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heavy responsibility相关的网络例句

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The company leads the product each automobile spider gear, the heavy automobile gear, all type forging, dead axle, the host reduces always becomes and so on each kind of automobile fitting, because supplied goods promptly, the quality is reliable, the price is moderate, the service is thorough once many times attains the Chinese heavy steam, the Hunan automobile vehicle bridge factory, the Chongqing heavy steam, the Shaanxi heavy steam, the Anhui peaceful triumphant Fukuda dawn vehicle bridge company and so on the domestic each big motor pool, always installs the factory "the outstanding supplier""the AA level supplier","the outstanding necessary unit" and so on the title.

长风公司主导产品各型汽车弧锥齿轮、重型汽车齿轮、和型锻件、转向节、主减总成等各种汽车配件,因供货及时、质量可靠、价格适中、服务周到曾多次获中国重汽、湖南汽车车桥厂、重庆重汽、陕西重汽、安徽安凯福田曙光车桥公司等国内各大汽车厂、总装厂"优秀供应商"、"AA级供方"、"优秀配套单位"等称号。

Breakthrough Artillery Corps 18 Breakthrough Artillery Division (65 Light Artillery Brigade, 58 Howitzer Brigade, 3, 80 Heavy Howitzer Brigade, 120 super heavy Howitzer Brigade, 42 Mortar Brigade), 23 Breakthrough Artillery Division (79 Light Artillery Brigade, 38 Howitzer Brigade, 2, 96 Heavy Howitzer Brigade, 21Guards Super-heavy Howitzer Brigade, 28 Mortar Brigade), 1 Guards Mortar Division 2, 5, 6 Guards Mortar Brigade (rocket launchers, 85 Corps Artillery Regiment, 330 Superior power Separate Artillery Battalion, 1, 8 Separate Artillery Observation Balloon Battalion, 785 Antiaircraft Artillery Regiment, 11 Guards. Separate Antiaircraft Artillery Battalion

第8步兵军(第7﹑249步兵师),第43步兵军(第80﹑124步兵师),第125步兵师,第22筑垒地域,第132独立火炮机枪营,第3突击炮兵军第18突击炮兵师(第95轻型炮兵旅,第58榴弹炮旅,第3﹑80重型榴弹炮旅,第120超重型榴弹炮旅,第42迫击炮旅),第23突击炮兵师(第79轻型炮兵旅,第38榴弹炮旅,第2﹑96重型榴弹炮旅,第21近卫超重型榴弹炮旅,第28迫击炮旅),第1近卫迫击炮师2﹑5﹑6近卫迫击炮旅,第85军属炮兵团,第330独立超大威力炮兵营,第1﹑8独立炮兵观测气球营,第785防空炮团,第11近卫独立防空炮营,第1﹑152﹑220坦克旅,第26﹑31近卫独立坦克团,第45﹑185﹑221﹑222独立坦克团,第1294﹑1495自行火炮团,第283独立特殊任务摩托化步兵营,第1﹑3独立坦克营,第4﹑32﹑48﹑50独立装甲列车营,第2摩托化工兵旅,第5重型舟桥团,第34﹑67独立工兵营,第21﹑36﹑42﹑62﹑159舟桥营,第9独立喷火营

Breakthrough Artillery Corps 18 Breakthrough Artillery Division (65 Light Artillery Brigade, 58 Howitzer Brigade, 3, 80 Heavy Howitzer Brigade, 120 super heavy Howitzer Brigade, 42 Mortar Brigade), 23 Breakthrough Artillery Division (79 Light Artillery Brigade, 38 Howitzer Brigade, 2, 96 Heavy Howitzer Brigade, 21Guards Super-heavy Howitzer Brigade, 28 Mortar Brigade), 1 Guards Mortar Division 2, 5, 6 Guards Mortar Brigade (rocket launchers, 85 Corps Artillery Regiment, 330 Superior power Separate Artillery Battalion, 1, 8 Separate Artillery Observation Balloon Battalion, 785 Antiaircraft Artillery Regiment, 11 Guards. Separate Antiaircraft Artillery Battalion cD2Ei6q

