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    Quantum Computer Essay

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    The Quantum Computer and the Impact If Made Profitable The first all around computer was the ENIAC that was created 1940's. This computer was basically calculator, capable of addition, subtraction, multiplying, division, sign differentiation, and square root extraction. Computers since then have continually been getting more compact while improving in memory, RAM, speed and user friendliness. The modern computer now has transistors the size of eleven atoms. Because of such minuscule scales that computers

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    Quantum Computers

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    Quantum Computers The beginning of quantum computers came at the turn of the twentieth century when there was a scientific revolution and quantum mechanics was born. Quantum computers are based off of the mathematical framework of quantum mechanics and have a multitude of uses that are applicable in today’s world and the futures. Quantum computers have the possibility of processing numerous complicated efficient algorithms at one time by harnessing the power of the atom. Current quantum computers

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    Quantum Computing

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    While creating, maintaining, and programming a quantum computer is challenging, quantum computers are able to yield results from computations that are too complex for classical computers. In order to understand the benefits and challenges one must understand what a quantum computer is; and the difference between classical and quantum computers. Classical computers use bits; a bit can be represented as either 0 or 1. Vedral states that the value of a bit in computing is determined by the electrical

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    Quantum teleportation is the feat in which an object is disintegrated in one place and then perfectly reconstructed elsewhere, destroying the original copy in the process. It is much like the process someone would go through to fax a piece of paper, only the original copy is shredded after the fax is complete. As fictitious as this may sound, it may soon become a reality, but not in the way you may think. The concept of teleportation was first introduced in the early 20th century through science

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    Quantum Computing: Breakthrough of the Future

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    Innovation is the breakthrough to the future. There is a enormous amount of information us humans do not know. How can we solve these unknown answers? The biggest solution is, quantum computing. This is how quantum computers work, how they are made, how a person can program a quantum computer, and how it will change our future as we know it. How a Quantum Computer Works: Old School vs. New School The first conventional computers that were introduced were these big towers of switches, transistors

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    Development of Quantum Computers and Cryptography In 2010, the United States government, after accessing encrypted files by means of physical intervention, exposed ten Russian sleeper agents; in 2013, the United States government, without any means of physical intervention, surreptitiously collected and promptly decrypted many previously encrypted (Wood). Within this decade, concerns regarding the dubious security of contemporary cryptography will begin to emerge as the secrets of quantum computing quickly

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    Quantum Computing Essay

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    Quantum Computing based Technique for Cancer Disease Detection System Introduction Present era is the modern era dedicated to Science and Technology, as science improves itself with time, human race losses his tolerance for various diseases and changing life style and environment make the condition worst than ever. As the history depict we never loses hope and same thing happens in present scenario. Cancer is one of the most devastating disease faces by human kind and with time we are getting

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    Architectures for Scalable Quantum Computation

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    are intractable (w.r.t. resources). In order to tackle these problems, a super-Turing computational model has been devised and named as the quantum computer [1]. Quantum computation is based on the laws of quantum mechanics and can outperform classical computation in terms of complexity. The power comes from quantum parallelism that is achieved through quantum superposition [2] and entanglement [3]. Computability is unchanged so intractable problems are still unsolvable, but the exponential increase

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    Development of a Quantum Computer We are nearly five years into the new century and we still have not found a solution to the breakdown of Moore's law. After ten years of continually shrinking the chip size surely we are now ready to move on in a different direction. The age of the silicon computer is coming to an end. It is time for us to move on. The future is in the development of the quantum computer. We must begin research now before it is too late. As the New York Times science writer George

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    Quantum Computers

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    themselves will be made up of a mere handful of atoms. At this scale, matter obeys the rules of quantum mechanics. If computers are to become smaller and more powerful in the future, quantum technology must replace or reinforce what we have today. Quantum computers aren't limited by the binary nature of the classical physical world. Instead, they depend upon observing the state of qubits (quantum bits) that may represent a one or a zero, a combination of the two, or that the state of the qubit

