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51.
空客军用飞机公司即将启动A400M计划,可供选择的发动机有两种,一是欧洲国际涡桨发动机公司将要研制的TP400—D6涡桨发动机,另一种是普惠加拿大公司将要研制的PW180发动机。PW180将以PW800涡扇发动机为基础研制,究竟选用哪种发动机,近期将做出决定  相似文献   
52.
The technology of automatic carbon tape laying for structural composite parts is introduced. The most effective form of automatic carbon tape laying technology is presented with emphasis.  相似文献   
53.
宏观流动到微流动不单是"量"的变化,而且有"质"的不同[1].在微流动中,由于微尺度效应,主导流动的作用力发生变化,惯性力不再占主导地位;在宏观尺度流动中可以忽略的表面效应和壁面滑移等现象,开始凸现出来,这就导致了微流动中出现了与宏观流动不同的现象和规律.本文研究微流动问题中的若干微尺度效应:包括微喷管中气体流动的特性、微槽道中的稀薄气体效应和分子泵内的流动问题.这些研究对于设计和开发新的微机械机电设备是非常重要的.  相似文献   
54.
Loison A  Dubant S  Adam P  Albrecht P 《Astrobiology》2010,10(10):973-988
Laboratory experiments carried out under plausible prebiotic conditions (under conditions that might have occurred at primitive deep-sea hydrothermal vents) in water and involving constituents that occur in the vicinity of submarine hydrothermal vents (e.g., CO, H(2)S, NiS) have disclosed an iterative Ni-catalyzed pathway of C-C bond formation. This pathway leads from CO to various organic molecules that comprise, notably, thiols, alkylmono- and disulfides, carboxylic acids, and related thioesters containing up to four carbon atoms. Furthermore, similar experiments with organic compounds containing various functionalities, such as thiols, carboxylic acids, thioesters, and alcohols, gave clues to the mechanisms of this novel synthetic process in which reduced metal species, in particular Ni(0), appear to be the key catalysts. Moreover, the formation of aldehydes (and ketones) as labile intermediates via a hydroformylation-related process proved to be at the core of the chain elongation process. Since this process can potentially lead to organic compounds with any chain length, it could have played a significant role in the prebiotic formation of lipidic amphiphilic molecules such as fatty acids, potential precursors of membrane constituents.  相似文献   
55.
The survival of microorganisms over extended time frames in frozen subsurface environments may be limited by chemical (i.e., via hydrolysis and oxidation) and ionizing radiation-induced damage to chromosomal DNA. In an effort to improve estimates for the survival of bacteria in icy terrestrial and extraterrestrial environments, we determined rates of macromolecular synthesis at temperatures down to -15°C in bacteria isolated from Siberian permafrost (Psychrobacter cryohalolentis K5 and P. arcticus 273-4) and the sensitivity of P. cryohalolentis to ionizing radiation. Based on experiments conducted over ≈400 days at -15°C, the rates of protein and DNA synthesis in P. cryohalolentis were <1 to 16 proteins cell(-1) d(-1) and 83 to 150 base pairs (bp) cell(-1) d(-1), respectively; P. arcticus synthesized DNA at rates of 20 to 1625?bp cell(-1) d(-1) at -15°C under the conditions tested. The dose of ionizing radiation at which 37% of the cells survive (D(37)) of frozen suspensions of P. cryohalolentis was 136?Gy, which was ~2-fold higher (71?Gy) than identical samples exposed as liquid suspensions. Laboratory measurements of [(3)H]thymidine incorporation demonstrate the physiological potential for DNA metabolism at -15°C and suggest a sufficient activity is possible to offset chromosomal damage incurred in near-subsurface terrestrial and martian permafrost. Thus, our data imply that the longevity of microorganisms actively metabolizing within permafrost environments is not constrained by chromosomal DNA damage resulting from ionizing radiation or entropic degradation over geological time.  相似文献   
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