6. Build the following circuit and take a picture of it. Disconnect the power source. What did the capacitor do in this situation? (if online, skip this circuit and answer this question for 7.)
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- You are an electrician on the job. The electrical blueprint shows that eight 500-W lamps are to be installed on the same circuit. The circuit voltage is 277 V and is protected by a 20-A circuit breaker. A continuous-use circuit can be loaded to only 80% of its rating. Is a 20-A circuit large enough to carry this load?a.) Explain briefly why the resistance of the lamp increases as the voltage is increased.b.) Explain briefly what happens when load resistances are being removed one at a time in aparallel connection. Thank you.Answer the following questions related to a series/parallel combinational circuit configured as follows: R1 and R2 are in series with the source and these two resistors (R1 and R2) are in parallel with R3. The circuit’s voltage is +18VDC, R1= 1.5kΩ, R2=4.5KΩ, and R3=30kΩ. The total current drawn by the circuit described above is __________. Use correct engineering notation and unit measure!
- Kirchhoff's Current Law is normally applied to nodes or boundary connecting more than 1 circuit elements. Choose the correct answer: A. True B. False1) how did the soution for the collector current become VCC/(Re+Rc)? please explain 2.)instead of using the boxed solution, would it be alright to use KVL instead to solve for the collector current? If yes, please show the equation for the KVL.For the following switch circuit: A) Derive the switching algebra expression that corresponds one to one with the switch circuit. B) Derive an equivalent switch circuit with a structure consisting of a parallel connection of groups of switches connected in series. (Use 8 switches.) C) Derive an equivalent switch circuit with a structure consisting of a series connection of groups of switches connected in parallel. (Use 7 switches.)
- Answer the following questions related to a series/parallel combinational circuit configured as follows: R1 and R2 are in series with the source and these two resistors (R1 and R2) are in parallel with R3. The circuit’s voltage is +18VDC, R1= 1.5kΩ, R2=4.5KΩ, and R3=30kΩ. The total current drawn by the circuit described above is __________. Use correct engineering notation and unit measure! The total resistance of the circuit described above is _________. Use correct engineering notation and unit measure! The current drawn by R2 in the circuit describe above is _________. Use correct engineering notation and unit measure! The voltage drop across R1 in the circuit described above is __________. Use correct engineering notation and unit measure! The power dissipated by R3 in the circuit described above is __________. Use correct engineering notation and unit measure!How would the Thévenin equivalent computations change if the original circuit contained more than one voltage source? Answer in paragrapgh form6. Since the voltages across each branch circuit in a residence are the same, these circuits areA. connected in series.B. connected in parallel.C. controlled circuit configurations.D. complex circuit configurations. I'm not sure if it's the letter B or C, could you help me with the correct answer.
- Answer the following questions related to a series/parallel combinational circuit configured as follows: R1 and R2 are in series with the source and these two resistors (R1 and R2) are in parallel with R3. The circuit’s voltage is +18VDC, R1= 1.5kΩ, R2=4.5KΩ, and R3=30kΩ. The current drawn by R2 in the circuit describe above is _________. Use correct engineering notation and unit measure!Answer the following questions related to a series/parallel combinational circuit configured as follows: R1 and R2 are in series with the source and these two resistors (R1 and R2) are in parallel with R3. The circuit’s voltage is +18VDC, R1= 1.5kΩ, R2=4.5KΩ, and R3=30kΩ. The voltage drop across R1 in the circuit described above is __________. Use correct engineering notation and unit measure!What happens if different voltage and different current ratings of solar panels are connected together in (i) Series (ii) Parallel. Illustrate with panel diagrams