As shown in the following figure, a network connecting the end points A and D has five links. The links are assumed to fail independently and the probability of failure in link #1 is 1%, in link #2 is 1%, in link #3 is 1%, in link #4 is 1%, and in link #5 is 40%. Determine the probability of failure between the end points A and D. Show your work. Use a calculator to simplify your answer. A #1 B #2 #5 #3 #4 C D
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- in the circuit, the voltage across R1 in volts is ___ in the circuit, the voltage across R2 in volts is ___ in the circuit, the voltage across R3 in volts is ___Please help me solve questions 1-5 using the given values found.Please break this down for me as much as possible, im struggling to grasp kirchhoff's, thank you.
- I need answers with clear hand writing or using Microsoft word . ASAP measurements , describe how to read the values given on the measurement tools and to write about measurement tools note: i want a lot of informationPlease help!!Using the circuit in the image and the figures in the attached table: a. With both switches, SW1 and SW2 left open complete the following: i. Briefly discuss what the three resistors are used for. ii. Determine the total resistance in the circuit. iii. Determine the currents flowing in the circuit. iv. Determine the volt drops around the circuit. v. Use the appropriate Kirchhoff’s law to confirm your results. b. Now close switch SW1 and complete the following: i. Determine the total resistance in the circuit. ii. Determine the currents flowing in the circuit. iii. Determine the volt drops around the circuit. iv. Use the appropriate Kirchhoff’s law to confirm your results. c. Now Whilst keeping SW1 closed close SW2 and complete the following: i. Determine the total resistance in the circuit. ii. Determine the currents flowing in the circuit. iii. Determine the volt drops around the circuit. iv. Use the appropriate Kirchhoff’s law to confirm your results.
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- 3. The figure on the left below shows a schematic diagram of a battery. The voltage measured by U1 is called the terminal voltage given R1 = 1 ohm. In the figure on the right below, the terminal voltage of each of the battery-resistor combination is Vr = 1.5 volts. Find the following: a. The current passing through R5. b. The currents passing through R1 and R3 C. The voltage across R1. d. The voltage of the battery EMF. e. The percentage of voltage loss ot the battery due to the internal resistance R1. The power dissipated by the internal resistance R1. g. The power dissipated by R5 if R1 = R2 = R3 = R4 = 0. h. The percentage of power dissipation loss due to the four resistors R1, R2, R3, and R4 f. R1 R3 S10 R1 U1 1.500 EMF EMF R5 100 V1 R2 $10 EMF R4 EMF EMFIn step 3, what is the potential difference across D2 after the jumper wire is connectedGiven the circuit shown in the figure, use the words “increases,” “decreases,” or “stays the same” to complete the following statements. (a) If R7 increases, the potential difference between A and E _____. Assume no resistance in the ammeter and the power supply (b) If R7 increases, the potential difference between A and E _____. Assume nonzero resistance in the ammeter and the power supply (c) If R7 increases, the voltage drop across R4 _____. (d) If R2 decreases, the current through R1 _____. (e) If R2 decreases, the current through R6 _____. (f) If R2 decreases, the current through R3 _____. (g) If R5 increases, the voltage drop across R2 _____. (h) If R5 increases, the voltage drop across R4 _____. (i) If R2, R5, and R7 increase, ℇ (r = 0) _____.