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high season相关的网络例句

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It analyses the essential factors, structure, environment as well as functions of high-tech corporation system and compares the similarities and differences between high-tech corporation system and traditional corporation system; it analyses characteristics in each stage of high-tech corporation lifecycle as well as management roots which lead to the declination of high-tech corporation and researches into the similarities and differences between high-tech corporation lifecycle and other lifecycles, including traditional corporation lifecycle, industry lifecycle, product lifecycle and ecology lifecycle; it studies functional coupling in each stage of high-tech corporation lifecycle and puts forward ways to realize internal coupling of high-tech corporation system and external environment coupling; based on fundamental concepts of dissipative structure, it summarizes six inherent laws of system evolution and on the basis of those laws it advances six principles of high-tech corporation lifecycle management, it poses four sequential parameters of high-tech corporation system, analyses coordination and competition between them and then it advanced four principles of high-tech corporation management; it researches into various cycles in high-tech corporation and puts forward five measures of high-tech corporation management from the point of hypercycle theory; it studies the relations between carious innovation of high-tech corporation innovation system and sets up models of innovation motive forces and resistances, after that it analyses the alternation laws of innovation motive forces and resistances in each stage of high-tech corporation lifecycle, puts forward some measures to strengthen motive forces and lessen resistances and then from the angle of dissipative structure theory, it researches into relevant questions of high-tech corporation innovation management; it studies the location, identification, cultivation, cultivation and protection of high-tech corporation core competence and researches into the key elements of core competence management in each stage of lifecycle and then from the angle of synergetic, it discusses several questions of high-tech corporation core competence management; it studies seven common characteristics of successful high-tech corporation culture and puts forward the ways and measures to cultivate and innovate high-tech corporation culture after that it researches into the characteristics of corporation culture in each stage of lifecycle and discusses relevant questions of high-tech corporation culture management from the point of hypercycle theory; it studies interplay of high-tech corporation system and environment and researches into the development and management of high-tech corporation ecology system after that it analyses the construction and disintegration of high-tech corporation strategic alliance.

剖析了高新技术企业系统的要素、结构、环境与功能,比较了高新技术企业系统与一般企业系统的异同;剖析了高新技术企业在生命周期各阶段的特点及衰退的管理根源,探讨了高新技术企业生命周期与一般企业生命周期、产业生命周期,产品生命周期和生物生命周期的异同;研究了高新技术企业生命周期各阶段的功能耦合,提出了实现高新技术企业系统内部耦合及系统与外部环境耦合的途径;以耗散结构理论的基本概念为基础,总结归纳出系统演化的六大内在规律,据此提出了高新技术企业生命周期管理的六个原则;提出了高新技术企业系统的四个序参量,剖析了生命周期各阶段序参量的协同与竞争,进而提出了高新技术企业管理的四大原则;研究了高新技术企业中的各种循环,从超循环理论的角度提出了高新技术企业管理的五大措施;研究了高新技术企业创新系统中各种创新的关系,建立了创新动力和创新阻力模型,剖析了生命周期各阶段创新动力与阻力的变化规律,提出了增强创新动力与减小创新阻力的措施,从耗散结构理论的角度研究了高新技术企业创新管理的相关问题;研究了高新技术企业核心竞争力的定位、识别、培养及保护,剖析了生命周期各阶段核心竞争力管理的要点,从协同理论的角度研究了高新技术企业的核心竞争力管理的几个问题;剖析了成功的高新技术企业文化的七个共同特点,提出了培养和创新高新技术企业文化的途径及措施,研究了生命周期各阶段企业文化的特征,从超循环理论的角度探讨了高新技术企业文化管理的相关问题;研究了高新技术企业系统与环境的交互作用,探讨了高新技术企业生态系统的开拓与管理,剖析了高新技术企业战略联盟的组建与解体。

Itanalyses the essential factors, structure, environment as well as functions of high-techcorporation system and compares the similarities and differences between high-tech corporationsystem and traditional corporation system; it analyses characteristics in each stage of-high-techcorporation lifecycle as well as management roots which lead to the declination of high-techcorporation and researches into the similarities and differences between high-tech corporationlifecycle and other lifecycles, including traditional corporation lifecycle, industry lifecycle,product lifecycle and ecology lifecycle; it studies functional coupling in each stage of high-techcorporation lifecycle and puts forward ways to realize internal coupling of high-tech corporationsystem and external environment coupling; based on fundamental concepts of dissipativestructure, it summarizes six inherent laws of system evolution and on the basis of those laws itadvances six principles of high-tech corporation lifecycle management; it poses four sequentialparameters of high-tech corporation system, analyses coordinfition and competition between themand then it advanced four principles of high-tech corporation management; it researches intovarious cycles in high-tech corporation and puts forward five measures of high-tech corporationmanagement from the point of hypercycle theory; it studies the relations between cariousinnovation of high-tech corporation innovation system and sets up models of innovation motiveforces and resistances, after that it analyses the alternation laws of innovation motive forces andresistances in each stage of high-tech corporation lifecycle, puts forward some measures tostrengthen motive forces and lessen resistances and then from the angle of dissipative structuretheory, it researches into relevant questions of high-tech corporation innovation management; itstudies the location, identification, cultivation, cultivation and protection of high-tech corporationcore competence and researches into the key elements of core competence management in eachstage of lifecycle and then from the angle of synergetic, it discusses several questions ofhigh-tech corporation core competence management; it studies seven common characteristics ofsuccessful high-tech corporation culture and puts forward the ways and measures to cultivate andinnovate high-tech corporation culture after that it researches into the characteristics ofcorporation culture in each stage of lifecycle and discusses relevant questions of high-techcorporation culture management from the point of hypercycle theory;' it studies interplay ofhigh-tech corporation system and environment and researches into the development andmanagement of high-tech corporation ecology system after that it analyses the construction anddisintegration of high4ech corporation strategic alliance.

