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711.
The history of the Parallelogram Rule for composing physical quantities, such as motions and forces, is marked by conceptual difficulties leading to false starts and halting progress. In particular, authors resisted the required assumption that the magnitude and the direction of a quantity can interact and are jointly necessary to represent the quantity. Consequently, the origins of the Rule cannot be traced to Pseudo-Aristotle or Stevin, as commonly held, but to Fermat, Hobbes, and subsequent developments in the latter part of the seventeenth century.  相似文献   
712.
Plants are sessile organisms. This intriguing nature provokes the question of how they survive despite the continual perturbations caused by their constantly changing environment. The large amount of knowledge accumulated to date demonstrates the fascinating dynamic and plastic mechanisms, which underpin the diverse strategies selected in plants in response to the fluctuating environment. This phenotypic plasticity requires an efficient integration of external cues to their growth and developmental programs that can only be achieved through the dynamic and interactive coordination of various signaling networks. Given the versatility of intrinsic structural disorder within proteins, this feature appears as one of the leading characters of such complex functional circuits, critical for plant adaptation and survival in their wild habitats. In this review, we present information of those intrinsically disordered proteins (IDPs) from plants for which their high level of predicted structural disorder has been correlated with a particular function, or where there is experimental evidence linking this structural feature with its protein function. Using examples of plant IDPs involved in the control of cell cycle, metabolism, hormonal signaling and regulation of gene expression, development and responses to stress, we demonstrate the critical importance of IDPs throughout the life of the plant.  相似文献   
713.
Abraham Robinson’s framework for modern infinitesimals was developed half a century ago. It enables a re-evaluation of the procedures of the pioneers of mathematical analysis. Their procedures have been often viewed through the lens of the success of the Weierstrassian foundations. We propose a view without passing through the lens, by means of proxies for such procedures in the modern theory of infinitesimals. The real accomplishments of calculus and analysis had been based primarily on the elaboration of novel techniques for solving problems rather than a quest for ultimate foundations. It may be hopeless to interpret historical foundations in terms of a punctiform continuum, but arguably it is possible to interpret historical techniques and procedures in terms of modern ones. Our proposed formalisations do not mean that Fermat, Gregory, Leibniz, Euler, and Cauchy were pre-Robinsonians, but rather indicate that Robinson’s framework is more helpful in understanding their procedures than a Weierstrassian framework.  相似文献   
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In recent years, analytic philosophers have begun to recognize the value of the French school of historical epistemology (as embodied by figures such as Jean Cavaillès, Gaston Bachelard, Georges Canguilhem, and Michel Foucault) for contemporary debates in the history and philosophy of science. This tradition, which some characterize as a ‘French’ approach to the philosophy of science, however, remains largely un-read by mainstream philosophers of science. This article offers an interpretation of this tradition, highlighting what the author takes to be its two central features: (i) its claim that scientific discourse is the object of epistemology and (ii) its claim that scientific concepts are the building blocks of scientific discourse.  相似文献   
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下世纪初,只要看一下戴在自己手腕上的微型电话,你就会知道你的朋友在呼叫你。引起变化的方式有许许多多种。有的人采取的是流血的暴力行动,另一些人通过有说服力的辩论来改变我们的生活。而电气工程与计算机科学教授克拉克·尼因则希望通过改变我们的通讯方式来使我们的生活发生革命性的变化。尤其是,他的目的在于缩小移动电话和收音机的尺寸,直到它们变得小到可以安装在手表内或者像最近的电影“星球旅行”中所描述的科幻通讯器可以像缝在衣服上的纽扣那样小为止。在一个微型器件上将一种发射器和接收器的线路组合在一起构成一种发射…  相似文献   
718.
Mitochondrial DNA (mtDNA) deletions are a primary cause of mitochondrial disease and are likely to have a central role in the aging of postmitotic tissues. Understanding the mechanism of the formation and subsequent clonal expansion of these mtDNA deletions is an essential first step in trying to prevent their occurrence. We review the previous literature and recent results from our own laboratories, and conclude that mtDNA deletions are most likely to occur during repair of damaged mtDNA rather than during replication. This conclusion has important implications for prevention of mtDNA disease and, potentially, for our understanding of the aging process.  相似文献   
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