...ASSIGNMENT - 3 Answers 1 Answer 2 Answer 3 4. For what types of workloads does SJF deliver the same turnaround times as FIFO? ANSWER: - In the above case if the jobs are same in size or the jobs periodically applied (i.e. first shortest job then later second shortest job and continues) then the turnaround time of SJF is same as FIFO. 5. For what types of workloads and quantum lengths does SJF deliver the same response times as RR? ANSWER: - The response time delivered by SJF is equal to the response time of RR but this happens only when all the jobs arrived are at the point when the planning quantum of RR is bigger than the bigger occupation to be administrations in order of increasing size. 6. What happens to response time with SJF as job lengths increase? Can you use the simulator to demonstrate the trend? ANSWER: - If you suppose the length of the job increases then average response time varies (increases).If every job is sorted in increasing job order than the last job response time will be equal to the sum of current job and previous (n-1) jobs. In this way if the size of the job increases the response time will also increases for all larger jobs. 7. What happens to response time with RR as quantum lengths increase? Can you write an equation that gives the worst-case response time, given N jobs? ANSWER: - In the case of RR, the response time increases as the quantum lengths increases. This happens because the waiting time of a process for its turn to...
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...SENIOR SECONDARY COURSE PHYSICS 1 (CORE MODULES) Coordinators Dr. Oum Prakash Sharma Sh. R.S. Dass NATIONAL INSTITUTE OF OPEN SCHOOLING A-25, INSTITUTIONAL AREA, SECTOR-62, NOIDA-201301 (UP) COURSE DESIGN COMMITTEE CHAIRMAN Prof. S.C. Garg Former Pro-Vice Chancellor IGNOU, Maidan Garhi, Delhi MEMBERS Prof. A.R. Verma Former Director, National Physical Laboratory, Delhi, 160, Deepali Enclave Pitampura, Delhi-34 Dr. Naresh Kumar Reader (Rtd.) Deptt. of Physics Hindu College, D.U. Dr. Oum Prakash Sharma Asstt. Director (Academic) NIOS, Delhi Prof. L.S. Kothari Prof. of Physics (Retd.) Delhi University 71, Vaishali, Delhi-11008 Dr. Vajayshree Prof. of Physics IGNOU, Maidan Garhi Delhi Sh. R.S. Dass Vice Principal (Rtd.) BRMVB, Sr. Sec. School Lajpat Nagar, New Delhi-110024 Dr. G.S. Singh Prof. of Physics IIT Roorkee Sh. K.S. Upadhyaya Principal Jawahar Navodaya Vidyalaya Rohilla Mohammadabad (U.P.) Dr. V.B. Bhatia Prof. of Physics (Retd.) Delhi University 215, Sector-21, Faridabad COURSE DEVELOPMENT TEAM CHAIRMAN Prof. S.C. Garg Former Pro-Vice Chancellor IGNOU, Delhi MEMBERS Prof. V.B. Bhatia 215, Sector-21, Faridabad Prof. B.B. Tripathi Prof. of Physics (Retd.), IIT Delhi 9-A, Awadhpuri, Sarvodaya Nagar Lucknow-226016 Sh. K.S. Upadhyaya Principal Navodaya Vidyalaya Rohilla Mohammadabad, (U.P.) Dr. V.P. Shrivastava Reader (Physics) D.E.S.M., NCERT, Delhi EDITORS TEAM CHAIRMAN Prof. S.C. Garg Former Pro-Vice Chancellor IGNOU, Delhi MEMBERS Prof. B.B. Tripathi Prof...