剖析了高新技术企业系统的要素、结构、环境与功能,比较了高新技术企业系统与一般企业系统的异同;剖析了高新技术企业在生命周期各阶段的特点及衰退的管理根源,探讨了高新技术企业生命周期与一般企业生命周期、产业生命周期,产品生命周期和生物生命周期的异同;研究了高新技术企业生命周期各阶段的功能耦合,提出了实现高新技术企业系统内部耦合及系统与外部环境耦合的途径:以耗散结构理论的基本概念为基础,总结归纳出系统演化的六大内在规律,据此提出了高新技术企业生命周期管理的六个原则;提出了高新技术企业系统的四个序参量,剖析了生命周期各阶段序参量的协同与竞争,进而提出了高新技术企业管理的四大原则;研究了高新技术企业中的各种循环,从超循环理论的角度提出了高新技术企业管理的五大措施;研究了高新技术企业创新系统中各种创新的关系,建立了创新动力和创新阻力模型,剖析了生命周期各阶段创新动力与阻力的变化规律,提出了增强创新动力与减小创新阻力的措施,从耗散结构理论的角度研究了高新技术企业创新管理的相关问题;研究了高新技术企业核心竞争力的定位、识别、培养及保护,剖析了生命周期各阶段核心竞争力管理的要点,从协同理论的角度研究了高新技术企业的核心竞争力管理的几个问题;剖析了成功的高新技术企业文化的七个共同特点,提出了培养和创新高新技术企业文化的途径及措施,研究了生命周期各阶段企业文化的特征,从超循环理论的角度探讨了高新技术企业文化管理的相关问题;研究了高新技术企业系统与环境的交互作用,探讨了高新技术企业生态系统的开拓与管理,剖析了高新技术企业战略联盟的组建与解体。

Compared to wet season, arsenic is difficult to mobile in dry season. Attenuation constant in dry season is 0.3082(1/km), but it is 0.0569(1/km)in wet season. If initial concentration of As was 500μg/L without other contamination source in down stream, arsenic would deceased to 50μg/L in down stream 7.5km in dry season but 40km in down stream 40km. As is dominate species in river running throμgh mining area.

砷在枯水期较丰水期难以迁移,通过计算得到,在枯水期砷的衰减系数K值为0.3082(1/km),而在丰水期为0.0569(1/km);在污染口浓度达到500μg/L时,下游没有其它的砷的污染源(或会影响砷衰减的其它污染源)时,枯水期砷会在下游7.5km之后浓度降到50μg/L,而丰水期则要在下游40km之后才能降到同样的值,所以在丰水期砷污染的影响的流域更广。

The results were as follow: At fine, cloudlet and cloud weather in rainy season,the mean value of CO 2 content varied in a range of 349 to 350ml/m\+3 at 2.8m above the canopy, 346 to 348ml/m\+3 at 0.8m above the canopy, 345 to 349ml/m\+3 at 16m inner the forest and 352 to 357ml/m\+3 at 5m above ground in the period from 9:00 to 18:00.The CO 2 content in rainy season was lower than that in dry season. At the same weather and space-time, CO 2 content in rainy season was higher than that of CO 2 in dry season at both day and night. According to the grads calculation, there were the CO 2 flux from atmosphere to canopy with 0.61×10 -6 and 0.71×10 -6kg/(m 2·s) during day time in dry and rainy seasons respectively.

