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David Vaandrager Lasse Gerrits Nanny Bressers 《Systems Research and Behavioral Science》2015,32(6):689-706
We analysed how an improbable project of building a new river through a suburban area came to fruition after all. The project is called the ‘Blue Connection’. We deployed systemic causal diagrams as a tool to visually show the structure of a system. The diagrams were derived and synthesized from interviews with participants. They then reflected upon the results. As such, the diagrams served a dual purpose: to understand why the Blue Connection project gained momentum whilst simultaneously contributing to the momentum by providing a coherent diagram of the systemic whole beyond the bounded mental models of individual actors. We identified the mechanisms that enabled or restrained the project as a complex system. Copyright © 2014 John Wiley & Sons, Ltd. 相似文献
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Ultrafast precessional magnetization reversal by picosecond magnetic field pulse shaping 总被引:4,自引:0,他引:4
Since the invention of the first magnetic memory disk in 1954, much effort has been put into enhancing the speed, bit density and reliability of magnetic memory devices. In the case of magnetic random access memory (MRAM) devices, fast coherent magnetization rotation by precession of the entire memory cell is desired, because reversal by domain-wall motion is much too slow. In principle, the fundamental limit of the switching speed via precession is given by half of the precession period. However, under-critically damped systems exhibit severe ringing and simulations show that, as a consequence, undesired back-switching of magnetic elements of an MRAM can easily be initiated by subsequent write pulses, threatening data integrity. We present a method to reverse the magnetization in under-critically damped systems by coherent rotation of the magnetization while avoiding any ringing. This is achieved by applying specifically shaped magnetic field pulses that match the intrinsic properties of the magnetic elements. We demonstrate, by probing all three magnetization components, that reliable precessional reversal in lithographically structured micrometre-sized elliptical permalloy elements is possible at switching times of about 200 ps, which is ten times faster than the natural damping time constant. 相似文献
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本文证明了公式β(n)=σ(n-1)+1其中α(n-1)是n-1次多项式微分系统的不为直线的最多条数,βn)是n次多项式微分系统的不变直线的不同斜率的最大个数。这里假设所讨论的多项式系统只有限条不变直线。 相似文献
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This article discusses the impact systemic complexity has on evaluation. It specifically studies the evaluation of multiactor knowledge and innovation programmes, as they are a good example of systemic complexity. The article starts with a discussion on the origins of knowledge and innovation programmes, and why they require a different approach to evaluation than classic evaluation methods. It continues with an elaboration on complexity and complex causality, and how this interferes with evaluation possibilities. To address the challenges posed, the article then presents a framework for evaluation that takes systemic complexity into account and allows for conclusion drawing without reducing and simplifying complexity. This approach is called applied systemic programme evaluation. The article is concluded with a comparison between regular evaluation methods and the presented new approach, in which the differences between applied systemic programme evaluation and classic evaluation become apparent. Copyright © 2013 John Wiley & Sons, Ltd. 相似文献
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