dynatron的音标为["daɪntrɒn] ,基本翻译为“动态电位计;电子脉冲发生器”,速记技巧为“dyna动起来,tron是机器”。
Dynatron这个词的词源可以追溯到希腊语和物理学。它指的是一种通过电场力驱动的机器,通常用于实验室中的粒子加速器或粒子探测器。
词源变化形式:
过去式:dynamatroned
过去分词:dynamatroned
现在分词:dynamatroning
相关单词:
1. Dynameter(n.) - 一种测量力的仪器,通常用于测量物体的重量或力的大小。
2. Dynamism(n.) - 活力,动力,表示行动或思想上的活跃和精力充沛。
3. Dynamite(n.) - 一种炸药,因其强大的爆炸力而命名。
4. Dynamo(n.) - 发电机,一种能产生持续电流的设备。
5. Dynamization(n.) - 转变为动力,活力,通常用于描述一个过程或系统变得更有活力和动力。
6. Dynamically(ad.) - 动态地,表示与运动、变化、力量等相关的行为或属性。
7. Dynamization(v.) - 使变得有动力或活力。
8. Dynamically(ad.) - 在动态中,表示在变化或运动的状态中。
9. Dynamically-controlled(adj.) - 受动态控制的,表示通过动态方式进行控制或调节的系统或设备。
10. Dynamically-balanced(adj.) - 动态平衡的,表示在动态环境中保持平衡的状态或特性。
Dynatron这个词在科学和工程领域中非常重要,因为它代表了一种物理现象和机器,为研究粒子加速器和探测器提供了重要的工具。
Dynatron常用短语:
1. dynatron analysis 动态分析
2. dynatron simulation 动态模拟
3. dynatron control 动态控制
4. dynatron model 动态模型
5. dynatron equipment 动态设备
6. dynatron software 动态软件
7. dynatron technology 动态技术
双语例句:
1. The software of dynatron is widely used in the field of dynamic analysis and simulation.
(动态模拟软件在动态分析和模拟领域被广泛应用。)
2. The control system of the dynatron equipment is very complex, which needs to be carefully designed and implemented.
(动态设备的控制系统非常复杂,需要仔细设计和实现。)
3. The dynamic model of the system is very important for the analysis and design of the system.
(系统的动态模型对于系统的分析和设计非常重要。)
4. The technology of dynatron has been widely used in the field of power system analysis and design.
(动态技术已被广泛应用于电力系统分析和设计领域。)
5. The software of dynatron can simulate the dynamic behavior of the system accurately and quickly.
(动态软件可以准确和快速地模拟系统的动态行为。)
6. The simulation results of dynatron software can help us to understand the dynamic behavior of the system better.
(动态软件的仿真结果可以帮助我们更好地理解系统的动态行为。)
7. The technology of dynatron has made it possible for us to analyze and design complex systems more efficiently.
(动态技术使我们能够更有效地分析和设计复杂的系统。)
英文小作文:
Dynatron technology has revolutionized the field of dynamic analysis and simulation, making it possible for us to analyze and design complex systems more efficiently. With the help of dynatron software, we can accurately and quickly simulate the dynamic behavior of a system, which helps us to understand its behavior better and make better decisions for its operation and maintenance. In addition, dynatron technology has opened up new possibilities for research and development in various fields, such as aerospace, automotive, and power systems, where it has become essential for understanding and optimizing the dynamic behavior of systems. I believe that dynatron technology will continue to play an important role in the future development of our society.