第8步兵军(第7﹑249步兵师),第43步兵军(第80﹑124步兵师),第125步兵师,第22筑垒地域,第132独立火炮机枪营,第3突击炮兵军第18突击炮兵师(第95轻型炮兵旅,第58榴弹炮旅,第3﹑80重型榴弹炮旅,第120超重型榴弹炮旅,第42迫击炮旅),第23突击炮兵师(第79轻型炮兵旅,第38榴弹炮旅,第2﹑96重型榴弹炮旅,第21近卫超重型榴弹炮旅,第28迫击炮旅),第1近卫迫击炮师(2﹑5﹑6近卫迫击炮旅),第85军属炮兵团,第330独立超大威力炮兵营,第1﹑8独立炮兵观测气球营,第785防空炮团,第11近卫独立防空炮营,第1﹑152﹑220坦克旅,第26﹑31近卫独立坦克团,第45﹑185﹑221﹑222独立坦克团,第1294﹑1495自行火炮团,第283独立特殊任务摩托化步兵营,第1﹑3独立坦克营,第4﹑32﹑48﹑50独立装甲列车营,第2摩托化工兵旅,第5重型舟桥团,第34﹑67独立工兵营,第21﹑36﹑42﹑62﹑159舟桥营,第9独立喷火营 Ui: c

Breakthrough Artillery Corps 18 Breakthrough Artillery Division (65 Light Artillery Brigade, 58 Howitzer Brigade, 3, 80 Heavy Howitzer Brigade, 120 super heavy Howitzer Brigade, 42 Mortar Brigade), 23 Breakthrough Artillery Division (79 Light Artillery Brigade, 38 Howitzer Brigade, 2, 96 Heavy Howitzer Brigade, 21Guards Super-heavy Howitzer Brigade, 28 Mortar Brigade), 1 Guards Mortar Division 2, 5, 6 Guards Mortar Brigade (rocket launchers, 85 Corps Artillery Regiment, 330 Superior power Separate Artillery Battalion, 1, 8 Separate Artillery Observation Balloon Battalion, 785 Antiaircraft Artillery Regiment, 11 Guards. Separate Antiaircraft Artillery Battalion gk%#'?B

第8步兵军(第7﹑249步兵师),第43步兵军(第80﹑124步兵师),第125步兵师,第22筑垒地域,第132独立火炮机枪营,第3突击炮兵军第18突击炮兵师(第95轻型炮兵旅,第58榴弹炮旅,第3﹑80重型榴弹炮旅,第120超重型榴弹炮旅,第42迫击炮旅),第23突击炮兵师(第79轻型炮兵旅,第38榴弹炮旅,第2﹑96重型榴弹炮旅,第21近卫超重型榴弹炮旅,第28迫击炮旅),第1近卫迫击炮师(2﹑5﹑6近卫迫击炮旅),第85军属炮兵团,第330独立超大威力炮兵营,第1﹑8独立炮兵观测气球营,第785防空炮团,第11近卫独立防空炮营,第1﹑152﹑220坦克旅,第26﹑31近卫独立坦克团,第45﹑185﹑221﹑222独立坦克团,第1294﹑1495自行火炮团,第283独立特殊任务摩托化步兵营,第1﹑3独立坦克营,第4﹑32﹑48﹑50独立装甲列车营,第2摩托化工兵旅,第5重型舟桥团,第34﹑67独立工兵营,第21﹑36﹑42﹑62﹑159舟桥营,第9独立喷火营 _~jraV?

Chemometric method were used to analyze UV spectrum of TCAS-heavy metal complex, pure UV spectrum of TCAS-heavy metal complex and TCAS-heavy metal complex distribution curves toward concentration of heavy metals in solution were gained. Finally, complex constants of TCAS towards Cu, Zn, Cd and Pb were got to be 9.79、8.72、6.87 and 5.00, respectively.

采用化学计量学分析TCAS络合重金属的紫外光谱,获得了TCAS-重金属络合物的纯紫外光谱,以及TCAS、TCAS-重金属络合物随重金属浓度变化的分布曲线,并最终解析得到TCAS与Cu、Zn、Cd和Pb的络合常数分别为9.79、8.72、6.87和5.00。

Through the researches on the grain distributions of useless solid and heavy loader and sene investigation and study about the grain distribution of heavy loader,and combined with settlement analysis of useless solid and heavy loader in centrifuge,we determined the best seperation point of heavy loader and compiled relevant programs to get the technical prameteter .

