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1)  heat dissipation
热耗散
1.
In this paper,we discuss the relation between information erasure and heat dissipation in quantum memory.
讨论量子寄存器中信息擦除与散热的关系,发现量子态擦除的不可逆性将会导致量子寄存器的热耗散
2.
Furthermore, heat dissipation of resistor could be calculated on basis of given way in the paper, and then the value were modified according to some ripe manufacture.
阐述了电阻器设计的基本原则 ,提出根据给定的电阻允差 ,求出电阻的偏差值 ,再根据偏差值及材料尺寸偏差 ,得出材料的加工偏差的方法 ;此外 ,电阻器的热耗散可根据本文提供的值进行计算 ,然后对比一些成熟的产品再作修正 ,通过多次反复 ,取得经验 ,就可以设计出合乎要求的电阻
3.
The calculations are based on the equation of current motion with temperature and field-dependent critical current density, and the heat dissipation produced by flux motion in the normal state region and the superconducting state region.
此计算基于电流运动方程,考虑到电流密度是温度和磁场的函数,考虑到在正常区和超导区由磁通运动产生的热耗散
2)  Thermal dissipation
热耗散
1.
In order to study the thermal dissipation, the temperature change during low cycle fatigue was measured by a kind of small thermistor.
低周疲劳过程的非弹性响应反映了机械能耗的规律 ,而热响应则能够表征疲劳过程的热耗散规律。
2.
An advanced infrared camera was also used to record specimen temperatures, results show temperature evolution of fatigue specimen depends on the material type and loading level, the temperature increased sharply just at the beginning of the test, which is correspondent to the thermal dissipation in the specimen.
试样温度的快速升高发生在超声疲劳试验的初期,温度的变化反映了材料内部的热耗散过程。
3)  heat loss
热耗散
1.
The affects of crystal absorption for heat radiation on crystal growth,which include:the heat loss of the hot grower,the chara cteristic of temperature time of crystal growth,the pattern of fluid flow and the shape of interface,the interface inversion of crystal,the temperature distribution and the thermal stress distribution,are reviewed in this paper.
本文综述了晶体对熔体热辐射吸收对晶体生长的影响,包括对热腔热耗散的影响;对晶体生长温度时间特性的影响;对液流形态和固液界面形状的影响;对晶体界面反转的影响;对晶体中温度分布和应力分布的影响。
4)  thermal energy dissipation
热耗散
1.
The characteristics of acclimation in photochemistry, thermal energy dissipation and electron transport to three light intensities in leaves of forest plants were studied by using the combination of gas exchange and chlorophyll fluorescence measurements.
4种植物生长于 10 0 %、36 %和 16 %的自然光下 8个月 ,叶片的光化学速率和热能耗散速率随光强增大而提高 ,热能耗散占总的光能吸收的比例也因光强不同而改变 ,16 %光下的相对热耗散率约为 40 %~ 45 % ,10 0 %自然光下增大至 5 0 %~ 75 %。
5)  the thermal dissipation
热耗散
1.
According to thermodynamic viewpoint, the thermal dissipation can reflect the dissimilar course of the fatigue behaviors of materials during low cycle fatigue and the micrograph change can reflect the dissimilar state of the fatigue behavior of materials.
从热力学观点看,热耗散体现了材料疲劳的过程特征,而微观结构体现了疲劳损伤的状态特征,因此将两者结合起来对于深入掌握材料疲劳损伤的本质具有深刻的意义。
6)  dissipation of heat
散热,热耗
补充资料:010耗散
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性质:见010损失。

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