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...System Performance: Unit 8 Edward Greene NT 1110 When addressing system performance, a key element that is often overlooked is Disk Fragmentation. Even on a brand new system with plenty of RAM and processing speed, the performance of the hard disk may be a bottleneck causing issues. It takes time to load large data files into memory - issues become particularly noticeable when dealing with movies, video clips, database files or image files which may easily be several gigabytes in size. On a freshly formatted disk, these files load fairly quickly. Over time, however you may start to notice performance issues - caused by disk fragmentation. The different processes running in the back ground, (i.e. Windows Explorer, Power Manager) all take an allotted amount of RAM to perform at optimum levels. More free RAM means that the essential processes that are running have more priority of the space and the CPU. When you begin to run your RAM to its limits, The essential processes and even the non-essential processes begin to lag due to the overtaxing of the CPU and RAM. Your OS will use the hard drive as a “back-up” or virtual memory if your PC runs out of RAM while you are working away. Using your hard drive as memory causes a serious performance hit, as hard drives are way, way slower than RAM. So, the trick is having enough memory, adding more does not help if you are doing nothing that needs more memory. Today, with a modern PC and a modern OS, you need about 4 gig to achieve...
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...Appendices: We have taken into consideration the data provided to us in Table 2 (Employment in Hong Kong between 1984 and 1993), Table 4a (Average rentals of grade A office space in Hong Kong), Table 4b (Rentals for prime office space in other cities, Table 6 (Office Portfolio of Hong Kong Land Holdings Ltd., Table 7a (Private offices for all grades – supply and forecast supply by district and Table 7a (Grade A Office in Central – supply and forecast supply). Disclaimer: We have forecasted the demand and price based on the information available to us and have not taken into consideration additional data that maybe available to the general public. Appendix A: Forecast of Demand for Grade A office space in Hong Kong Central for Hutchison Whampoa Ltd The Vacancy rate of Grade A offices in HK Central in 1992 is 86,000 Square meter i.e. 7.3% and we used this data in combination with the incremental supply data available to calculate the total Supply space. ð Total Supply for Grade A offices in HK Central for 1992 = 86,000 Sq. Meters / 7.3% = 1,178,082 Square meters. ð Total Demand for Grade A offices in HK Central = 1,178,082 Square meters x 92% = 1,092,082 Square meters. 92% is derived from subtracting the 7.3% from 100%. The table below contains the calculated values for Total Supply and Demand based on the approach described above: Year 1988 1989 1990 1991 1992 1993F 1994F 1995F 1996F 1997F 1998F 1999F Vacancy in Square Meters (2nd paragraph in page 14) ...
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...UNIVERSITI TUNKU ABDUL RAHMAN Centre Course Year/ Trimester Session : Centre for Foundation Studies (CFS) : Foundation in Science : Year 1 / Trimester 1 : 201505 Unit Code Unit Title Lecturer : FHSC1014 : Mechanics : Tutorial 1: Introduction. 1. How many significant figures do each of the following numbers have: (a) 214, (b) 81.60, (c) 7.03, (d) 0.03, (e) 0.0086, (f) 3236, and (g) 8700? 2. The diameter of the earth is about 1.27 x 107 m. Find its diameter in (a) Millimeters, (b) Megameters, (c) Miles 3. Express the following using the prefixes: (a) 1×106 volts, (b) 2×106 meters, (c) 6×103 days, (d) 18×102 bucks, and (e) 8×109 pieces. 4. The speed limit on an interstate highway is posted at 75 mi/h. (a) What is this speed in kilometers per hour? (b) In feet per second? (c) In meter per second? [(a) 121 km/h, (b) 110 ft/s, (c) 33.5 m/s] 5. Five length have been measured and recorded as follows: L1 = 3.427m L2 = 3.5m L3 = 0.333m L4 = 32.000m (a) (b) (c) (d) (e) (f) (g) 6. What is the uncertainty is there in each measurement? What is the result if L1 + L2? [6.9 m] What is the result if L1 + L3? [3.760 m] What is the result if L1 – L3? [3.094 m] What is the result if L2 – L1? [0.1 m] What is the result if L1 L2? [12 m2] What is the result if L4 L3? [96.1] What is the volume (with the correct number of significant figures) of rectangular box as shown in figure below? [0.07 m3] 6×102 mm 20.0...
