Speed of a Computer Patrick Reagan Computers and Information Processing/CIS319 David Avery Jr. December 14‚ 2008 Speed of a Computer Computers have evolved dramatically over the last 70 years. The size may be one of the main changes. The first computers were the size of a classroom. Today a computer can fit in an adult hand. Another change is the speed in which the computer operates or processes information. The computer user in today’s market wants information
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Intense terahertz antenna array with interdigital electrodes Lei Hou‚ Wei Shi*‚ Ming Xu‚ Yong Chen Department of applied physics‚ Xi’an University of Technology‚ Shaanxi‚ China‚ 710048 ABSTRACT In this work a powerful terahertz antenna array with interdigital electrodes is fabricated‚ and the performance of one antenna unit is compared with a conventional resonant dipole antenna. The antenna unit has a better capacity of generating THz wave compared with a conventional resonant dipole antenna
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International Conference on Microelectronics‚ Communication and Renewable Energy (ICMiCR-2013) Compact dual-band Monopole Antenna for WLAN/WiMAX Applications Khalid Ali Sultan Jasim Y. E. Mohammed Ali Dept. Electrical Engineering University of Mosul‚ College of Engineer Mosul‚ Iraq khalidsultan3041@yahoo.com Dept. Electrical Engineering University of Mosul‚ College of Engineer Mosul‚ Iraq a.yessar@yahoo.com Abstract— This paper displays a new compact monopole antenna of dual
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Samantha Mackey 13. 2nd hour PHYSICS LAB REPORT: SPEED OF SOUND Purpose: In this lab‚ we will be doing 3 major things: 1) Collecting and organizing data to obtain resonant points in a closed pipe‚ 2) measure the length of a closed-pipe resonator‚ and 3) analyze the data to determine the speed of sound. Procedure: 1. Fill the graduated cylinder nearly to the top with water‚ with a tall glass tube open at both ends (the water level with act as the closed end). 2. Determine
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High Frequency communication refers to radio communication in the range of frequency between 3-30 MHz or 3 000 000 – 30 000 000 Hz. The wave length range of High Frequency is 10-100 meters The Higher the frequency the shorter the wave length. High Frequency belongs to the radio portion of the electromagnetic spectrum. When electric current is sent back and forth through a wire an electromagnetic wave is created which can be amplified and transmitted out through an antena. It can then be received
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Speed of Sound Lab Report Jamie Cook PHYS 1114: College Physics I Oklahoma City Community College December 10‚ 2013 Purpose: The purpose of this experiment is to measure the speed of sound in air and to determine the effects of frequency on the speed of sound. Apparatus (equipment used): Signal generator: manufacturer- EMCO‚ model number- SS-1‚ range- 20Hz-2MHz‚ least count- 1Hz Frequency meter: manufacturer- DEADALON CORPORATION‚ model number- N/A‚ range-
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*37262* Printed in Switzerland Geneva‚ 2012 ISBN 978-92-61-14021-2 Edition of 2012 Radio Regulations Resolutions and Recommendations 3 E Radio Regulations Resolutions and Recommendations Edition of 2012 Radio Regulations Resolutions and Recommendations Edition of 2012 © ITU 2012 All rights reserved. No part of this publication may be reproduced‚ by any means whatsoever‚ without the prior written permission of ITU. Note by the Secretariat This revision of
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Abstract The overall objective of this lab was to a digital oscilloscope to measure various signals. The goal of Part 1 was to measure the mean value‚ the frequency‚ peak to peak voltage‚ and the RMS voltage of a triangular input signal. To meet this goal‚ a function generator was used to generate a 1 kHz triangular wave signal with a 1 V amplitude‚ and the oscilloscope was used to measure the values of that signal. Using the oscilloscope‚ the mean value was found to be -37.6 mV‚ the RMS Voltage
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Product Specifications Andrew Solutions EWP17-17 EWP17‚ HELIAX® Premium Elliptical Waveguide‚ 1.7– 2.1 GHz‚ black PE jacket Construction Materials Jacket Material PE Conductor Material Corrugated copper Jacket Color Black Dimensions Cable Volume 6596.0 L/km | 71.0 ft ³ /kft Cable Weight 4.06 kg/m | 2.73 lb/ft Diameter Over Jacket (E Plane) 5.65 mm | 143.50 in Diameter Over Jacket (H Plane) 2.99 mm | 75.90 in
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Objective The objective of this lab was to use standing waves in a resonance tube in order to measure the speed of sound. Standing waves were used due their constructive and destructive interference‚ which lead to nodes and antinodes in the wave.The nodes could be marked because they were silent‚ and the antinodes were loud. Hypothesis We expect to find a linear relationship between wavelength and period because the speed of sound is constant. The frequency will inversely change the wavelength
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