根据钻井液中固相颗粒与加重材料的粒度分布,以及对加重材料的粒度分布的现场调研,结合有害固相与加重材料在离心机中的沉降分析,得出适合回收加重材料的工作粒度点,编写相应程序计算出技术参数表。

At the heavy metal concentration of 3-4ppm, our study on adsorption capacity, adsorption selectivity of montmorillonite, illite and kaolinite to Cu〓、 Pb〓、 Zn〓、 Cd〓、 Cr〓 shows that the adsorption capacity is mainly determined by the capacity of exchangeable cations and the adsorption capacity of the three clay minerals decreases in this sequence: montmorillonite >> illite>kaolinite. It is found that clay minerals have obvious adsorption selectivity to various heavy metals. Montmorillonite exhibits a stronger affinity to Cr〓 and Cu〓 while kaolinite and illite sorb Cr〓 and Pb〓 more effectively. At the same heavy metal concentration, adsorption amount of clay minerals to heavy metals increase with increasing pH value of the solution.

在痕量浓度下,研究了蒙脱石、伊利石、高岭石三种粘土矿物对Cu〓、Pb〓、Zn〓、Cd〓、Cr〓五种重金属离子的吸附容量、吸附选择性及其介质条件对吸附量的影响,结果表明,粘土矿物的阳离子交换容量越大,对重金属离子的吸附容量也越大,其大小顺序为蒙脱石>>伊利石>高岭石;同时,不同粘土矿物对重金属离子具有明显的吸附选择性,蒙脱石对Cr〓和Cu〓有较好的选择性,伊利石和高岭石则对Cr〓和Pb〓有较好的选择性;随着吸附溶液pH值的增大,其吸附量有增加的趋势。

The research is about the reuse of urban sewage for virescence irrigation, and the influence of sewage irrigation on eco-environment such as soil, plant, etc. is studied. Under the condition of field sewage irrigation, the transport and transformation and accumulation mechanism of heavy metals, nutrients and organic pollutants as vaporizable hydroxybenzene etc. in the soil-plant system are analyzed. The heavy metal pollution is evaluated by the comprehensive pollution index. The spatial variability of heavy metals in sewage irrigation area is further understood. The spatial variability of heavy metals and physical and chemical properties of soil are reflected in a more straight way by the theory model of variance function curve based on the geographical information system.

在城市污水回用于绿化灌溉对土壤、植物等生态环境的影响研究中分析了大田条件下污灌对土壤-植物体系中重金属、养分及挥发酚等有机污染物迁移转化及富集机理,对重金属污染进行了综合污染指数评价,进一步了解了污灌区重金属分布的空间异质性,基于地理信息系统提出了变异函数曲线的理论模型,更直观地反映出了重金属元素与土壤理化参数的空间变异特征。

General analysis indicates that Myriophyllum spicatum L.Panicle shape of the absorption of chromium Cr6 + concentration and treatment exist between the concentration of significant positive correlation with Myriophyllum spicatum L.can pollute the environment in better enrichment of chromium, the background environment The higher concentration levels of heavy metals, plant accumulation of heavy metals in higher concentration levels, the application of plant technology for the repair of heavy metal pollution on the environment to provide a scientific basis on Myriophyllum spicatum L. of heavy metal pollution of wetland restoration has great potential.

综合分析表明,在一定范围内,穗状狐尾藻对铬Cr6+的吸收富集含量随处理浓度升高而增大,说明穗状狐尾藻在污染环境中能较好地富集重金属铬,从而得出在一定范围内,环境背景中重金属含量水平越高植物富集重金属的含量水平也越高的结论,这就为应用植物技术修复重金属对环境造成的污染提供科学依据,而穗状狐尾藻对湿地重金属污染具有较大的修复潜力。

Aiming at local hydrological feature, the problem of transport and transformation of heavy metal in river network regions through mathematical modeling at the first time. Establishing modeling of heavy metal transport and transformation, dissolved heavy metal was the main research goal and the synthetically sedimentation coefficient was imported to investigate the migration of heavy metal between aquatic phase and sedimental phase.

针对区域水文特点,首次采用数学模拟的方式对平原河网地区的重金属迁移转化问题进行研究;建立重金属迁移转化模型,以溶解态重金属为主要研究对象,通过引入综合沉降系数分析重金属水相和沉积相之间的相互迁移过程。

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Bullets
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推荐网络例句

No, it's unnecessary. I don't think I have a fever.

不,没有必要,我想我没有发烧。

We live in a culture of instant gratification.

我们生活在即时满足的文化中。

Had he the power,he would efface the civilizations of the human race!

假如他拥有权力,他会抹杀人类的文明!