Assignment no. 2 Ujjwal Dahiya Electronic sensors Sensors are sophisticated devices that are frequently used to detect and respond to electrical or optical signals. A Sensor converts the physical parameter (for example: temperature‚ blood pressure‚ humidity‚ speed‚ etc.) into a signal which can be measured electrically. Classification based on property is as given below: Temperature - Thermistors‚ thermocouples‚ RTD’s‚ IC
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Role of Internal Audit Function Nano Circuits Inc‚ is a publicly traded company that produces electronic control circuits‚ which are used in many products. In an effort to comply with SOX‚ Nano is in the process of establishing an in-house internal audit function‚ which previously had been outsourced. The company began this process by hiring a Director of Internal Audits. Nano Circuits’ CEO recently called a planning meeting to discuss the roles of key corporate participants regarding the implementation
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0. Chapter Name-Section Name Title Page 737 - 600/700/800/900/900ER Flight Crew Training Manual APPROVED BY: (Original signed by) E. M. Mahr Chief Technical Pilot - 737 APPROVED BY: (Original signed by) M. F. Coker Chief Pilot - Flight Training APPROVED BY: (Original signed by) R. P. Craig Chief Pilot - 737 APPROVED BY: (Original signed by) J. R. Ratley Chief Pilot - Flight Technical APPROVED BY: (Original signed by) J. M. Eitel FAA Principal Operations
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| Resistance and Electric Circuits | Lab 5 | | | The goal of the “Resistance and Electric Circuit” Lab was to determine the resistivity of a conducting wire given two known resistors. The main property of resistivity is that it represents how easily electrons can flow through a material. A Galvanometer is used to measure the current of the circuit and the Wheatstone Bridge is used to measure the resistances and determine the unknown resistance. This experiment also relates Ohm’s Law
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dsUnzh; fo|ky; laxBu नई दिल्ली अध्ययन / सहायता सामग्री िसवीीं कक्षा ववज्ञान क ललए े dsUnzh; fo|ky; laxBu lEHkkxh; dk;kZy;] vkbZ- vkbZ- Vh- dSEil] iobZ] eqEcbZ& 400076 1 Acknowledgements CHIEF PATRON : SHRI AVINASH DIKSHIT COMMISSIONER‚ Kendriya Vidyalaya Sangathan(HQ) New Delhi SHRI PRL GUPTA‚ ASSISTANT COMMISSIONER‚ Kendriya Vidyalaya Sangathan Mumbai Region SHRI SK VERMA EDUCATION OFFICER‚ Kendriya Vidyalaya Sangathan Mumbai Region SMT. AP BHALLA EDUCATION OFFICER‚ Kendriya Vidyalaya
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Getting to Know Your Device Getting started with your device. NOTE: Do not use the device in an enclosed environment or where heat dissipation is poor. Prolonged work in such space may cause excessive heat and raise ambient temperature‚ which may lead to automatic shutdown of the device for your safety. In the case of such event‚ cool the device in a well-ventilated place before turning on for normal use. ZTE CORPORATION NO. 55‚ Hi-tech Road South‚ ShenZhen‚ P.R.China Postcode: 518057
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What’s the difference between resistance and resistivity? Resistance is the obstruction offered to the flow of current by a conductor. Resistivity is the obstruction offered to the flow of current by UNIT AREA OF the conductor. So basically‚ resistance is the property of the object (say a copper wire)‚ whereas resistivity is the property of the substance (copper). And so resistance depends upon the properties of the object. Whereas resistivity depends upon the properties of the metal.
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Oil Circuit Breaker Operation By A JOSEPH INTRODUCTION In this study the operation and maintenance required on the Takaoka Tank Type Oil Circuit Breaker (Type L4) and the JB427 will be explored. The circuit breakers used for this study is the Diamond Vale 33kV Circuit Breaker at Mt Pleasant Substation and the #0 33kV Circuit Breaker at Barataria Substation respectively. Figure [ 1 ] : THE TAKAOKA OIL CIRCUIT BREAKER
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Advantages of Digital Circuits Name: Instructor: Institution: Introduction Digital circuits are circuits that use signals in digital form instead of analog forms. One distinctive feature of a digital signal is that it assumes discrete values‚ most of the time two values. A digital signal takes time to change from one value to another‚ and assumes intermediate values during transmission (Verma). Steady values are slightly inaccurate. Voltages
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Ohm’s Law is V = I * R or in some cases I = V / R. The next two laws were established by a German physicist by the name of Gustav Kirchhoff. Kirchhoff’s first law is his voltage law. Kirchhoff’s Voltage Law (KVL) states that around any loop in a circuit‚ the voltage rises must equal the voltage drops. The next law that Kirchhoff introduced was his current law. Kirchhoff’s Current Law (KCL) states that the total current entering a junction must equal the total current leaving the junction. These laws
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