Follow the instructions below: (Just insert the picture for the diagrams) 1. Create a diagram (handwritten) given the following conditions: a. An open circuit with an open switch and 3 capacitors. b. The capacitors have a value of 3 μF each. c. Capacitor 1 and 2 are in parallel connection. d. Capacitor 3 is in series with capacitor 2. e. The total voltage is 15.0 V f. Label each part of the diagram based on the conditions above.
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- Three resistors having resistances of 4.0 Ω, 6.0 Ω, and 10.0 Ω are now connected in series. If the combination is connected to an ideal 12-V. What is the total resistance of the circuit? What is the current through each resistor? What is the voltage drop across each resistor? What is the power dissipated by the 6.0 Ω resistor? Clearly state the formulae you’re using and what your letters/symbols mean.Use GFSA (Given, Find, Solution, and Answer) on the given space below. Encircle your final answer, write it in scientific notation with 2 decimal places. 1. What is the power input to an electric heater that draws 4 A from a 140-V outlet? 2. If R1 = 2Ω, R2 = 4Ω, R3 = 6Ω, determine the electric current flows in the circuit below using Kirchhoff’s law.Describe how the current flowing through the resistor varied as the voltage was increased? Based on the graph, What do the slopes of the best fit lines represent? Explain Do you consider the resistor as ohmic? Why or why not?
- State clearly the principle of Physics that you are using (invoking is the scientific word). Explain (briefly) your methodology. Give any equations that you may use, A series circuit consists of a 12 V battery, and three resistances of 3 Ohm, 5 Ohm and 7 Ohm. Calculate the voltage drop across each resistance, the current flowing through each resistance and current flowing through the battery. What is the total power consumption of the circuit?You hook up the circuit shown to the right.a) Write a voltage equation that states how the voltage drops across the bulbs relate to the voltage gain across the battery . Use this equation along with Ohm's law for each bulb to determine the current flowing through the bulbs (& battery).b) Determine the voltage across each bulb.c) In a series circuit with bulbs of different resistances, is a bulb with higher resistance likely to be brighter or dimmer than a bulb with a smaller resistance? Discuss this with your group.d) Calculate the power dissipated by each light bulb.e) Calculate the power provided by the battery. Why was this predictable?f) How does each of the following change if a fourth round bulb is added in series? (you may want to look back over how your answers to (a-c) would change) Current Voltage drop across each bulb Brightness of each bulb g) What happens if one bulb burns out?Consider the circuit configurations below, where two lightbulbs are connected to a single battery in different ways. Based on what you learned about parallel and series connections in lab, which of these two configurations would result in the light bulbs being the brightest? Fully explain your reasoning. Imagine that you are given four 100Ω resistors to build a circuit. Your challenge is to use all four of the resistors in the circuit, but the circuit must have an overall equivalent resistance of 100Ω. Is this possible? If so, draw a diagram of the circuit and explain how the connections result in a 100Ω equivalent resistance. If this is not possible, draw a diagram of a circuit involving all four resistors that has an equivalent resistance as close to 100Ω as is possible.
- State clearly the principle of Physics that you are using (invoking is the scientific word). Explain (briefly) your methodology. Give any equations that you may use The input voltage in a transformer is 150V, the number of primary turns is 100 and the number of secondary turns is 300. What will the output voltage be? What will the current be in the secondary circuit when connected to a kettle with a resistance of 100 Ohm, and what power will this consume?Reworked Diagram: What parts are series and parallel? Redraw the correct circuit method it can take up to 4-5 times. Letter M for variable.Solve systematically and completely. Highlight final answers. A power supply has an output of 12 volts. A group of three resistors in series is connected to its terminals. Two of the resistors have resistances of 3Ω and 1Ω while the third is unknown. A voltmeter connected across the unknown resistance reads 6 volts. Determine a) The unknown resistance. b)The total current through the resistors. c)The voltage across the 3Ω resistor. d) The voltage across the 1Ω resistor.
- Consider the diagram at the right of a parallel circuit. Each light bulb has an identical resistance of R and the battery voltage is V. Use the labeled points on the diagram to answer the following questions. a. If the current at location A is I amperes, then the current at location B is ____ amperes. (Answer in terms of I.) b. If the current at location A is I amperes, then the current at location D is ____ amperes. (Answer in terms of I.) c. If the current at location A is I amperes, then the current at location L is ____ amperes. (Answer in terms of I.) d. If the voltage of the battery is doubled, then the current at location A would be ____ (two times, four times, one-half, one-fourth, etc.) the original value. e. If the voltage of the battery is doubled, then the current at location B would be ____ (two times, four times, one-half, one-fourth, etc.) the original value. f. If the voltage of the battery is doubled, then the current at location D would be ____ (two times, four times,…Q2- According to the picture, by showing all your calculations clearly, find(a) all the currents I1, I2 and I3 shown,(b) the power given by ε1 and ε2 ,(c) the power dissipated in resistors in Figure.Two 60.0 Ω resistors are connected in parallel and this parallel arrangement is then connected in series with a 30.0 Ω resistor. The combination is placed across a 120. V potential difference. 1.Draw a schematic diagram of the circuit using correct symbols. 2.What is the equivalent resistance of the parallel portion of the circuit? 3.What is the equivalent resistance for the entire circuit? 4.What is the total current in the circuit? 5.What is the voltage drop across the 30.0 Ω resistor? 6.What is the voltage drop across the parallel portion of the circuit? 7.What is the current through each resistor?s