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In a series circuit, a current flow from the positive terminal of a 180-V source through
two resistors, one of which has 30 ohms of resistance and the other of which has 45 V
across it. Find the current and the unknown resistance.
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- Given the following circuit, solve for R1, and the gain of the current source. Given: A 20V source supplies 4W to the circuit. The value of V2 is 8V. The resistance present is in ohms.Find the equivalent resistencethat is seen by the 20 V source in thecircuit shown to the right, and thenfind the current i.Simplify the complex circuit below to and find the following if 20-V of voltage is supplied. A) Total / Equivalent ResistanceB) Total CurrentC) Current, Voltage Drop, and Power on each resistor
- Design/draw a series-parallel(combination) circuit, using 10 pcs of resistors w/ a value of 1ohms to 10 ohms. Show/solve for its total resistance.The voltage across the 16-ohm resistor in the circuit is 80 V, positive at the upper terminal.a. Find the power dissipated in each resistorb. Find the power supplied by the 125 V ideal voltage sourceThere is a collection of 100 ohms and 10 ohms resistors. Design a circuit, with min number of resistors only with those, that R_eq = 265 ohms.
- The voltage and current were measured at the terminals of thedevice shown in (a). The results are tabulated in (b). 1. Construct a circuit model for this device using an ideal currentsource in parallel with a resistor.2. Use the model to predict the amount of power the device willdeliver to a 20 Ω resistor.The resistance of each brake light bulb on an automobile is 4.9 . Use the fact that cars have 12-V electrical systems to compute the current that flows in each bulb if they are connected in series. ( for simplicity, assume that the circuit is only composed of one brake light bulb and the car battery) ADesign a circuit that will have an outcome of the highest equivalent resistance across the terminals with a 30Vdc source. Given that the R1 = 10 R2 = 50 R3 = 85. Determine the equivalent resistance from the combination of resistors, R123, R12, R23, and R1.
- 1. The terminal voltage and terminal current were measured on thedevice shown. The values of vt and it are provided in the table.Using these values, create the graphed-line plot of vt versus it.Compute the equation of the graphed line to construct a circuit model containing an ideal current source and a resistor. 2. Use the model constructed in (a) to predict the power that thedevice will deliver to a 25 Ω resistor.A coil having a resistance of 30 ohms and an inductance L is connected in parallel with a resistor having a resistance of 100 ohm. The combination is connected across a 100V, 60Hz source. If the power delivered by the source is 400W, find the value of L.For each of the circuits shown, find the equivalent resistance seen by the source and the power developed by the source.