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1.
Effects of Heat Resistance and Internal Irreversibility on the Performance of Closed Regenerated Brayton Heat Pump Cycles
热阻和内不可逆性对闭式回热式布雷顿热泵循环性能的影响
2.
Power Density Performance of an Irreversible Brayton Cycle Coupled to Constant-temperature Heat Reservoirs
恒温热源条件下内不可逆布雷顿循环的功率密度特性
3.
Irreversible loss analysis of heat transfer in helical tube
螺旋管内传热过程的不可逆损失分析
4.
impossible to reverse or be reversed.
不能倒逆或不可逆转。
5.
Influence of Multi-irreversibilities on the Performance of a Miller Heat Engine
多种不可逆性对Miller热机性能的影响
6.
Study on the the relative cerebral blood volume of reversibly and irreversibly damaged region in acute cerebral infarction in the rabbit
兔急性脑梗死可逆/不可逆性损伤区的相对脑血流容积
7.
Kinetic Studies on the Protection of Enzyme Activity by Substrate During Irreversible Modification
酶活性不可逆改变的底物保护动力学
8.
Optimal Analysis on the Performance of Two Kinds of Irreversible Refrigeration Cycles;
两种不可逆制冷循环性能的优化分析
9.
The Performance Optimization of a Generalized Irreversible Braysson Heat Engine
广义不可逆Braysson热机的性能优化
10.
Performance Optimization of a Generalized Irreversible Miller Heat Engine Cycle
广义不可逆Miller热机循环的性能优化
11.
(logic) an attribute of a logical system that is so constituted that none of the propositions deducible from the axioms contradict one another.
(逻辑用语)内部所有的命题都不具有可逆性一个逻辑系统所具有的属性。
12.
On the meaning of time for education:an irreversibility perspective;
论教育的时间内涵——时间不可逆的教育意义
13.
Discussion on the Uncertainty and Irreversibility for Rural-Urban Land Conversion
农地城市流转中的不确定性与不可逆性探讨
14.
Performance Comparison forEndoreversible Carnot and Brayton Heat Pumps Ⅰ. Steady Flow Cycles with Infinite Reservoirs
内可逆卡诺和布雷顿热泵循环性能比较
15.
Power and efficiency characteristic for an endoreversible closed intercooled regenerated Brayton cycle
内可逆闭式中冷回热布雷顿循环功率效率特性
16.
Study on the Reliability of Calculating Joint inside Force in Inverse Dynamics;
应用逆向动力学计算关节内力的可靠性分析
17.
ECOLOGICAL OPTIMAL PERFORMANCE OF ENDOREVERSIBLE FOUR-HEAT-RESERVOIR ABSORPTION REFRIGERATOR
内可逆四热源吸收式制冷机生态学最优性能
18.
The special dislike for latency and irreversibility is explained by the fact that latency frustrates knowledge and irreversibility frustrates control;
特别厌恶风险的延期性和不可逆转性,其原因就是延期性使知识无奈,不可逆转性使控制失策;