Leads Laptop running pSpice Student Edition v9.1 Procedure For each of the following circuits :- (i) Generate a pSpice schematic that determines voltages and currents at all points of interest. (ii) In a UL setting (note this step will be necessary only for Lab1 and one other lab during the course of the semester) experimentally determine the voltage at the Node A and the currents that are highlighted in each circuit. (iii) For each circuit ensure that all results are presented in tabular form
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EE 4225 Project Distribution Feeder Analysis 11/29/2010 Kris Bartell Matt Drzewiecki Evan Zaborski 1.0 Abstract This project offered the opportunity to simulate the voltage profile of an IEEE sample distribution feeder. Through an iterative process‚ this can be accomplished using a series of calculations. To achieve this goal‚ the simulation package Matlab was used as the driving force behind the programming and calculating. Discussion 2.1 Individual Segment Modeling To simulate
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follow them for life‚ and allow a solid knowledge base for the rest of their career. This report covers the analysis of a DC circuit in order to determine unknown values within a circuit and covers the design process of a DC circuit when specific voltages are required and current and resistors values are unknown. Introduction This laboratory focuses predominately on DC circuit analysis and design although‚ as a result of this‚ many fundamental aspects of electrical engineering and circuit theory
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challenge was to create a situation in a laboratory‚ have a neutral party to enforce the orders and inflict the pain where no one was hurt. So in order for there to be no real pain he use an electrical device with a 30-toggle switches labeled with voltage levels ranging from thirty volts to one-hundred fifty volts. The volts were grouped from slight shock with very little affect to severe shock with the most intense shock. They were artificial in the fact they gave an artificial feeling that was intensified
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code d. not required by the Code 6. According to the table of operating voltage in the code. The minimum conductor size for copper conductor for 2000 v is a. 8.0 sq mm b. 2.0 sq mm c. 3.5 sq mm d. 5.5 sq mm 7. According to the table of operating voltage in the code. The minimum conductor size for copper conductor for 8000 v is a. 8.0 sq mm b. 2.0 sq mm c. 3.5 sq mm d. 5.5 sq mm 8. According to the table of operating voltage in the code. The minimum conductor size for copper conductor for 15‚000 v
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often referred to as an open. 3. What is the primary symptom of an open circuit? Symptoms of an open circuit include the current through the component drops to zero. The resistance of the open component becomes too high to measure. The applied voltage is measured across the open. 4. What is a short circuit? Name several characteristics. A short circuit is a circuit that has zero resistance. Any components in parallel with a short circuit has zero volts across it‚ and all the current goes through
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WYE-DELTA starter for a single voltage three phase SC induction motor would require the connection of a certain number of wires from the motor. How many wires would be needed? a. 3 wires b. 9 wires c. 6 wires d. 12 wires 3. As compared with solid wires‚ stranded wires of the same cross sectional area have the following advantages EXCEPT one. Which one is this? a. It is larger in overall diameter b. It is easier to skin off the insulation c. It is better for high voltage d. It has a higher current rating
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either serial or parallel. 2. List four characteristics of a series circuit. 1) The total current is the same everywhere in the circuit. 2) A series circuit only has one path for current to flow. 3) The sum of all the voltages sources is equal to the sum of all the voltage drops. 4) The total resistance in the circuit is equal to the sum of the individual resistances. 3. Calculate the total resistance in the circuit below. Show the formula used. Calculated: = __6.5kΩ____ (Total resistance)
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of voltage sources‚ current sources and resistors with two terminals is electrically equivalent to a single voltage source V and a single series resistor R. For single frequency AC systems‚ the theorem can also be applied to general impedances‚ not just resistors. Any complex network can be reduced to a Thevenin’s equivalent circuit consist of a single voltage source and series resistance connected to a load. To calculate the equivalent circuit‚ one needs a resistance and some voltage - two
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A PROJECT ON MICRO CONTROLLER BASED VOLTAGE MEASUREMENT GROUP MEMBERS:-- Aniruddh Dey – 000611501010 Manoranjan Kumar Choudhary – 000611501017 Nilabh Gupta – 000611501022 Gaurav Bagla – 000611501028 Nilay Mitash – 000611501036 Power Engineering 4th Year Jadavpur University ACKNOWLEDGEMENT I would like to offer my sincere gratitude to Professor Gargi Konar‚ who has contributed to this project in a major way. I thank her for
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