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What Are The Strategy of AMD VS.Intel Comparative Challenges
nanotechnology benefit
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Benefits of nanotechnology :-for computer science Nanotechnology has benifited computer science in many ways such as by increasing the efficiency of computer processors, by ensuring the continuity of MOORE’S LAW etc. A billion (or trillion) tiny particles, whether complex molecules or miniature machines, must all cooperateand collaborate in order to produce the desired end result. None will have, individually, sufficient computing power to enable complex programming. Like the growth of crystals, the development of embryos, or the intelligent behaviour of ants, bottom-up nanotechnology must be achieved through collective, emergent behaviours, arising through simple interactions amongst itself and its environment .Computer science, and especially …show more content…
They even consume less power and this is the reason for using them in computers. 28%3. Importance of IC in Industry:- First, the fact that they contain multiple components that are designed and tested to perform a specific task means that the electronic designer can use them as building blocks within a circuit instead of designing many separate components. Second, and the more significant advantage is that they can reduce the size of components to allow a far higher component density. Processor and memory chips contain millions of components in a package that is only an inch or two across. The same circuit in discrete components would fill a room. We benefit by seeing tiny products such as cell phones or laptop computers that simply wouldn't exist without integrated circuits. Integrated circuits also benefit us by using less power than------[ …show more content…
My task is to tell you about what can be advantages of these circuits to the person who is buying. Secondly telling you about how it can affect the Nation's Economy. My role is to conduct a survey, contact many companies, read through many company research papers and find out the knowledge required for taking a career in nanotechnology. Different people/employees have a different perception for nanotechnology. Some might want to go in the manufacturing and production of nanoscale products, others might be interested in future requirement research and application of nanoscale products. Also, my job is to learn the different problems the company and the employers/employees face during their work and how the approach and solve their problem. 100%6a.CONCLUSION;-- I concludes that, Last but not least according to me INTEL makes far better chips in comparison to AMD microprocessor chips as in former one there is less heat loss than AMD. The AMD chips are not straight forward as in this microprocessor chip it likes to shove as many cores as possible in single processing unit. AMDalso lacks in support with other component as they have least motherboard sockets with
Lovgren, Stefan. Can Art Make Nanotechnology Easier t Understand? 23 December 2003. Web. 3 May 2014. .
Nanotechnology is defined as the science of design, synthesis and characterization of matter at the nanoscale, which mesures one billionth of the meter [1,2] On that scale, structures exhibit novel chemical, physical and biological properties and processes, which enables the creation of engineered nanomaterials (ENMs), with various characteristics and potential applications. [3] It’s not just that though. Nanotechnology shows the ability to eliminate the gaps among medicine, material engineering and science, computer technology and public policy, creating new clinical and medical approaches to better diagnose, treat and prevent any kind of illness. In fact, it is already moving from simple passive structures
First things first, what exactly are nanotechnology and biotechnology? There has been some less than mild discussion of late about what constitutes legitimate nanotechnology, and suffice it to say that it doesn’t include things like laundry detergents, chemical additives, makeup micro-beads or anything of the like that may be claimed by some companies that are looking for an advantage over their competitors. Also, neither of these growing scientific disciplines includes any of the many terrifying, often alien technologies that swarm and smother, seek and destroy, or otherwise attempt to eradicate the human race from the face of the earth, ad nauseam. Here is a concise definition from The American Heritage Science Dictionary: “Nanotechnology is the science and technology of precisely manipulating the structure of matter at the molecular level. The term nanotechnology embraces many different fields and specialties, including engineering, chemistry, electronics, and medicine, among others, but all are concerned with bringing existing te...
Other possibly meaningful factors that cannot be forgotten include: higher yields (due to process quality and use of more efficient, larger silicon wafers), use of common core design for different products supported by the flexibility of production lines (which enabled cost-efficient production of a wide variety of different semiconductors), and – reportedly – 12 per cent lower investment in capital assets related to the aforementioned strategic decision on fab collocation.
Throughout its history, Intel has centered its strategy on the tenets of technological leadership and innovation (Burgelman, 1994). Intel established its reputation for taking calculated risks early on in 1969 by pioneering the metal-oxide semiconductor (MOS) processing technology. This new process technology enabled Intel to increase the number of circuits while simultaneously being able to reduce the cost-per-bit by tenfold. In 1970, Intel once again led the way with the introduction of the world’s first DRAM. While other companies had designed functioning DRAMs, they had failed to develop a process technology that would allow manufacturing of the devices to be commercially viable. By 1972, unit sales for the 1103, Intel’s original DRAM, had accounted for over 90% of the company’s $23.4 million revenue (Cogan & Burgelman, 2004).
“Which is better, AMD or Intel?” is a question that is constantly debated among people involved with computers. There are many reasons to choose one side over another, as both do have their advantages and disadvantages. Intel and AMD are the most prevalent processor production companies, which in turn creates competition between the two. This question is a by-product of that competition. Only by knowing each company and what their product has to offer, can a person make a decision as to what to buy to suit their needs.
At a Glance: AMD offers a high-performance chip at a low-budget price. If you're a thrifty shopper and don't need the zippiest system on your block, look no further.
In the novel, Prey, written by Michael Crichton it pertains to the subject of nanotechnology throughout the whole entire book. The main characters of this novel are the
“After the integrated circuits the only place to go was down—in size that it. Large scale integration (LS) could fit hundreds of components onto one chip. By the 1980’s, very large scale integration (VLSI) squeezed hundreds of thousands of components onto a chip. Ultra-Large scale integration (ULSI) increased that number into millions. The ability to fit so much onto an area about half the size of ...
As a company that owns majority of the computer-chip market, Intel is a “monopoly”. According to the textbook Business Ethics: Concept and Cases (Velaquez, 2014) Intel owned 90 percent of the market when they started their power trip. Furthermore, the company has managed to control 71% of the x86 technology market, as of 2011. To further support this claim,
Moor’s Law: The number of transistors incorporated in a chip will approximately double every 24 months. (Moore, 1965)
Intel Corporation. (n.d.). Dual-Core Intel® Xeon® Processors LV and ULV for embeded computing. Retrieved May 23, 2010, from Intel Corporation Web site: http://download.intel.com/design/intarch/prodbref/31578602.pdf
Their commitment to R&D creates future generations of products and the manufacturing processes they use to make them, while their capital expenditures ensure the availability of state-of-the-art factories that allow them to deliver high-volume, high-performance microprocessors efficiently. Looking into the future, they will continue to manufacture quality microprocessors that will live up to the Intel name and strive towards perfecting their existing ones.
The food industry has been using nanotechnology for a little over a decade now to change the way we grow and maintain our food. Nanotechnology uses in food has many advantages – it can give the producers the power to control how food looks, tastes and even how long it lasts. Listed below are the top ten uses of nanotechnology in foods:
In the modern world, we have many devices that help us with our daily lives. These devices include the cellular phone, the music player and many more but none of these devices would exist without the invention of the transistor. The transistor is essentially the most important device ever created. Not because of what it does but because of what size it is. The transistor is absolutely necessary for our day-to-day lives.