Electronics and Electrical Engineering Course Structure and Syllabus for BTech in Electronics and Electrical Engineering (to be applicable from 2010 batch onwards) Course No. CH101 CH110 EE101 MA101 ME110/ PH 110 ME 111 PH101 SA 101 Course Name Semester - 1 Chemistry Chemistry Laboratory Electrical Sciences Mathematics - I Workshop /Physics Laboratory Engineering Drawing Physics - I Physical Training -I NCC/NSO/NSS 3 0 3 3 0 0 2 0 0 11 Semester 3 MA201 EE200 EE201 EE220 HS2xx EE202 SA201 Mathematics
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Lab# 1 The Node-Voltage Method of Circuit Analysis By: Abstract This report used KCL and Ohm’s law to calculate the node voltages and compare them to the measured node voltages after building the circuit. The calculations were obtained by hand using node analysis. The experiment was simulated on PSpice and the results were verified to hand calculations. The circuit was built in the lab and the results were measured with a digital multi-meter and compared to the calculated values‚ and
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Experiment 4 Wye-Delta Transformations Francis Angelo Magnayon1‚ Juan Carlo Pancho2‚ Francis Jason Ayento3 School of Mechanical Engineering‚ Mapua Institute of Technology Muralla St. Intramuros Manila Abstract— on this experiment‚ analysis of resistive network by series-parallel circuits‚ the students will demonstrate the characteristics of series-parallel circuits by measuring and verifying the calculations of the resistance‚ voltage and current associated with the different resistive components
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Discussion In the experiment AC circuits‚ the purpose was to see the effect that a capacitor‚ resistor‚ and inductor have on the voltage‚ and current of a circuit. We created circuits with 2 resistors‚ a capacitor and a resistor‚ and then a capacitor‚ resistor‚ and an inductor. The circuits were then hooked up to a function generator‚ and oscilloscope to find the voltage across certain frequencies and then calculate the peak current‚ capacitive reactance or the inductive reactance‚ and phase difference
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Practical 4 Title: To investigate the discharging of a capacitor through a multimeter as voltmeter Objective: To determine the internal resistance of a multimeter Apparatus and Materials: 1. Capacitor 2. Multi-meter 3. Power supply 4. Switch 5. Stop watch 6. Connecting wires Setup : 1 The circuit was constructed as Figure 5-1. 2 Ensure that the positive terminal of the power supply was connected to the positive terminal of the capacitor if an electrolytic capacitor. 3 Initially‚ switch S should
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Page 1 of 5 Name: ______________________________ ECET 231 - Circuit Analysis I Lab 6 Series-Parallel DC Circuits Objective: Students successfully completing this lab will accomplish the following objectives: 1. Gain experience analyzing and verifying‚ by measurements‚ the characteristics of series-parallel resistive circuits. 2. Increase understanding of the relationship of voltage‚ current and resistance in a series-parallel circuit 3. Learn to compute currents through the use of voltmeter
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RC Circuits •In this presentation‚ circuits with multiple batteries‚ resistors and capacitors will be reduced to an equivalent system with a single battery‚ a single resistor‚ and a single capacitor. Kirchoff ’s laws will be stated‚ and used to find the currents in a circuit. In addition‚ the equation for the time-constant of an RC circuit will be derived. Ohm ’s Law When a battery is connected to a resistor‚ the battery will cause a current to flow through the resistor. The larger the voltage
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Discussion Through this experiment we have learnt about the basic concept of simulation and circuit design using TINA Sofware in the computer lab. TINA is a software that used to designing‚ simulating and analyzing analog‚ digital and mixed electronic circuits. Analysis result can be displayed as sophisticated diagrams or an range of virtual instruments. Any circuit can be design easily by using schematic editor. The components can be chosen from the large library. The parameters of each components
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What happens to resistance of a conductor when its area of cross-section is increased? Ans. Resistance decreases Question 2 The charge possessed by an electron is 1.6x10-19 coulombs. Find the number of electrons that will flow per second to constitute a current of 1 ampere. Ans. Question 3 Name the instrument used to measure electric current in a circuit. Ans. Ammeter Question 4 In the following table the values of current I flowing in a given resistor for the corresponding
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44. Why do you never apply an ohmmeter to a live network? (Boylestad 98) Boylestad‚ Robert L. Introductory Circuit Analysis‚ VitalSource for DeVry University‚ 12th Edition. Pearson Learning Solutions‚ 11/2012. VitalBook file. Answer: It will be an inaccurate measurement because there is already a current flowing inside of it. An ohmmeter measures the current from the voltage that’s been being put out. So by applying an ohmmeter to a live network it will have an confusion between the live
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