Considering the circuit below, answer the following questions: (a) Calculate equivalent resistance of the circuit. (a) Calculate current I. (b) Calculate voltage V1. * Calculate the power delivered by (c) . the voltage source. (d). Calculate the voltage V2 across the 40 resistor and the current I2 through it. 8Ω 1Ω ww- + V1 - + 15 V (+ V2 4Ω 6Ω 2Ω Reg
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- Given the circuit components below: 1. Calculate the current coming from the 9-V battery, I1. 2. Calculate the EMF of the other battery, E. 3. Calculate the current traveling through the 1.0- resistor. 4. How much power is being dissipated by the 3.0- resistor? 5. How much power is the 9-V battery supplying? 9.0 V 3.0 Ω -1/₁1+ www 2.0 Ω 3.0 A ww 1.0 Ω + A E 1₁ 1₂1. For the following, put all final answers in the +20V table below or sketch a similar table. а. Solve for the equivalent resistance of the circuit. Put your final answer in the table. 12 Q b. Solve for the voltage across and the 1Q 20 Q current through each resistor in the circuit. Fill in the table. Equivalent Resistance = Ω Resistor (2) ||AV| (V)| |I| (A) 1 5 12 204. Which of the following statements is true of the voltameters? A. Voltmeter 1 and voltmeter 2 will read the same voltage. B. Voltmeter 1 will read 6 V. C. Voltmeter 2 will read 6 V. D. Voltmeter 2 will read the correct voltage across the 3Ω resistor. E. Both voltmeters will read the correct voltage across the 6Ω resistor.
- In the circuit shown in the figure, the potential difference VA VB = 41.0 V and the resistance R₁ = R₂ = R3 = R4 = Rs = 175 2. The arrow in the figure defines the positive direction for the flow of current IA. Determine IA.. IA = Determine the power Ps dissipated by Ps = R5. A W R₂ + + R3Can you answer problem 11? Can you also provide a short explanation for the answer you chose?How to solve this question
- Figure shows a circuit with two batteries and three resistors.a. How much current flows through the 2.00-Ω resistor?b. What is the potential difference between points a and b in the circuit?Two resistors are connected as shown below. R1 = 3.0 0 and R2 = 6.0 0. The voltage across the battery is 36 V. Match the answers with questions. R1 R2 v Voltage across the battery A. 8 V v Voltage across R1 B. 36 V v Voltage across R2 C. 12 V D. 18 V E. 28 V F. OV G. 24 VFour resistors are connected as shown below. R₁ = R₂ = R3 = R4 = 3.0 02. The voltage across the battery is 156 V. What is the current through the battery, in Ampere? Your answer needs to have 2 significant figures, including the negative sign in your answer if needed. Do not include the positive sign if the answer is positive. No unit is needed in your answer, it is already given in the question statement. R₂ R₁ ww Hi R₂ R₂