atomizer的音标为["təʊmɪzə] ,基本翻译为“空气净化器,喷油器”等。在记忆这个单词时,可以结合其词源和发音进行记忆。atomizer这个词源于英语,其发音与“atom”相近,因此可以将其拆分为“at-o-miz-er”,其中“at”代表“原子”,“miz”可以理解为“化”的意思,“er”通常表示某种装置或工具。因此,可以将atomizer理解为将原子化(即分散成微粒)的装置或工具。结合这些信息,可以更好地记住这个单词。
Atomizer这个词的词源可以追溯到拉丁语词根atomus,意思是“微粒”或“原子”。Atomizer这个词在英语中通常指的是一种能够产生或“吸”起微小颗粒或粉末的机器,例如吸尘器或喷墨打印机。
变化形式:名词形式为atomizer,动词形式为atomize。
相关单词:
1. Dustbin - 垃圾箱,是一个与atomizer相关的名词,表示存放垃圾的容器。
2. Sputter - 指金属或合金在高温下被电离,形成微小颗粒或粉末的现象,与atomizer的工作原理相似。
3. Aerosol - 气溶胶,是一种由微小颗粒组成的物质,通常由atomizer产生。
4. Atomization - 原子化,是一个与atomizer相关的过程术语,表示将大分子或物质分解成原子的过程。
5. Nebulizer - 雾气发生器,是一个与atomizer相关的设备,用于产生雾气或云雾。
6. Evaporator - 蒸发器,是一个与atomizer相关的设备,用于将液体转化为气体。
7. Drier - 干燥器,是一个与atomizer相关的设备,用于去除物体上的水分或其他液体物质。
8. Atomosphere - 大气层,是一个与atomization相关的术语,表示由微小颗粒组成的大气层。
9. Aromatherapy - 香薰疗法,是一种使用香料或精油进行身心疗愈的方法,与atomizer的工作原理相似。
10. Pyrolysis - 热解,是一个化学过程,与atomizer的工作原理相似,用于将有机物质转化为气体或微小颗粒。
常用短语:
1. atomizer (n.) 原子发生器
2. atomize (v.) 原子化
3. atomization (n.) 原子化过程
4. atomizer nozzle (n.) 原子化器喷嘴
5. atomizer tube (n.) 原子化器管
6. atomic atomizer (n.) 原子发生器
7. atomic atomization (n.) 原子化现象
双语句例:
1. The atomizer is used to atomize the liquid sample for analysis. (原子发生器用于将液体样品进行原子化以便进行分析。)
2. The atomization process is critical for the accuracy of the measurement. (原子化过程对于测量的准确性至关重要。)
3. The atomizer nozzle is prone to clogging, which can affect the performance of the instrument. (原子化器喷嘴容易堵塞,这会影响仪器性能。)
4. The atomic atomizer is a key component of the atomic fluorescence spectrometer. (原子发生器是原子荧光光谱仪的关键组成部分。)
5. The atomization temperature should be carefully controlled to ensure accurate results. (原子化温度应该仔细控制以确保准确的结果。)
6. The atomization of liquids is a complex process that requires precise control of temperature and pressure. (液体液化的过程是一个复杂的过程,需要精确控制温度和压力。)
7. The atomization of gases is also important in many applications, such as combustion and gas chromatography. (气体液化在许多应用中也很重要,例如燃烧和气相色谱法。)
英文小作文:
Atomic Atmosphere: The Role of Atomizers in Chemical Analysis
In chemical analysis, atomizers play a crucial role in converting liquid samples into tiny particles that can be analyzed by various techniques. From laboratory instruments to industrial processes, atomizers are essential for ensuring accurate and reliable results.
Atomizers work by generating a high-temperature environment that causes the liquid sample to evaporate and undergo a process of atomization. This process involves breaking down the liquid into individual particles that are then able to interact with the detector or other components of the instrument.
The selection and design of an atomizer can have a significant impact on the performance of the instrument. For example, the type of atomizer used, the temperature and pressure settings, and the type of liquid being analyzed all play a role in determining the quality of the data obtained.
By understanding the role of atomizers in chemical analysis, we can better appreciate the importance of this critical component in ensuring accurate and reliable results in a wide range of applications.