1. Graph the function f(x) = (x + 3)3 by hand and describe the end behavior. (1 point) The Function is cubic so it ends in opposite directions‚ the left side will go down and the right side up since the first coefficient is positive. 2. Graph the function f(x) = –x4 – 4 by hand and describe the end behavior. (1 point) The function is quartic so the left and right end will continue in the same direction‚ the lead coefficient is negative so both sides will go down. 3. Graph the function f(x) =
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Difference between OSI model and TCP/IP model The Internet Protocol Suite also known as TCP/IP is the set of communications protocols used for the Internet and other similar networks. It is named from two of the most important protocols in it: the Transmission Control Protocol (TCP) and the Internet Protocol (IP)‚ which were the first two networking protocols defined in this standard. IP networking represents a synthesis of several developments that began to evolve in the 1960s and 1970s‚ namely
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report Contents 1. Abstract page 2 2. Introduction page 2 3. How the Process Currently Works page 3 4. Two Phase Flow page 4- 6 5. Flow Patterns page 7- 8 6. Interfacial Mass and Energy Exchange page 9 7. Two Phase Flow in Horizontal Pipes page 10 8. Pressure Drop page 11 9. Future Work page 11 10. Timetable page 12 11. References page 13 1. Abstract The
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Evelyn Boyed Granville was born May 1‚ 1924 in Washington D.C. She was the second child and second daughter born to William Boyed and Julia walker Boyed. Her father‚ William Boyed worked as a custodian in the apartment Evelyn was living in. Her father later on left the family early in her childhood. She and her older sister Doris were by her mother and her mother twin‚ Louise walker. The period of time was very difficult and was during segregation. Obstacles that Evelyn Boyed Granville
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INVESTIGATORY PROJECT CHAPTER ONE CALAMANSI PULP FOR A STAIN REMOVER INTRODUCTION: The Calamansi is a fruit known for its usefulness‚ as well as its amazing use in the field of medicine; however it’s proved to be more than just a food and medicine. It was in fact‚ also a fruit for household purposes‚ and through our various digging of information‚ some researchers found out that calamansi is also beneficial in a lot of things. Such as: Useful for food recipes‚ Eliminates bad smell
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the business dictionary online‚ the definition of marketing is as follows: The management process through which goods and services move from concept to the customer. It includes the coordination of four elements called the 4 P’s of marketing: (1) Identification‚ selection and development of a product‚ (2) Determination of its price‚ (3) Selection of a distribution channel to reach the customer’s place‚ and (4) Development and implementation of a promotional strategy. The product
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TOPIC 1 SAQ1. Explain the three decision phases (categories) that must be made in a successful supply chain? Three design phases are: • Supply Chain Strategy and Design. • Supply Chain Planning. • Supply Chain Operation. • Supply Chain Strategy and Design –. During this phase‚ a company decides how to structure the supply chain over the next several
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1. What is the exact number of bits in a memory that contains 640M bits? 640 · 1024 = 655‚360 · 1024 = 671‚088‚640 bits. 2. How many bits are in 1 Tb? You are asked to figure out the exact result. Hint: Depending on the tool used to calculate this‚ you may need to use a trick to get the exact result. Note that 220 = 1‚000‚00010 + d‚ where d is the difference between 220 and 1‚000‚00010‚ and that 1T = (1‚000‚00010 + d)2 8 bits/byte => 8 · 1 trillion or 812 => 8‚000‚000‚000‚000 3. Convert the binary
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Equations ax2 + bx + c = 0 Examples of Quadratic equations 1. x2 +2x – 8 = 0 2. x2 – 10x + 25 = 0 3. 3x2 + x - 2 = 0 Quadratic Formula If [pic] a x2 + b x + c = 0‚ then [pic] Finding the zeros of the quadratic functions - The zeros of a function are the input values which result in an output value of zero. One way of solving quadratic equations is using factoring Examples are the following: 1) x2 + 5x + 6 = 0 Set this equal to zero: (x + 2)(x +
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Phase Locked Loop: The phase-lock-loop (PLL) is commonly used in microprocessors to generate a clock at high frequency (Fout=2GHz for example) from an external clock at low frequency (Fref = 100MHz for example). The PLL is also used as a clock recovery circuit to generate a clock signal from a series of bits transmitted in serial without synchronization clock (Figure below). The PLL may also be found in frequency demodulation circuits‚ to transform a frequency varying waveform into a voltage.
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