%FACE RECOGNITION SYSTEM % % Face recognition system based on EigenFaces Method. % The system functions by projecting face images onto a feature space % that spans the significant variations among known face images. The % significant features are known as "eigenfaces" because they are the % eigenvectors (principal components) of the set of faces. % % Face images must be collected into sets: every set (called "class") should % include a number of images for each person‚ with some variations
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offered a place in the Electrical and Electronics Engineering department which is considered to be the most wanted department in the university for students to get admitted in. I used to have personal interest in various engineering softwares such as Matlab‚ Pspice and Microwind in the earlier period of my undergraduate course. It was in my third year of course ‚ I have discovered my liking for VLSI devices‚ starting with microprocessors. I was inclined towards VLSI‚ Fiber optics and Processing and
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These papers fetched huge amount of appreciation in terms of awards and recognition in national level fests. TECHNICAL SKILLS Programming Languages Operating Systems Software (basics) Elementary knowledge of C. WINDOWS-XP/VISTA. ANSYS‚ CATIA V-5R12‚ MATLAB 7.0.4 (sim-mechanics) ACHIEVEMENTS • All – India DAV Topper in CBSE Class 10th board examination with merit certificate in English and Maths from CBSE awarded to top 0.1% students and was awarded gold medal by Late. Mr. Sunil Dutt for the same
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STATEMENT OF PURPOSE Science and technology have revolutionised the world. We live in a better world than our ancestors found it. It’s all because of the implementation of ideas that led to the comforts and luxuries of lives we lead today. Technology has single handily made living much easier and we no longer die to fulfil the necessities of life. All these ideas fascinated me as a child. William Gibson rightly quoted “the future is already here‚ it’s just not evenly distributed yet" and I decided
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STATEMENT OF PURPOSE This is a question I often hear about mathematics: When will I ever use this? This question has probably been asked at some time to every mathematics teacher by students of various levels. While practical examples can easily be found for elementary mathematics‚ which is taught early in the students’ careers. More advanced math principles shown during high school and college are rarely‚ if at all‚ justified by teachers‚ except in related domains‚ like physics and engineering.
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simulate 1 – φ half wave uncontrolled rectifier with a) R load b) RL load c) RLE load. And plot input voltage waveform‚ output current waveform‚ output voltage waveform and voltage across the diode. Software Required: (a) Windows Xp or above (b) Matlab 7.0 or above (c) Simulink 2.0 or above Theory: This is the simplest type of uncontrolled rectifier. It is never used in industrial applications because of its poor performance. In a single-phase half-wave rectifier‚ for one cycle of supply voltage
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a strong inclination towards Information Management and Computer Programming. During my final year undergraduate course‚ I presented my project on ’Color Image Recognition Using Neural Networks’. My project involved coding a programme using MATLAB technology which solves a pattern recognition problem and has a relevance to the filed of Medical Diagnostics‚ Satellite Imagery and Remote Sensing. As an undergraduate student I also organized an ISTE student chapter symposium‚ quizzo and mini-project
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ECS 152A Fall 2013: Assignment 1 - Solution Date Assigned: 10/2/2013 Date Due: 10/9/2013 Problem 1 Consider two hosts A and B connected by a single link of rate R bps. Suppose the two hosts are separated by m meters‚ and suppose the propagation speed along the link is s meters/sec. Suppose host A begins to transmit a packet of size L bits at time t = 0. 1. Let dtrans denote the time to transmit the packet. At time t = dtrans where is the last bit of the packet? 2. Let dprop denote the propagation
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The aim of this thesis project is to study in vitro the permeability of amorphous drug systems in different conditions. First‚ three complementary techniques are performed to characterize the crystalline and amorphous form of indomethacin. These techniques include IR spectroscopy‚ Raman spectroscopy and differential scanning calorimetry. Indomethacin is a compound belonging to class II of the BCS and is consequently a poorly water-soluble drug. The limiting step in order to have a good bioavailability
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ripple with twice line-frequency. This affects the voltage control loop and leads to the converter input current distortion. The purposed method is designed to avoid the effect of the output voltage ripple. To verify the proposed control method‚ MATLAB/Simulink is used for system simulation. A hardware prototype is setup. A low cost digital signal processing chip dsPIC30F4011 is employed as a digital controller to control a CUK AC/DC converter. The converter specifications are 48V output voltage
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