采用梯度法及CI-301PS CO2系统,实现了海南尖峰岭热带山地雨林近冠层CO 2、微气象因子梯度观测研究,结果表明:雨季晴、晴间少云及多云天气,9:00~18:00CO 2浓度平均值分别在349~350ml/m3(冠上2.8m)、346~348ml/m3(冠上0.8m)、345~349ml/m3(林内16m)、352~357ml/m3(林内5m),较旱季相应天气分别小14~17.5、10.1~23.7、1 6.4~35.7和18.1~36.1ml/m3;1:00~8:00,则雨季CO2浓度大于旱季;梯度浓度廓变量和实时动力计算反映出,8:00~18:00CO2通量由大气向林冠层,旱、雨季平均CO2通量分别为0.61×10-6kg/(m2·s和0.71×10-6kg/(m 2·s),19:00通量甚微,20:00~7:00CO2通量则由林冠向大气,平均CO2通量分别为0.36×10-6kg/(m2·s)和0.32×10-6kg/(m2·s);雨季昼夜大气流向冠层的净CO2通量是相应旱季的1.56倍。

Namely, the first, the beginning, end and length of growing season of every type of vegetation is estimated with threshold method and moving average method, and the beginning end and length of growing season of vegetation from 1982 to 1999 is fitted linearly, finally, linear trend of the beginning end and length of growing season of vegetation is analyzed. The second, phenological phase in different years and zones is estimated based on greatest changes of slope method and EOF analysis method, and the result monitored by the two methods is compared, as a result, trend of growing season change from 1982 to 1999 in different latitude zones is better acquired. The third, phenological phase of vegetation in different spatial location from 1982 to 1999 is fitted based on curve. Then, spatial difference rules of growing season of every year and average of multi-year is discussed in article. In the end, lag correlation and linear regress are used to study relation between phenological phase of different types of vegetation, different latitude zones, different spatial places and climate changes.

利用阈值法和滑动平均法逐年估测了每种植被类型的生长季的开始、结束日期及长度;对18年中植被生长季的开始、结束时间和长度进行一次线性拟合,分析了植被生长季的开始、结束日期和长度的线性变化趋势;基于最大变化斜率法和EOF分析法估计了不同年份、不同区域内植被生长季的开始、结束时间及其长度,并对这两种方法的监测结果作了比较,从而得到了较好的不同纬度区域1982~1999年植被生长季的变化趋势;基于曲线拟合了1982~1999年的不同空间位置的植被物候期,然后讨论了每年和多年平均的植被生长季的空间分异规律;最后利用时滞相关分析和线性回归研究了不同类型植被的物候期与气候变化的相互关系,不同纬度带的植被物候期与气候变化的相互关系,植被物候期与气候变化空间相互关系。

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昨天傍晚游泳池很多人。有一位穿棕色泳裤的Uncle(从远处看到会以为他没穿裤)一下水,见我坐在泳池的角落(我必须等别人先游走才能游)就说:&喂,游啦,你坐在那边做麽?呐,游他的旁边啊,他游很慢的。&过一阵子,他突然向我喊&Hello, hello,你叫什麽名?&。。。

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In the qualitative and quantitative analyses, four kinds of methods such as cause analysis, vector statistics, fuzzy analysis and systematic cluster were synthesized and the applicability of them analyzed. Finally, in combination with the hydrometeorological characteristic of the north slope climatic zone of Tian Mountain and the operation of the reservoir, the flood season range are divided: 10 July 30 July flood season as main flood season and 1 August 15 August as later flood season. The result?

针对高山冰川作用下流域水库汛期分期的实际问题,以玛纳斯河流域夹河子水库为研究对象,识别汛期划分的主要影响因素,选择汛期划分依据,采用定性和定量分析相结合的方式,综合成因数理统计、矢量统计、模糊分析、系统聚类4种汛期分期方法,分析各种方法适用性,提取合理成分,结合天山北坡气候带的水文气象特征和水库控制运用特点,确定汛期范围:7月10日至7月30日为前汛期, 8月1日至8月15日为后汛期。

Martin scored a season-high 37 points on January 3 at Fort Wayne and recorded his lone double-double of the season with 31 points and a season-high 11 rebounds on January 27 against Tulsa.

马丁得到赛季最高的37分, 1月3日在韦恩堡和记录了他唯一的双本赛季的31分和赛季最高的11个篮板, 1月27日对塔尔萨。

With a 27-14 record at the halfway point in the season, the Lakers currently sit in the sixth spot in the Western Conference, but have proved throughout the season's second quarter that they belong in the discussion of elite teams when at full strength. Kobe Bryant's superior all-around play has continued to spark the Lakers' high-octane attack, followed closely by Andrew Bynum's no longer 'secret' potential. We're approaching award season in L.A. so once again, Lakers.com divvies out its midseason awards.

带着27胜14负的战绩,湖人结束了上半个赛季的征程,湖人目前在西部稳居第六,尤其是湖人在上半季的后半程打出了令人惊心动魄的精彩的充满活力的团队篮球,这一点已经毋庸置疑了,科比用他接近全能的表现带动了整个湖人的激情,加上拜纳姆本赛季的异军突起,湖人打出了高效率的甚至可以说是恐怖的攻击篮球,我们在赛季中期对湖人队员做一个整体的评价。

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