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Quantum Theory and Its Effects on Novel Corona-Virus
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作者 Shahzad Aasim 《Journal of Quantum Information Science》 2020年第2期36-42,共7页
Emerging infectious viral diseases are a major threat to humankind on earth, containing emerging and re-emerging pathogenic physiognomies has raised great public health concern. This study aimed at investigating the g... Emerging infectious viral diseases are a major threat to humankind on earth, containing emerging and re-emerging pathogenic physiognomies has raised great public health concern. This study aimed at investigating the global prevalence, biological and clinical characteristics of novel Corona-virus, Wuhan China (2019-nCoV), Severe Acute Respiratory Syndrome Corona-virus (SARS-CoV), and Middle East Respiratory Syndrome Corona-virus (MERS-CoV) infection outbreaks <a href="#ref1">[1]</a>. Currently, novel Corona-virus disease COVID-2019 is already pandemic and causing havoc throughout the world. Scientific community is still struggling to come out with concrete therapeutic measures against this disease and development of its vaccine is far off from sight in the immediate near future. However, humanity will be put to such pressures very often in the near future and given the present circumstances, what we can expect from the scientific world now? I think QIT (Quantum Information Theory) has an answer to this question. One of the very basic mechanisms that every infectious virus follows to infect is the entry of the virus through cell surface receptors, engulfing, un-coating of viral genome and its transcription to form multiple copies and translation to form viral proteins and coating of viral genome to form multiple copies of the viral particles and then of course the cell bursting to infect other cells. This very basic mechanism does not occur randomly but through a regulated and more dynamic process which we may call coding and decoding of information through reduction in error or noise. 展开更多
关键词 COVID-19 Corona-Virus QIT SARS-COV Iobits neobits
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内嵌式逻辑型非挥发性内存技术与应用
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作者 郭东政 沈士杰 徐清祥 《中国集成电路》 2010年第3期34-42,共9页
内嵌式非挥发性内存,具备高良率、高精准度与配合系统做参数调效的特性,能使整体系统具最短开发时程与生产成本。内嵌式非挥发性内存的发展可分为传统型与逻辑型。传统型内嵌式非挥发性内存的制造过程相当复杂,相对于一般逻辑制程来说,... 内嵌式非挥发性内存,具备高良率、高精准度与配合系统做参数调效的特性,能使整体系统具最短开发时程与生产成本。内嵌式非挥发性内存的发展可分为传统型与逻辑型。传统型内嵌式非挥发性内存的制造过程相当复杂,相对于一般逻辑制程来说,需额外增加7-9道光罩。逻辑型非挥发性存储器则不同于传统型,其利用一般逻辑制程中之I/O组件来组成非挥发性内存之核心存储单元。基于技术成熟度与生产成本因素,逻辑型非挥发性内存成为在逻辑制程中使用度最高之解决方案。其可应用之范围包含所有使用兼容于一般逻辑制程的数字/模拟芯片。未来逻辑型非挥发性内存解决方案会成为一标准化设计,并被广泛使用于各类消费型电子产品中。 展开更多
关键词 内嵌式 非挥发性内存 neobit NEOFLASH SONOS
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