1.
On the Existence of Rational Cognitive Ability and Non Rational Cognitive Ability;
理性认识能力与非理性认识能力是否存在等级之别
2.
Intensifying Logos Cognition of the Perjury;Advancing Discrimination Ability of the Perjury
强化伪证理性认识 提高伪证甄别能力
3.
Intensifying Logos Cognition of the Perjury;Advancing Discrimination Ability of the Perjury;
强化伪证理性认识 提高伪证甄别能力
4.
A Study of Students Rational Knowledge and Operating Ability in Scientific Exploration;
学生对科学探究的理性认识和操作性能力的实证研究
5.
Taking Better Cognizance of the Individualities and Varieties of English Utterances to Enhance Listening Comprehension Ability;
加深对英语言语个体性、多变性的认识,提高听音理解的能力
6.
Reasonably Developing Student’s Ability in the Practice and Understanding;
发展学生合情推理能力的实践与认识
7.
The mental process or faculty of knowing, including aspects such as awareness, perception, reasoning, and judgment.
认识力思想过程或认识才能,包括如意识、知觉、推理和判断等方面
8.
Bridge between perceptual and rational knowledge--On cognitive function of metaphor;
感性认识与理性认识之间的桥梁——论隐喻的认知功能
9.
A Re-evaluation of the Status of Automaticity in Linguistic Competence;
重新认识自动性在语言能力中的地位
10.
visual literacy
视觉认识能力, 直观力
11.
Binet and Simon believed intelligence includes such abilities as understanding the meaning of words, solving problems, and making common-sense judgements.
比耐特和西蒙认为,智力包括的能力有:理解词义、解题及做普通常识性判断。
12.
a child's cognitive development
儿童认识能力的发展.
13.
Some Theoretical Issues on Urban Carrying Capacity;
关于城市综合承载能力若干理论问题的认识
14.
Cognition anent the Ice Hockey Players’ professional Strength Capacity and Strength Training;
对冰球运动员专项力量素质与训练的理性认识
15.
Cognition and Recognition: Hamlet’s Power of Knowledge;
认识与再认识:论哈姆雷特的认知能力(英文)
16.
Rational knowledge depends upon perceptual knowledge and perceptual knowledge remains to be developed into rational knowledge -- this is the dialectical-materialist theory of knowledge.
理性认识依赖于感性认识,感性认识有待于发展到理性认识,这就是辩证唯物论的认识论。
17.
"It inhibits recognition and processing of graphic symbols, particularly those pertaining to language."
是一种慢性的神经障碍,抑制人的认识和处理书写符号(尤其是与语言有关的符号)的能力。
18.
A new analyticalrelationship of the threshold doses, including ion track density, electronicstopping power and interfacial bond energy etc.
由于高能离子一固体相互作用的复杂性,目前对附着力增强的物理机制的认识还不清楚。