In the figure below, R1 = 0.230 N, R2 = 2.30 N, and R3 = 23.00 N. Find the equivalent resistance of the circuit and the current in each resistor when a 7.00-V power supply is connected between points A and B, points A and C, and points A and D.
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- Four resistors (R1=6 ohms, R2=5 ohms, R3= 4 ohms, R4=34 ohms) are connected in parallel. Find the current in R2 if the total voltage is 220 VConsider the circuit shown in the diagram below. The battery has a voltage V = 12.0 V and the resistors have the following values. R₁ = 4.07 ; R₂ = 8.14 2; R3 = 20.35 ; R4 = 12.212 How much current flows through each of the four resistors? I1 A I2 = A I3 = A I4 = A R₁ R₂ R3See the above circuit diagram to answer the question. The battery voltage is 84.8 V, and the resistances are R1 = 158 Ohms; R2 = 198 Ohms; R3 = 137 Ohms; R4 = 99 Ohms; R5 = 148 Ohms; and R6 = 97 Ohms. What is the equivalent resistance of this circuit? 845 Ohms 429 Ohms 527 Ohms 215 Ohms
- Given the circuit below, determine the magnitude of the current through the 20-volt source.The circuit below has three resistors and three DC voltage sources. The current I2 is equal to 0.295 A. Find currents I1 & I2, as well as resistance R.Consider the following circuit diagram. The potential difference across the battery is 40.0 volts, and it supplies a current of 5.00 amperes to the circuit. There is a current of of 2.70 amperes flowing through R1. Resistor R2 has a resistance of 5.50 ohms. What is the resistance of R3? Answer in ohms to two decimal places, but do not include units in your answer.
- The figure below shows five resistors and two batteries connected in a circuit. What are the currents I1, I2, and I3? (Consider the following values: R1 = 1.20 Ω, R2 = 2.16 Ω, R3 = 3.19 Ω, R4 = 4.18 Ω, R5 = 6.18 Ω. Due to the nature of this problem, do not use rounded intermediate values in your calculations—including answers submitted in WebAssign. Indicate the direction with the sign of your answer.)I1=?I2=?I3=?Consider the Circuit shown in the figure below. (Let R₁ = 7:00M, R₂ = 7:00; and E= 7 uov) 10.0 R2 wym 5.000 LM 2.00n R₁ mm E $i + + a) Find the Voltage across R₁ (answer in V) 6 Find the current in R1 (answer in A)In the circuit shown, the potential difference VA = VB = 46.0 V and the resistance R1 = R2 = R3 = R4 = 155 Ohms. The arrows for currents IA and IB indicate the direction of positive current flow. The arrows do not necessarily indicate the direction that the current flows. Find IA Find IB
- F₁ = L1, B₂ чт вът Різі чом =1032 V R -Gv 100 qüdrh I 1 R2 R23 2. Four resistors and a 6.0-V battery are arranged as shown in the circuit diagram. Find the equivalent resistance of the circuit b. Find the current through the 10-Ohm resistor a. sonsufit c. Find the power delivered to the 10-Ohm resistor R₁-4092 -18V -18V 13 C+ D B=6V 6VI Azov I=I1 + 0.64 AQUOS to 218-12 = 30 I H = -1 R4-2002 14. 0.64 1₂V R₂-3002 -IA F 12V E R3=1092 holong s vivang to 6 DS sailwaqogani THOS T20 3. A horizontal wire of length 6.0m carries a current of 6.0A and is oriented so that Forth's magnetic field is due north at thisConsider the circuit in the drawing. Determine (a) the magnitude of the current in the circuit and (b) the magnitude of the voltage between the points labeled A and B. The figure shows 4 resistors and 2 batteries in series. Clockwise from the top left, a 5 ohm resistor is connected to the negative terminal of a 30 volt battery. The node between the resistor and the battery is marked A. The positive terminal of the battery is connected to a 27 ohm resistor. The 27 ohm resistor is connected to the positive terminal of a 10 volt battery. The node between the resistor and the battery is marked B. The negative terminal of the battery is connected to the 12 ohm resistor. The 12 ohm resistor is connected to a 8 ohm resistor and the 8 ohm resistor is connected to the 5 ohm resistor in the top left corner.