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171.
通过对国内新型水泥干法窑筒体腐蚀现象分析及实验室的模拟实验,认为,硫、氯、碱是筒体腐蚀的主要因素,进行筒体涂层,可以抑制筒体腐蚀。  相似文献   
172.
春秋战国时期兵书中的军事地理思想   总被引:1,自引:0,他引:1  
中国古代,以春秋战国时期的军事地理思想最为活跃,并对后世产生了巨大影响。该文通过对这一时期主要兵书中对”地”的军事意义,特别是地形在战争中作用等方面的论述,探讨了春秋战国时期军事地理思想的主要内容。  相似文献   
173.
探讨了非线性系统的结构稳定性、分叉点和鲁棒性之间的关系,提出了一种分析非线性系统鲁棒稳定性的方法,并给出了相应的计算实例.  相似文献   
174.
综合论述了水泥稳定土的定义及其强度形成的原理,从理论上分析了水泥稳定土的特点以及所用各种原材料对其强度形成及施工过程的影响。  相似文献   
175.
To develop a gene therapy strategy for treating bovine mastitis, a new mammary-specific vector containing human lysozyme (hLYZ) cDNA and kanamycin resistance gene was constructed for intramammary expression and clinical studies. After one time acupuncture or intracisternal infusion of healthy cows with 400 μg of the p215C3LYZ vector, over 2.0 μg/ml of rhLYZ could be detected by enzymatic assay for about 3 weeks in the milk samples. Western blotting showed that rhLYZ secreted into milk samples from the vector-injected cows had molecular weight similar to that of the natural hLYZ in human colostrums. Twenty days after the primary injection, the quarters were re-injected with the same vector by quarter acupuncture and even higher concentrations of rhLYZ could be detected. Indirect competitive ELISA of milk samples showed that the vector injection did not induce detectable humoral immune response against hLYZ. Clinical studies showed that twice acupuncture of quarters with the p215C3LYZ vector had overt therapeutic effect on clinical and subclinical mastitis previously treated with antibiotics, including disappearance of clinical symptoms and relatively high microbiological cure rates. These data provide a solid rationale for using the vector to develop gene therapy for treating bovine mastitis.  相似文献   
176.
从经济学角度来讲,线性经济模式把自然环境当做是为了实现自身利益而自由开采和利用的资源,使得我们对自己的经济决策所造成的环境后果不需要负责。越来越多的企业开始转变生产和营销模式,本文在批判线性经济模式的基础上分析了服装企业网络营销的渠道建设,并建立了相关的生态链。  相似文献   
177.
高水平大学生足球运动员运动损伤的调查与分析   总被引:4,自引:0,他引:4  
通过对参加2004-2005飞利浦中国大学生足球联赛南区决赛的156名高水平大学生足球运动员进行调查研究,对其运动损伤的特征、易发部位及原因进行了分析,并提出了相应的预防措施,以增强大学生足球运动员的防伤病意识,从而更好的促进高校足球运动的发展。  相似文献   
178.
We consider a risk model with a premium rate which varies with the level of free reserves. In this model, the occurrence of claims is described by a Cox process with Markov intensity process, and the influence of stochastic factors is considered by adding a diffusion process. The integro-differential equation for the ruin probability is derived by a infinitesimal method.  相似文献   
179.
浅析电机节能降耗改进方法   总被引:1,自引:0,他引:1  
张书姣 《山西科技》2004,(2):72-72,74
文章介绍了几种对矿山机电设备常用电机进行技术改造的方法,实现了节能降耗,降低成本的目的,对企业具有一定的经济价值。  相似文献   
180.
In the 1687 Principia, Newton gave a solution to the direct problem (given the orbit and center of force, find the central force) for a conic-section with a focal center of force (answer: a reciprocal square force) and for a spiral orbit with a polar center of force (answer: a reciprocal cube force). He did not, however, give solutions for the two corresponding inverse problems (given the force and center of force, find the orbit). He gave a cryptic solution to the inverse problem of a reciprocal cube force, but offered no solution for the reciprocal square force. Some take this omission as an indication that Newton could not solve the reciprocal square, for, they ask, why else would he not select this important problem? Others claim that ``it is child's play' for him, as evidenced by his 1671 catalogue of quadratures (tables of integrals). The answer to that question is obscured for all who attempt to work through Newton's published solution of the reciprocal cube force because it is done in the synthetic geometric style of the 1687 Principia rather than in the analytic algebraic style that Newton employed until 1671. In response to a request from David Gregory in 1694, however, Newton produced an analytic version of the body of the proof, but one which still had a geometric conclusion. Newton's charge is to find both ``the orbit' and ``the time in orbit.' In the determination of the dependence of the time on orbital position, t(r), Newton evaluated an integral of the form ∫dx/x n to calculate a finite algebraic equation for the area swept out as a function of the radius, but he did not write out the analytic expression for time t = t(r), even though he knew that the time t is proportional to that area. In the determination of the orbit, θ (r), Newton obtained an integral of the form ∫dx/√(1−x2) for the area that is proportional to the angle θ, an integral he had shown in his 1669 On Analysis by Infinite Equations to be equal to the arcsin(x). Since the solution must therefore contain a transcendental function, he knew that a finite algebraic solution for θ=θ(r) did not exist for ``the orbit' as it had for ``the time in orbit.' In contrast to these two solutions for the inverse cube force, however, it is not possible in the inverse square solution to generate a finite algebraic expression for either ``the orbit' or ``the time in orbit.' In fact, in Lemma 28, Newton offers a demonstration that the area of an ellipse cannot be given by a finite equation. I claim that the limitation of Lemma 28 forces Newton to reject the inverse square force as an example and to choose instead the reciprocal cube force as his example in Proposition 41. (Received August 14, 2002) Published online March 26, 2003 Communicated by G. Smith  相似文献   
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