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1 PREAMBLE 2 THE CONTEXT FOR DESIGN 3 ARRIVING AT THE DIAGRAM RESPONDING TO THE SITE CHOOSING AN APPROPRIATE ‘MODEL’ ORGANISING THE PLAN 4 CHOOSING APPROPRIATE TECHNOLOGIES STRUCTURE SERVICES HOW WILL IT STAND UP? HOW IS IT MADE? WILL IT BE COMFORTABLE? WILL IT BE GREEN? 5 HOW WILL IT LOOK? EXPRESSION V SUPPRESSION ROOF OPENINGS ELEVATIONS WALL MEMBRANES THE CORNER SCALE 6 THE SPACES AROUND CENTRIFUGAL AND CENTRIPETAL SPACE URBAN SPACE TYPOLOGY 7 POSTSCRIPT: A WORKING METHOD TRADITION V THE VIRTUAL BUILDING FURTHER READING
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In this appendix, we present a primer for people who are unfamiliar with the Java language. This introduction is intended to allow you to develop the Java skills necessary to understand the programs in this text. It is not a complete Java reference; for a more thorough coverage of Java, consult the Bibliographical Notes. We do not assume that you are familiar with object-oriented principles, such as classes, objects, and encapsulation, although some knowledge of these topics would be helpful. If you are already familiar with C or C++, the transition to Java will be smooth, because much Java syntax is based on C/C++
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Anything that can be learned from direct experience can also be learned by indirect or vicarious experience
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Heat treatment changes the structure of the cobalt binder phase and the properties of the WC-Co hardmetals. The higher the cobalt content in the alloy is, the more effective the heat treatment is. The present work has found that the transformation of α-Co to ε-Co can be depressed by quenching the specimens in oil from 1000℃ and hence the transverse rupture strength of these specimens can be increased. During tempering the quenched specimens, new precipitated phases which have dispersion hardening effect on the cobalt binder phase have been observed
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The Present work has found that the transverse rupture strength of WC-Co hardmetals can be improved by queuching heat treatment. The increment of transverse rupture strength (ΔTRS) was dependent on the cobalt content of hardmetal. The higher the cobalt content of hardmetal is, the more the increment of transverse rupture strength is. The main reason is that the transformation of face centered cubic cobalt stabilized at high temperature to hexagonal close packed cobalt can be depressed by quenching. The transformation temperature of hexagonal close packed cobalt binder phase was determined by differential thermal analysis. It was found that the transformation temperature increases with increase of cobalt content of hardmetal. The reason is that the cobalt binder phase of high cobalt hardmetal contains higher tungsten content than that of low cobalt hardmetal after quenching
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High temperature corrosion tests in 75%Na2SO4-25%. NaCl molten salt have been conducted on waspalloy specimens plasma sprayed with Co-Cr-B-Si, Ni-Cr-B-Si-hCr3C2, X-40, X-40 + TiC and Ni/Al + Al2O3 coatings, test coupons were exposed isothermally at 750℃up to 200 h. After the corrosion tests, each sample was examined by OM, SEM and EMPA. It was found that X-40, X-40 + TiC and Ni/Al + Al2O3 were violently corroded by the molten salt due to cracking and spalling of the coatings, whereas Co-Cr-B-Si and Ni-Cr-B-Si + Cr3C2 exhibited superior corrosion resistance, which were thought to be related to the formation of chromium and silicon oxide film. A possible corrosion mechanism had been proposed and it is suggested that the excellent corrosion resistance and high hot-hardness of the two B-Si containing coatings may be of significance for applications in petroleum refining industry as
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在评估现有文献实验相图数据的基础上,采用Calphad技术优化和计算了Be-Cr二元合金体系平衡相图.液相和端际固溶体相采用替换式溶体溶液模型,化学计量比中间化合物CrBe2和CrBe12采用Neumann-Kopp规则描述它们的热力学函数.利用优化所得的热力学参数计算相图,结果能很好地解释大部分实验数据.本工作还采用Miedema模型估算了中间化合物CrBe2和CrBe12的摩尔生成焓,并与热力学计算值比较,所得结果符合良好
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针对TTE (time-triggered Ethernet, TTE) 网络对业务安全性与对业务实时性要求高的问题, 提出了一种自适应双冗余的网络结构, 设计冗余报文的时间标签, 自适应恢复传输, 并设计了TTE网络中的混合流量(TT (time-triggered) 流, RC (rateconstrained) 流, BE (best-effort) 流) 调度规划方法, 根据报文的重要性, 发送端自适应的对网络报文进行分类, 其中, TT信息双网备份传输, RC、BE信息在双网分散传输.此外, 基于确定性网络分析方法, 推导了自适应双冗余调度方法下RC流的闭式延迟界, 并仿真验证了在极限网络、确定网络以及排队论仿真模型下所提方法减小网络延迟的效果, 满足TTE网络在保障业务安全性的情况下对业务实时性的要求
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Motivation: Why data mining? What is data mining? A Multi-Dimensional View of Data Mining What Kinds of Data Can Be Mined? What Kinds of Patterns Can Be Mined? What Kinds of Technologies Are Used? What Kinds of Applications Are Targeted? Major Issues in Data Mining A Brief History of Data Mining and Data Mining Society Summary
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• The devilish details of TCP • TCP connection setup and data transfer • TCP reliability • Be nice to your data • TCP congestion avoidance • Be nice to your routers
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