Consider the combination of resistors shown in the figure below. 12.0 N 4.00 N 5.00 N 6.00 N 8.00 N (a) Find the equivalent resistance between point a and b. 11.67 (b) If a voltage of 49.9 V is applied between points a and b, find the current in each resistor. 12 N X A A A 4Ω. A A
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- Consider the circuits shown below, (a) What is the current through each resistor in part (a)? (b) What is the current through each resistor in part (b)? (c) What is the power dissipated or consumed by each circuit? (d) What is the power supplied to each circuit?Question 9: (a) Find the resistance equivalent to the association of resistors shown in Figure 7.64. (b) If a potential difference of 10V is applied between points A and B find the potential difference across the 4 Ohm resistor. Answer: (a) 7.82? (b) 0,568? *Please show explanation, steps and formulas for my own understanding. Thank you.Consider the circuit shown in the figure, where 1 = 23.7 V,2 = 13.3 V and R = 12.0 Ω. (Due to the nature of this problem, do not use rounded intermediate values in your calculations—including answers submitted in WebAssign.)(a)What is the current (in A) in each resistor? I1= A, I2= A, I3= A. (b)What is the power (in W) delivered to each resistor? P1= W, P2= W, P3= W.(c)What is the total power (in W) supplied by both batteries? (d)What is the relationship between the total power supplied by the batteries and the power delivered to each resistor? The total power supplied by the batteries is equal to the sum of the power delivered to each resistor .The total power supplied by the batteries is greater than the sum of the power delivered to each resistor. The total power supplied by the batteries is less than the sum of the power delivered to each resistor.
- Could someone help solve these problems? 3) (a) Find the equivalent resistance between points a and b in the figure. (R = 16.0 Ω) Ω(b) Calculate the current in each resistor if a potential difference of 60.0 V is applied between points a and b. I (4.00 Ω) = A I (7.00 Ω) = A I (16.0 Ω) = A I (9.00 Ω) = A 4) (a) Find the equivalent resistance between point a and b. Ω(b) If a voltage of 51.3 V is applied between points a and b, find the current in each resistor. 12 Ω A 6 Ω A 5 Ω A 4 Ω A 8 Ω AFor the circuit shown, find the total current flowing through the battery and the voltage across resistor R3 (Vbc). R₁ = 1700 2, R₂ = 3300, R3 = 5000 2 and = = 11.0 V. mA (1 mA = 10-3 A) I tot = Vbc = V Question Help: Read & a R3 dThree resistance of 8, 12 and 24 ohms are in parallel. This combination is in series with other parallel combination of 10,10 and 20 ohms. The whole combination is then connected to a battery of EMF 16.6 volts. If the current through the 20-ohm resistor is 0.4, a) What is the internal resistance of the battery. b) What is the current through the 12-ohm resistor? c) What is the TPD of the battery? (Show your solution with drawing)
- Each of the six real batteries in the figure below has an emf of 24 V and a resistance of 4.6 Ω. (I just need part D) (a) What is the current through the (external) resistance R = 3.6 Ω? _____________A(b) What is the potential difference across each battery? ___________V(c) What is the power of each battery? ___________W(d) At what rate does each battery transfer energy to internal thermal energy? __________W (please show the units when working through the problem so that I can follow it easier)Find the total/equivalent resistance (in ohms) of all the given resistors in the diagram shown. R1=3 ohms, R2=4 ohms, R3=2 ohms, R4=6 ohms, R5= 12 ohms, R6= 12 ohms, R7= 9 ohms, R8= 6 ohms, R9= 3 ohms, R10= 3 ohms.1. Four resistors 200Ω, 700Ω 1kΩ and 1.2kΩ connected in series. Find the equivalent resistance, thecurrent in each resistor and the potential difference across each resistor if the network is connectedto a power source 9V. Draw the Circuit Diagram. 2. Solve question number 1 but this time connect the given resistors in parallel.
- Answer the following 1. A voltage of 120V generates an IR drop across two resistors connected in series. If the voltage drop across R1 is 30V, what is the voltage drop across R2, in Volts? a) 80 b) 40 c) 100 d) 90 2. Three resistors R1, R2 and R3 of 20, 40 and 60 ohms are connected in parallel through the 120 V power line. What is the total current in the power line? a) 10A b) 12A c) 11A d) 15A 3. Resistors in a circuit are generally used to: a) increase the flow of the current b) decrease the flow of current c) avoid overvoltage d) decrease the power in the circuitWhat is the output voltage of a 3.00-V lithium cell in a digital wristwatch that draws 0.660 mA, if the cell's internal resistance is 2.15 Ω? (Enter your answer to at least five significant figures.)V1. Consider the circuit shown. What is the current in 3-Ω resistor? (Assume that the battery has negligible internal resistance)A. 3A B. 4A C. 8A D. 9A 2. Refer to (1). What is the current in 4-Ω resistor?A. 3A B. 4A C. 8A D. 9A