Q1-(25 pts) Consider the bridge circuit shown on the right. (a) Assume parameters =12 V, R₁ =20, R₂ =10, R3=400, R4=30, R5=5. Find the equivalent resistance of the network of five resistors. 8 d
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- The variable resistor (R0) in the circuit attached is adjusted until the power dissipated in the resistor is 250 W. Find the values of R0 that satisfy this condition.Note E1, E2 are not mentioned in the questionLO: 1, 2, 4,5,6: Figure shows the resistors from the previous two examples wired in a differentway—a combination of series and parallel. We can consider R1 to be the resistance of wiresleading to R2 and R3. (a) Find the total resistance. (b) What is the IR drop in R1? (c) Find thecurrent I2 through R2. (d) What power is dissipated by R2?
- Find the equivalent resistance across the ports A and B (in ohms to 2 decimal places)V2 is a dependent voltage source the equation for which is: V2 = 5Vr3 (where vr3 is the voltage over the resistor R3)Other required valuesV1 = 15VI3 = 5AR1 = 62 ohmsR2 = 32 ohmsR3 = 53 ohmsR4 = 60 ohmsR5 = 6 ohmsR6 = 90 ohmsffasssttt plzIn a house, a circuit often includes multiple electrical outlets which are parallel-connected to a single voltage source. Each of these circuits also contains a 15-A circuit breaker. Design a parallel-connected circuit which shows three electrical outlets con-nected to a voltage source with a circuit breaker. What is the advantage of having out-lets parallel-connected, and why is a circuit breaker connected in series with the voltage source? Why is the circuit breaker considered a necessary safety item in the circuit?