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    Understanding Quantam Computing Quantum Computing is something that could have been thought up a long time ago - an idea whose time has come. For any physical theory one can ask: what sort of machines will do useful computation? or, what sort of processes will count as useful computational acts? Alan Turing thought about this in 1936 with regard (implicitly) to classical mechanics, and gave the world the paradigm classical computer: the Turing machine. But even in 1936 classical mechanics was

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    Fundamental Differences of Quantum Computers In the standard architecture of computer storage, values are arranged as a series of bits, each of which is either true or false(0 or 1). This fundamental restriction of two states is the most basic difference when working with quantum states. Rather than allowing just the two singles states, a superposition of the two states is also possible, forming a state that is neither 0 nor 1, but something in between with a probability of either state.

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    Entanglement plays an important role in Quantum Information Processing. It has wide applications in areas of Quantum cryptography, secure communications, teleportation and so on. All these protocols involve muti party entanglement which requires locally producing the entanglement and then distributing it to different parties. These multiparticle entanglement can be of various types depending upon its number of qubits. Interestingly upon distribution the states will interact with the environment and

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    An Inside Look at Superconducting Qubits

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    Superconducting Qubits Introduction and Background The quantum computation has remarkably improved since the use of quan- tum algorithms that have a run time which is exponentially faster compared to classical algorithms. Implementation of theory for practical computation presents various technological and scientific challenges. It is required that the Qubits be entirely free from external noise while at the same time they need to be strongly coupled amongst themselves using gates for computa-

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    The Viability of Quantum Computing

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    One of the first questions that comes to mind for the viability of quantum computing “Why do we need it?”. Well to understand the why we have to delve into “How does it work? And does this work give us a benefit well beyond our current capabilities with classical supercomputers. To answer these questions we have to know “Why classical computing will not fit our needs in to the future and why can we not improve upon it?”. Classical computers are running low on time according to Moores Law which states

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    As thi nambir uf Intirnit asirs end thi nambir uf eccissobli Wib pegis gruws, ot os bicumong oncriesongly doffocalt fur asirs tu fond rilivent ducamints tu thior pertocaler niids. In thos pepir, wi ripurt un risierch thet edepts onfurmetoun ritroivel besid un e asir prufoli. Ontulugy mudils eri wodily asid tu riprisint asir prufolis on pirsunelozid wib onfurmetoun ritroivel. Meny mudils hevi atolozid unly knuwlidgi frum iothir e glubel knuwlidgi besi ur e asir lucel onfurmetoun fur riprisintong asir

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    to read, and failed to answer the questions. They left many of their questions blank or put I don’t know. What feedback have you received from your cooperating teacher and university supervisor on your key issue? I have received a good amount of information from my cooperating teacher and university supervisor on the key issue of students’ abilities to interp... ... middle of paper ... ...on their skills and familiarities with the subject. The scaffolding will include shorting the primary documents

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    Information Seeking Behavior of Users

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    Introduction People need information for various purposes. To accomplish this, information is organized in way that it can be easily recalled and retrieving the information fulfills a user’s information need. An information need evolves from awareness something is missing. In order to create better systems to facilitate the user interaction, the reasons and methods users employ to seek out their information needs must be understood. This briefing enables the reader to understand the definition

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    to have a social media tool. However, social media transitions from a useful tool to being problematic when it is viewed as an important mechanism that can relieve stress, loneliness and/or depression (Griffith, Para. 4). “Study done by Cornell Information to quit just Facebook for 99 days resulted in people only lasting a few days” (Elgan, Para. 4) This study was conducted with no rewards except for the satisfaction of not being controlled by social media and people were unable to last the full asked

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    Too Much Information?

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    Too Much Information? The "pervasive, invasive information infrastructure...is as much a part of our lives as religion was for medieval surfs" (Tetzeli 1994, p. 60). But is it too much? We've all seen the mind-numbing statistics about the exponential growth of information and of technological means of distributing and accessing it. However, some people question whether the problem really is one of overload. One source of the problem is actually the multiplicity of communication channels. Unlike

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