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...CHAPTER 1:UNIT OF MEASUREMENT 1. i) ii) iii) Write the SI prefixes for : nano and deci milli and mega kilo and centi 2. 6.0 km is how many micrometers? 3. How many milliliters is 0.005 L? 4. Lead melts at 601.0 C. What temperature is this in F? 5. Many home freezers maintain a temperature of 0 F. Express this temperature in C 6. Liquid nitrogen boils at –195.8 C. Express the boiling point of liquid nitrogen in kelvin. 7. Dry ice (carbon dioxide) changes from a solid to a gas at –78.5 C. What is this temperature in F? 8. How many square kilometers are equivalent to 28.5 cm ? 9. Report the results of the following calculations to the correct number of significant figures. i) 423.1K to°C ii) 6.167 + 83.1 5.3 iii) (13.7 + 0.027) × 8.221 iv) 8.52010 ×7.9 + 1.93 v) 218.7201 – 218.63 –4 vi) (1.5 ×10 × 61.3) + 2.01 10. Determine the number of significant figures in each of the following measurements. i) 311.080 K ii) 0.0899 g/L 5 iii) 4.300 x10 atoms iv) 2.0 kg 9 v) 1.050 vi) 1.3070 11. The density of ammonia gas under certain conditions is 0.625 g/L. Convert its density into ng/mm . 12. Convert 6020 cm to nm . 13. How many significant figures are indicated by the following? 2 a) 3.340 x10 b) 0.0030 c) 1.080 d) 2.12 14. Consider a single piece of aluminum foil that is 1.0 m long, 304 mm wide and 0.60 mm thick 3 and the density of Al is 2.70 g/cm . a) How many grams of Al are there in the piece of foil? 3 3 3 2 O O O O O O O 15. In 1828, the diameter of the U.S. dime was changed...
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...ECO Assignment – Melon Enterprise Click Link Below To Buy: http://hwaid.com/shop/eco-assignment-melon-enterprise/ Melon Enterprise is a commercial real estate developer. You recently joined Melon and your position reports directly to Pat Smith, the CEO. When you meet Pat for the first time, she asks you to work on a project that has to be completed in about a week. Pat tells you that Melon is thinking about leasing a parcel of land to build a shopping center. Melon would own and operate the shopping center and generate revenue by renting space to retailers. Pat would like you to do some work on the project. Specifically, she would like you to complete the following tasks: 1. Determine the optimal size of the shopping center (to the nearest 100 square meters) based on existing estimates of the demand for retail space. 2. Determine the most Melon should be willing to pay to lease the land for the expected life of the project. 3. Calculate the profit under each possible demand curve with the optimum size of the shopping center. 4. Determine if it is worth hiring a local consultant, Roland Thomas, to do some additional market research that would provide a better estimate of the demand for retail space. 5. Write a short report summarizing the results of your analysis and any recommendations. Pat also informs you that Bob Devine, a former Melon employee, did some preliminary work on the project, but left the organization before wrapping things up. Pat says...
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...THIS BEING THE REPORT ON THE 6 MONTH INDUSTRIAL TRAINING BY MR AMOSU OPEPO OLUFEMI OF MATRICULATION NUMBER 03054341 500 LEVEL ELECT/ELECT ENGINEERING AKNOWLODGEMENT First and foremost, I give thanks to god almighty that has preserved me up till this moment and enabled me to partake of the programme and also enabled me to put this report together. Next I will like to mention the relentless effort of my dad who is never tired of me and single handedly bore my burden from childhood until now. He also never fails to give me all the support needed: morally, financially and all. Also I will like to express my deepest appreciation to my entire lecturer who has in one way or the other affected my life Especially engr. Olajide, engr. olokede and the rest, I am very grateful \INTRODUCTION The six month of industrial training is called the siwes program known as student industrial working experience scheme. The scheme is intended to familiarize the engineering undergraduate students with working experience of the real engineering life. As an engineering student, one is expected to undergo three schemes at different times which is intended to give him or her a detailed understanding of the engineering field...
