 18 Volts. What is the power dissipated in the R3 resistor? Watts 'Ro WWW R3 R,
9. Six resistors R1 4.00 Ω, R,-4.00 Ω, R,-14.0 Ω R.-10.0 Ω, Rs=10.0 Ω, and R6-8.00 Ω are mounted as shown in the figure. The voltage of the battery is V 12 Volts. What is the current in the R3 resistor? 0.559 Amps R6 R4 R5 R3 R, R2
Four resistors, R1 = 17.1 Ω, R2 = 39.8 Ω, R3 = 95.1 Ω and R4 = 20.0 Ω are connected to a 12.0 V battery as shown in the figure. Determine the power dissipated by resistor R2.
Four resistors, R1 = 18.1 Ω, R2 = 37.8 Ω, R3 = 91.6 Ω and R4 = 19.0 Ω are connected to a 18.0 V battery as shown in the figure. Determine the power dissipated by resistor R2.
Four resistors, R1 = 17.1 Ω, R2 = 45.3 Ω, R3 = 86.1 Ω and R4 = 21.5 Ω are connected to a 16.5 V battery as shown in the figure. Determine the power dissipated by resistor R2. Submit Answer Tries 0/99
9. A resistor R2=6.0 Q is mounted in parallel with a resistor R3=7.0 Q, and this combination is connected in series with a resistor R1=9.0 Q and a 10 Volts battery. What is the power dissipated in the R3 resistor? Watts R2 ww R3 10. Four resistors R1=9.0 Q, R2=3.0 Q,R3=11.0 2, and R4-4.0 2 are mounted as shown in the figure. The voltage of the battery is V = 18 Volts. What is the current in the R3 resistor?...
Four resistors of R1 = R, R2 = 2 R, R3 = R/4, and R4 = 2 R are connected purely in series to a 30 volt battery. 12 Coulombs of charge passes through a point of the wire in 2.3 seconds. What is the power dissipated by resistor, R3, in Watts?
A circuit is constructed with five resistors and one real battery as shown above right. We model. The real battery as an ideal emf V = 12 V in series with an internal resistance r as shown above left. The values for the resistors are: R1 = R3 = 22 Ω, R4 = R5 = 82 Ω and R2 = 147 Ω. The measured voltage across the terminals of the batery is Vbattery = 11.6 V. A circuit is constructed...
Consider the network of four resistors shown in the diagram, where R1 = 2.00 Ω , R2 = 5.00 Ω , R3 = 1.00 Ω , and R4 = 7.00 Ω . The resistors are connected to a constant voltage of magnitude V. (Figure 1)a.) Find the equivalent resistance RA of the resistor network.b.) Two resistors of resistance R5 = 3.00 Ω and R6 = 3.00 Ω are added to the network, and an additional resistor of resistance R7 =...