them to be‚ maybe they were just lucky‚ or maybe it was the many impressive accomplishments throughout their stages of development that aided in there survival. Though the five beings (Australopithecines‚ Homo habilis‚ Homo erectus‚ Neanderthal‚ and Cro-Magnon) were different from each other‚ they each had there place in the continuously progressive development of there kind. Each new achievement seeming to build onto the last. Three major achievements‚ the invention of tools‚ the ability to manipulate
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ENEE 245 0103/0104 Lab Report Guidelines Here are a few guidelines that I hope will help you in writing your lab reports. First off‚ here are the statements Dr. Franklin made regarding lab reports in his lecture and lab 1: You will be working with a partner that will be assigned to you at the start of each lab. A joint lab report may be submitted each week. Each one of you is responsible for the entire report. If you have a problem getting in touch with your partner after the lab‚ then you have
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AC Circuits. Oscilloscope Arjun Patel Group: 2 Partner: Hirbod B. Partner: Wonyoung J. PHY 114 Section 87725 TA: Hank Lamm November 3rd 2011 Abstract: The main goal of this experiment to Investigate the sine wave AC signal from signal generator using the scope and determine the relationships between the rms value and the amplitude of the voltage as well as the period and the frequency of the signal. The following are the results of the lab: T= 10-3seconds‚ Vo=1.4V ‚ 2% discrepancy
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1. How do you calibrate an Oscilloscope? In order to calibrate the Oscilloscope‚ we connected the BNC alligator into the channel we wanted to calibrate (Channel 1). We clipped the red probe to the calibration knob‚ and we saw a 2 volt VPP signal. The desired output from the oscilloscope was a 1000 Hz calibration frequency. The 1000 Hz frequency is the standard frequency for most of the oscilloscopes. After we clipped the red probe‚ we saw a square wave signal. The first thing we calibrated was the
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BBA 340 Media Report Rubrics STUDENT NAME : Category High Distinction (85-100) ID NUMBER Pass (50-64) Distinction (75-84) Credit (65-74) Fail (0-49) Fail (0) Introduction The introduction is engaging‚ states the main topic and previews the structure of the report. The introduction is interesting and states the main topic and previews the structure of the report. The introduction states the main topic clearly and previews the structure of the report The introduction states
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CONSTRUCTION HARSH KUMAR A voltmeter is an instrument used for measuring the electrical potential difference between two points in an electric circuit. Analog voltmeters move a pointer across a scale in proportion to the voltage of the circuit; digital voltmeters give a numerical display of voltage by use of an analog to digital converter. Voltmeters are made in a wide range of styles. Instruments permanently mounted in a panel are used to monitor generators or other fixed apparatus. Portable
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Immediate Release Contact: Candice Warltier cwarltier@communication-strategies.com 312-587-3105 Study: Are CROs winning the war for talent? Employee turnover remains high in the U.S. and is over 25 percent in some countries Reading‚ Pennsylvania (December 4‚ 2014) ‒ Although turnover rates in the CRO industry are still high‚ they appear to be trending down according to the 16th annual CRO Industry Global Compensation and Turnover Survey‚ conducted by HR+Survey Solutions‚ LLC. (www.hrssllc.com)‚
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What are X-rays? X-rays are a form of radiation that can pass through solid and semi-solid substances. In carefully controlled doses‚ they can be used to capture images of the body’s internal structures. How X-rays work X-rays are a type of radiation. Light and X-rays are similar sources of energy. However‚ light has a much lower frequency than X-rays and is absorbed by your skin. X-rays have a higher frequency and pass through the human body. As X-rays pass through the body‚ energy particles
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b) Write the anode and cathode half-reactions‚ and the net cell reaction for the above diagram. [ T/I / 2 ] Oxidation: Zn (s) Zn2+ (aq) + 2e- Reduction: Cu2+ (aq) +2e- Cu(s) Zn (s) + Cu2+ (aq) +2e- Zn2+ (aq) + 2e- + Cu(s) Zn (s) + Cu2+ (aq) Zn2+ (aq) + Cu(s) c) Write the cell notation for the above galvanic cell drawn. [ T/I / 1 ] Cu(s) | Cu2+(aq) || Zn 2+(aq) | Zn (s) d) Calculate the percent error of the cell potential for the above galvanic cell. Show all
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selected oscilloscope for this project is the GW-Instek (Model GDS-3152) Digital Storage Oscilloscope with a sampling rate of 150 MHz‚ as shown in Figure 38. Figure 38. GW-Instek oscilloscope The oscilloscope has a function to save the screenshots of the plots‚ as well as the 48 sampling data in the form of Excel file‚ which can be used for further analysis. The oscilloscope can also be linked directly to the computer for ease of data retrieval. This is a digital storage oscilloscope that has
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