Electromotive Force Projectile Accelerator Proposal Why build an Electromotive Force Projectile Accelerator (EFPA)? Electromotive Force Projectile Accelerators have the ability to accelerate without using any sort of propellant. In addition‚ EFPA’s can be built with no moving parts‚ an attribute that makes them highly reliable and silent instruments. The basic EFPA uses a voltage source and a combination of circuitry to accelerate an object to a desired speed. This is what makes EFPA a fairly
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Faculty of Engineering & Computing Laboratory Report Title of Experiment: Series and Parallel Circuits Date Given: January 28‚ 2013 AIM: To investigate the circuits to tell whether the resistors are in parallel or in series also to determine the internal resistance of a 1.5V cell. THEORY: In this experiment it was expected of the experimenter to have a basic knowledge of circuits in both aspects theoretically and practically. A basic circuit comprises of a cell or power supply
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The following is a project made by anonymous: INTRODUCTION The general purpose photoconductive cell is also known as LDR – light dependent resistor. It is a type of semiconductor and its conductivity changes with proportional change in the intensity of light. There are two common types of materials used to manufacture the photoconductive cells. They are Cadmium Sulphide (CdS) and Cadmium Selenide (CdSe). Extrinsic devices have impurities added‚ which have a ground state energy closer to the conduction
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of finding voltages and currents‚ such as: Node Voltage Method‚ Mesh Current Method‚ Current and Voltage Division‚ and Kirchoff’s Current and Voltage Laws. III. EQUIPMENT Ø Power Supply (Serial#) Ø Digital Multimeter Ø Circuit Board Ø Resistors‚ Wires IV. PROCEDURE 1. Set up circuit as follows: A B 2. Calculate by Superposition the voltage between terminals A and B. 3. Calculate by Superposition the current flowing from terminals A to
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Submitted By: GROUP 5 Leader: Alexandrine Delfin Members: Ian Corondano Rowena Quitevis Earnst Gutierrez Queennie Racasa Giovita Brozo Carlos Lemetares Submitted To: Sir Ariel sustituedo INVESTOGATORY PROJECT #1: \Ampalaya Seeds as Coffee | Coffee is a much known beverage to the majority of the people. It is known for its stimulating effect on the functions of the brain‚ thus making the drinker active. Variants of coffee flavors were already produced all throughout the world
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Solutions Manual INTRODUCTION TO MECHATRONICS AND MEASUREMENT SYSTEMS 3rd edition SOLUTIONS MANUAL David G. Alciatore and Michael B. Histand Department of Mechanical Engineering Colorado State University Fort Collins‚ CO 80523 Introduction to Mechatronics and Measurement Systems 1 Solutions Manual This manual contains solutions to the end-of-chapter problems in the third edition of "Introduction to Mechatronics and Measurement Systems." Only a few of the open-ended
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1. What is the voltage across a 220Ω resistor if the current through it is 5.6 mA? (Boylestad 131) Boylestad‚ Robert L. Introductory Circuit Analysis‚ VitalSource for DeVry University‚ 12th Edition. Pearson Learning Solutions‚ 11/2012. VitalBook file. Answer: 2. What is the current through a 6.8Ω resistor if the voltage drop across it is 24 V? (Boylestad 131) Boylestad‚ Robert
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Male Header (LCD) 1x 4x1 Gold Plated Male Header (LCD) 1x 100nF Ceramic Capacitor 1x 10K LCD Contrast Trimmer Potentiometer 1x 4x10K Network Resistor 2x 100K 1% Metal Film Resistor (brown‚ orange‚ black‚ black‚ brown) 2x 6.8K 1% Metal Film Resistor (blue‚ gray‚ black‚ brown‚ brown) 1x 10 Ohm 1% Metal Film Resistor 1x 0. 47 Ohm / 5W Power Resistor | | | | | Voltmeter Ammeter Technical Specifications: | Voltage Supply: 6V - 30V Current Consumption: ~ 100mA with LCD backlight
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2012 RTDs Temperature Measurements Anshul Sharma 2010A8PS255P Wasim Sajid 2010A8PS253P Suman Saurav Giri 2010A8PS256P in partial fulfillment of the course Transducers and Measurement Systems Submitted To : Prof. Surekha Bhanot Department Of Electronics and Instumentation Bits Pilani Birla Institute Of Technology And Science Pilani‚ Rajasthan. 333031 E&I 10/11/2012 2 Acknowledgements First and foremost‚ we would like to thank God for supporting us always. We express
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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 are brought to light. Without the knowledge
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