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...RULE XVI - PLASTICS SECTION 1601. Approved Plastics Approved plastic materials shall be those which have a flame-spread rating of two hundred twenty five (225) or less and a smoke density not greater than that obtained from the burning of untreated wood under similar conditions when tested in accordance with generally accepted engineering practices. The products of combustion shall be no more toxic than the burning of untreated wood under similar conditions. SECTION 1602. Installation 1. Structural Requirements - All plastic materials shall be of adequate strength and durability to withstand the prescribed design loads. Sufficient and substantial technical data shall be submitted to establish stresses, maximum unsupported spans, and such other information as may be deemed necessary for the various thicknesses and forms used. 2. Fastenings - Fastenings shall be adequate to withstand design loads and internal and external stresses required of the assembly. Proper allowances of plastic materials in conjunction with other materials with which it is assembled or integrated shall be provided. SECTION 1603. Glazing of Openings 1. The location of doors, sashes and framed openings glazed or equipped with approved plastics at the exterior walls of a building shall be so arranged that in case of fire, the occupants may use such openings to escape from the building to a place of safety. The travel distance from any point of the building...
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...Applied Research Research undertaken to solve a specific problem Pure Research Research to gain knowledge for the sake of knowledge Base Unit A defined unit in a system measurements (SI- International system of measurement) Density The physical property of matter and its mass per unit volume Derived Unit A combination of base units Kelvin SI base unit for Temperature Kilogram SI base unit for mass Liter SI base unit for volume Meter SI base unit for length Second SI base unit for Time Scientific Notation Express's any number between 1 and 10 (coefficient) multiplied by ten and raised to a power (exponent) Accuracy How close a measured value is to an accepted value Error Difference between experimental value and an accepted value Percent Error Expresses error as a percentage of an accepted value ( Its what percent of an accepted value an error presents) Precision How close a series measurement are to one another Graph Visual display of data Matter Anything that has mass and takes up space Technology The practical use of scientific information The metric system is based on the power of _________. Ten Name the SI unit and symbol (abbreviation) for the following: Quantity: Unit Symbol Length Mass Time Temperature Volume Amount of a Substance Quantity: Unit Symbol Length meter m Mass kilogram, gram kg,g Time seconds s Temperature Celsius, Kelvin Degrees C, K Volume Liters, Milliliters L,mL Amount...
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...force (b) Suppose an equation related with force F, viscosity ƞ, speed v, radius r is given by this formula , where k is a dimensionless constant; x, y, and z are the power to which ƞ, v and r. Given that the dimensions of viscosity ƞ is ML–1T–1. Use dimensional analysis to determine the value of x, y and z. [Answer: (a) (i) LT–1, (ii) MLT–2; (b) 1, 1, 1] 4. (a) Discuss briefly whether in general the method of dimensional checking can positively confirm that an equation is correct. (b) Newton’s law of universal gravitation is represented by where F is the gravitational force, M and m are masses, and r is a length. Given that the dimensions of force is MLT–2. What are the dimensions and SI unit of the proportionality constant G? [Answer: (a) No; (b) L3M–1T–2, m3 kg–1 s–2] 5. The flow of a liquid with density ρ, round an obstacle of width b, changes from streamline to turbulence when the critical speed v is reached. If η is the viscosity of the liquid and given their relationship as below: where C is a dimensionless constant. Deduce the dimension of η. [Answer: ML–1T–1] 6. (a) The...
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...Case Study: WINDCATCHER LTD John Jeffries recently left the army after more than 20 years in the service. He had decided that at 45 years of age it was time to start a second career. Throughout most of his life John had a passion for sailing and had competed successfully in many offshore yacht races. He felt that because of his expertise and interest in sailing and the fact that over the years he had cultivated many friends and contacts in the sailing world, he would be wise to invest his money and energies in this area of business. After many months of searching for a suitable business, last October John and his wife agreed to purchase all of the shares of Windcatcher Ltd for £500,000 at the 31 December. The business was involved in the manufacture of sails on an individual ‘made to measure’ basis for boats ranging in size from one-man dinghies to ocean-going yachts. Most of the customers were private individuals, though about 10% of orders each year were placed by small boat-builders. Windcatcher also undertook some repair work to damaged sails. The business was established in 1970 by Arthur Davies and was managed by him until his sudden death in August. Over that period he had shown a strong interest in the technical side of the business and Windcatcher enjoyed a good reputation for the quality of the products. However, he had had little interest in financial matters and maintained only rudimentary management accounting records. Demand for Windcatcher’s work...
