table‚ add the fields OrderID and OrderDate (in that order) to the query design grid. | 6 | 8 | In Design view‚ add a Total row to the query. In the first empty field cell of the design grid‚ create a new field in the query named ExtendedAmount that multiplies Quantity by UnitPrice (in that order). Select the Sum function from the Total row in the new field. | 15 | 9 | In the next empty field cell of the design grid‚ create a new field in the query named DiscountAmount that multiplies Quantity
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IEEE TRANSACTIONS ON SMART GRID‚ VOL. 3‚ NO. 1‚ MARCH 2012 241 Smart “Stick-on” Sensors for the Smart Grid Rohit Moghe‚ Student Member‚ IEEE‚ Frank C. Lambert‚ Senior Member‚ IEEE‚ and Deepak Divan‚ Fellow‚ IEEE Abstract—Rapid increase in electric power demand‚ introduction of RPS mandates‚ and a push towards electrification in the transportation sector is expected to increase power system stresses and disturbances. To tackle these power system issues and maintain high system reliability‚ it is
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Part IV: Leadership Styles. Another important part of the leadership function is leadership style. It is the typical pattern of behavior that a leader uses to influence his or her employees to achieve organizational goals. Several different approaches to describing leadership styles have developed over the years. (Can relate to Theory X and Y) 1. Participative Leadership Style: - A participative leader is one who shares decision making with group members. Team leaders use the participative
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Computational modeling‚ problem solving strategy & FDM approach in CFD aMunish Gupta‚ bGulshan Sachdeva. cKinshuk Kalia‚ dAnkur Puri. a‚ b: Lecturer‚ Department of Mechanical Engineering. c‚ d: U.G students‚ Department of Mechanical Engineering. Guru Jambheshwar University of Science & Technology‚ Hisar‚ Haryana. ________________________________________________ ABSTRACT With so much development in numerical methods‚ the field of computational mechanics has become
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TELECOMMUNICATION 1 2012-2013 Fall Project SINC FUNCTION‚ SSB-AM‚ FM Name: Onur Mustafa Erdoğan ID Number: 10014044 Submission Date: 24.12.2012 Abstract: In these project‚ I will analyze Fourier Transform of sinc function and it’s modulation.(SSB-AM‚FM) I will explain SSB-AM and FM theoretically and solve their math model in steps. After all‚ I’ll use simulations and graphics to prove my solutions and In the and‚ I will write my conclusions down. Introduction SSB-AM [1]In
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Analytical reports are written by students or employees‚ often working in teams. The reports generally require that the writers • define the subject matter and identify the related factors • learn how the subject has been addressed or what the experts recommend when addressing the issue For this project‚ the topic is selected for you: Team-building in the Workplace. Requirements: To gather information for your report‚ you will read your classmates’ interview guides and the articles on team-building
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potential recorded at R2. The distance between these sets of recording electrodes is 10 centimeters (0.1 m). Convert the time from milliseconds to seconds‚ enter the time (in seconds) in the field below‚ and then click Submit to display your results in the grid. You answered: 0.002 sec 4. Calculate the conduction velocity in meters/second by dividing the distance between R1 and R2 (0.1 m) by the time it took for the action potential to travel from R1 to R2. Enter the conduction velocity in the field below
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sinks locations for a particular sensor nodes deployment. We have considered a 4x4 square grid wireless sensor network‚ where sinks and sensor nodes both are static. Locations of the sinks are deterministically placed. Locations of our sinks are taken from our deterministic sensor node deployment approach for 4x4 square grid region‚ where the network is 1-hop and 2-covered. Sinks are placed deterministically on grid cross points. But the sensor node deployment strategy is set to random here. Locations
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DISTANCE: ”________” (IP TO TGT IN NM FOR F/W‚ CENTER OF BP TO TGT IN METERS FOR R/W) TGT ELEVATION: ”_____________” (FEET MSL) TGT DESCRIPTION: ”___________________” TGT LOCATION: ”______________________” (INCLUDE GRID ZONE ID) TYPE MARK: ”________________________‚” “LASER CODE: _______” (IF APPLICABLE) LOCATION OF FRIENDLIES: ”____________” (FROM TARGET‚ CARDINAL DIRECTION AND DISTANCE IN METERS) “EGRESS:L/R PULL____________________” (CARDINAL/SUBCARDINAL
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INSTITUT PENGURUSAN DINAMIK SARAWAK‚ WISMA MORNIE‚ NO.1‚ JALAN HAJI TAHA‚ 93400 KUCHING‚ SARAWAK. ASSIGNMENT COVER SHEET Please attach a Cover Sheet to the front of each piece of work submitted. Please check that you have Filled in all details correctly‚ and signed the declaration at the bottom of the page‚ before giving your assignment to the respective lecturer. Be sure to keep a copy of all your work. NAME : LAU KOH SIN ( SW1306FD3452 )
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