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1)  electronic contest
电子竞赛
1.
Explaining of the enlightenment of the electronic contest, introducing of the training methods before contest, and exchanging the circuitousness of the innovation of teaching.
叙述了电子竞赛的启迪 ,介绍了参赛备训的作法 ,并论述了对电工电子系列课程的教学改革的探索与实
2)  electronic design contest
电子设计竞赛
1.
Analysis of national undergraduate electronic design contest;
试析全国大学生电子设计竞赛
2.
The application of transmitting command system with short-range wireless communication and similar broadcast network in electronic design contests;
短距离类广播式无线指令传输系统在电子设计竞赛中的应用
3.
Holding undergraduate electronic design contests to promote created talents fostering;
开展大学生电子设计竞赛,促进创新人才培养
3)  Electronic Design Competition
电子设计竞赛
1.
The nation-wide undergraduate electronic design competition is a comprehensive examination of students electronic knowledge and practice skills,it also provides a review and assessment to every college s quality of education.
全国大学生电子设计竞赛是对学生电子知识及实践技能的一种综合检验,也是对各高校教学质量的一种检查和评比。
2.
This article studies the active influence of electronic design competitions upon the promotion of practical teaching and the training of college students’ creativity and deals with the necessity of the improvement of practical teaching reform and the training of college students’ creativity.
本文探讨了大学生电子设计竞赛对促进实践教学的重要作用,电子设计竞赛对大学生创新能力培养的作用,论述了高校深化实践教学改革与培养学生创新精神、创新能力的必要性。
4)  college students electronic design contest
大学生电子竞赛
5)  E-sport game
电子竞技赛事
6)  UEDC
全国电子设计竞赛
1.
Based on narrating the regression theories of least squares support vector machine (LS- SVM), a feature extraction method based on LS- SVM was presented and introduced into the field of quantitative analysis of the comprehensive competence of the can- didates who were to attend the undergraduate electronic design competition(UEDC).
在详细阐述最小二乘支持向量机(LS-SVM)回归算法原理基础上,提出一种基于LS-SVM的特征提取方法,并将其应用到全国电子设计竞赛队员选拔问题上。
补充资料:电子-电子双共振
      在垂直静磁场H的方向,施加两个微波电磁场:①较弱的微波电磁场,激发电子从能级2向能级3跃迁,不致于饱和;②强的微波电磁场,激发电子从能级1向能级4跃迁,使达到饱和,从而导致能级4的电子转移至能级3,以观察反映2→3跃迁的电子自旋共振信号强度的变化,故称为电子-电子双共振。它与电子-核双共振不同之处是不涉及核的跃迁,并且观察的与电子自旋共振有关的能级和未观察的跃迁能级之间无共享的公共能级。
  

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