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1)  sentencing in heap
估堆量刑
2)  sentencing of death penalty
死刑量刑
1.
In a process of concrete judicial practice,how to deal well with the relationship between popular indignation and sentencing or sentencing of death penalty especially will directly effect social identification degree of judicial practice.
在具体的司法实践过程中,如何妥善处理民愤与量刑特别是死刑量刑之间的关系,将直接影响司法实践的社会认同度。
3)  measurement of penalty
量刑
1.
Serious Treatment for Measurement of Penalty——on the procedural sentence;
认真对待量刑——量刑程序化初探
4)  sentence [英]['sentəns]  [美]['sɛntəns]
量刑
1.
Sentencing process mode includes separate process of sentence and mixed process of sentence.
量刑程序有英美法系的独立量刑程序和大陆法系的混合量刑程序之分。
2.
Article 5 of the Criminal Act of the PRC is deemed the basic principle of criminal law and the general standard of sentence.
我国《刑法》第5条既是刑法的基本原则,也是量刑公正的一般标准,它要求量刑精确制导,最大限度地避免刑罚误差。
3.
A piece of news delivered on the internet,which reported a robber was sentenced to life imprisonment for compensating for the deceased victim′s relatives while the offender would usually be given death penalty according to its gravity of circumstances,aroused a heated discussion among the netizens.
刑法理论把犯罪人赔偿民事损失的情况界定为犯罪后的一种态度,属于酌定量刑情节之一。
5)  sentencing [英]['sentəns]  [美]['sɛntəns]
量刑
1.
Sentencing and Quantifying Sentence: On Computerizing Sentence;
量刑与刑的量化——兼论“电脑量刑”
2.
The Reasonable Construction of the System of Sentencing Balance;
量刑平衡机制的理性构建
3.
The Identifying and Using of the Legal Circumstance for Sentencing;
法定量刑情节的认定与适用
6)  discretion of punishment
量刑
1.
On the basic theory of the "discretion of punishment by computers";
论“电脑量刑”的基本原理
2.
Circumstances in discretion of punishment refers to the facts which can influence the result of punishment.
量刑情节与定罪情节相对应,属于一种犯罪情节,是指影响量刑结果的主客观事实情况,主要功能是可以决定宣告刑。
补充资料:反应堆与堆内构件振动监测


反应堆与堆内构件振动监测
reactor and internals vibration monitoring

fony旧gdu一yu du旧e一gouJ一on zhendong Jlonee反应堆与堆内构件振动监测(reactor andinternals vibration monitoring)用以监测反应堆压力容器及堆内构件的振动。 安装在压力容器上的4个加速度仪(l个在容器顶盖的螺栓上,3个在容器的下封头的堆芯中子侧t的贯穿管上),其信号与容器的加速度振动成正比。 通过采集堆外四个长中子电离室上部第二段和下部第五段的信号,并将其与反应堆功率成正比的平均注量率信号进行标称化处理,送噪声诊断系统,根据每个电离室各段上的差异,以测定堆内构件的振动,并监测异常情况。利用数据库中已有的数据,可以判断引起这种异常的原因。 堆内构件的振型有两种:梁式和壳式。梁式振型用以监侧嫩料组件和吊篮筒体的振动,这种振动改变了堆内构件结构和中子探侧器之间水层的厚度,导致探测器上侧得的中子注量率随上述结构的振动颇率而变化。 壳式振型用以监测堆内构件热屏的振动,这种振动导致堆芯筒体与热屏之间水层厚度的变化,从而影响中子撞击热屏时的能谱。由于热屏对中子的吸收与其能量有关,从而造成中子探侧器上信号的脉动。
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