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...MEASUREMENT AND UNITS & DIMENSIONS Synopsis : 1. Every measurement has two parts. The first is a number (n) and the next is a unit (u). Q = nu. Eg : Length of an object = 40 cm. 2. The number expressing the magnitude of a physical quantity is inversely proportional to the unit selected. 3. If n1 and n2 are the numerical values of a physical quantity corresponding to the units u1 and u2, then n1u1 = n2u2. Eg : 2.8 m = 280 cm; 6.2 kg = 6200 g 4. The quantities that are independent of other quantities are called fundamental quantities. The units that are used to measure these fundamental quantities are called fundamental units. 5. There are four systems of units namely C.G.S, M.K.S, F.P.S and SI 6. The quantities that are derived using the fundamental quantities are called derived quantities. The units that are used to measure these derived quantities are called derived units. 7. The early systems of units : Fundamental Quantity System of units C.G.S. M.K.S. F.P.S. Length centimetre Metre foot Mass Gram Kilogra m pound Time second Second second 8. Fundamental and supplementary physical quantities in SI system (Systeme Internationale d’units) : Physical quantity Unit Symbol Length Metre m Mass kilogram kg Time second s Electric current ampere A Thermodynamic temperature kelvin K Intensity of light candela cd Quantity of substance mole mol Supplementary...
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...// This project is submitted as part of the assessment for Year 9 IST. // This is all my own work. I have referenced any work used from other // sources and have not plagiarised the work of others. // (signed) Maximilian Evans //Starting Variables //Game Length Variable var timer = 30; //Game Running? Variable var gameRunning = false; //Current Score Variable var currentScore = 0; //Mole Hit? Variable var moleHit = false; //Number of Moles Variable var i = 40; //==========================================================\\ //START GAME FUNCTION \\ //This function runs when either the start button or restart\\ //button is clicked. It resets the variables, iterates the \\ //game timer, as well as controlling which mole and where \\ //it has to appear next \\ //==========================================================\\ function runGame() { //Variable to determine if game is running gameRunning = true; //Var i = number of moles in game i = 40; //Sets game length to 30 secs timer = 30; //Updates current score document.getElementById("moles-whacked").innerHTML = ('0'); //Starts timer/game var countdown = setInterval(function startGame() { //Hides start button when game starts document.getElementById("start-button").style.display = "none"; //Hides restart button when game starts document.getElementById("restart-button").style.display = "none"; ...
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...The Airbus Everything about this airplane is enormous, the numbers of truly main Baugleen, its overalling is 73 meters, that´s about the slowest of the greats things in a jet, the jaim to the fuselage were tipically have 5 hundred and 60 feet to have the potential to carry up to 8 hundred passengers, the tail at 21 meters of the ground is as high as a seven story building, the 8 hundred and 45 square meter of and wind area is big enough to park 70 cars. The 8380 can fly staggering 15000 kilometers without gree fueling and in order to do that, it needs to carry 3 hundred and 10000 liters of fuel, making the plains take of weith of 5 hundred and sixty tons. Incredibly thought, the 8380 will actually be more fuel efficient than others similizise jumbo jets, air bus claim that the plane will buy 3 liters of fuel per passenger for one hundred kilometers, making it as economical to run as a family car. The building of the 8380 is a remarkable example of a transnational cooperation, the finally assembled is in Tolous in France, but this is only the end of an impressible complicated process, the construction of each aircraft is the result of collaboration between France, Germany, Britain and Spain. The wings for example are built in England as wells, the main section of the fuselage are constructed in Humburg- Germany; Parts of the nose and tail are in fact made in Spain and only assembled in Germany. Everything is then shiped to France to be put together. The 8380...
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