Content 1. Abstract……………………………………………………….. 1 2. Introduction…………………………………….…………….. 2 3. Design & Analysis…..……………………………………….. 3 4. Result ………………………………………………………… 10 5. Conclusion…………………………………………………..... 10 Smart Dust Shilpa Nagod Page 1 of 10 SMART DUST 1.Abstract ’Smart’ dust’ is a minute grain of silicon that spontaneously assembles‚ orients and senses its local environment‚ a first step toward fan development of rebels the size of sand grains that could be used in medicine‚ bioterrorism
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the bead covers approx. 1/3 of the ferrule diameter end. 5. Wait 5 seconds after releasing pressure on the plunger before removing the needle. 6. (Optional) If required by the company‚ place the cure adapter over the connector ferrule. 7. Feed the optical fiber through the connector while ensuring the strength member fans back as the fiber is pushed forward. 8. Crimp the connector using crimpers (follow manufacturer’s data sheet). 9. Place the connector in the curing over and follow the manufacturers’
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San Beda College – Alabang A.Y 2012 – 2013 INVENTORY SYSTEM FOR ROCELO OPTICALS System Analysis and Design Harold Kenneth Malabanan Chenee Mae Espina Keith Rocel Bucad Janeil Araojo Jerrylyn Rose Gavilla Ms. Bautista July 28‚ 2012 APPROVAL SHEET THIS PAPER ENTITLED‚ “INVENTORY SYSTEM FOR ROCELO OPTICALS” submitted in partial fulfilment of the requirements in System Analysis and Design (SAD). HAROLD KENNETH MALABANAN CHENEE MAE ESPINA KEITH ROCEL BUCAD JANEIL ARAOJO
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systems. Particularly‚ optical fiber communication plays a vital role in the development of high quality and high-speed telecommunication systems. Today‚ optical fibers are not only used in telecommunication links but also used in the Internet and Local area networks (LAN) to achieve high signaling rates. What is fiber optic communication? Fiber-optic communication is a method of transmitting information from one place to another by sending pulses of light through an optical fiber. The light forms
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An electron microscope uses a beam of highly energetic electrons to illuminate the object. As compared to the optical microscopes‚ electron ones can produce highly magnified images. Electrostatic and electromagnetic lenses are used in electron microscopes. These lenses control the electron stream and focus it to a specific plane of the sample. This method is similar to that of an optical microscope‚ which uses light to focus on the specimen. The original version of electron microscope‚ called transmission
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screen shot of your entire spread sheet that shows the check on your spread‐sheet calculations. 2. Performance (10 pts): Insert a screen shot of your entire spread sheet that shows the baseline system performance. Optical Power | | | Source Power | 20.0000 | [mW] | | Source Power | 13.0103 | [dBm] | | Source-to-fiber coupling loss | 5.8000 | [dB] | | Fiber loss @ source mean wavelength λo | 0.2000 | [dB/km] | | Link length | 90.0000 | [km] |
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NT1310 Physical Networking Unit 4 Exercise 1: Cabling – Definitions Horizontal Cable- The cabling between and including the telecommunications outlet and the horizontal cross-connect. Backbone Cable- A cable connection between telecommunications or wiring closets‚ floor distribution terminals‚ entrance facilities‚ and equipment rooms either within or between buildings. Patch Cords- Any flexible piece of cable that connects one network device to the main cable run or to a patch panel that in turn
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INTRODUCTION The current ultramodern technologies are focusing on automation and miniaturization. The decreasing computing device size‚ increased connectivity and enhanced interaction with the physical world have characterized computing history. Recently‚ the popularity of small computing devices‚ such as hand held computers and cell phones; rapidly flourishing internet group and the diminishing size and cost of sensors and especially transistors have accelerated these strengths. The emergence
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inspections‚ Documentation & invoicing. Fiber optic network Survey‚ planning‚ lying and distribution. Structure cabling‚ data and voice cabling designing and documentation Surveys & BOQs preparations. Structured Cabling including UTP‚ Copper and Optical Fiber. Monitor the laying all MEP conduits‚ duct/Trench layouts/Flow layout / Duct layout‚ Cable Routing Layout‚ Cable Tray Layout‚ Layouts‚ MFD ‚FTR ‚STR(GSM) cable schedule and cabinets including the MDF raceway as per the TIA guideline. Supervise
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Resolution of α-Phenylethylamine Date of Completion of Experiment: Monday‚ November 19‚ 2012 Date Report Submitted: Monday‚ December 3‚ 2012 Objective of Experiment The objective of this experiment was to learn the process of resolution of α-phenylethylamine. Materials Compound | Molecular Weight (g/mol) | Melting Point (°C) | Amount used | Moles used | (+) Tartaric Acid | 150.087 | 171–174 | 11.9 g | 7.93 x 10-2 | (+‚-) α-phenylethylamine | 121.18 | 184-186 | 10.0 ml | 8.25 x 10-2 |
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