ferromagnetism的音标是[ˌferəʊmæɡˈnetɪzəm],基本翻译是“铁磁性,铁磁性物质”。速记技巧:直接记谐音“非柔妈”。
Ferromagnetism这个词来源于拉丁语,其含义为“铁磁性”。它的变化形式包括名词ferromagnetism和形容词ferromagnetic。
相关单词:
1. Ferromagnetic - 铁磁性的,与铁有关,描述具有铁磁性的物质。
2. Magnet - 磁石,磁体,来源于拉丁语magnetis,意为吸引或磁性的。
3. Magnetism - 磁性,磁力,来源于拉丁语magnetis,意为吸引或磁性。
4. Paramagnetism - 顺磁性,一种物质对磁场反应的特性,来源于拉丁语paramagnetis,意为在磁场中。
5. Antimagnetism - 反磁性,与磁性相反的特性,描述对磁场反应为排斥的物质。
6. Magnetic field - 磁场,描述由磁体产生的空间中的一种特殊场。
7. Magnetic force - 磁力,描述磁场对物体产生的吸引力或排斥力。
8. Magnetic moment - 磁矩,描述磁性物质或磁体在磁场中的效应。
9. Magnetic remanence - 剩磁,描述磁体在去除磁场后仍保持的磁性。
10. Magnetic domain - 磁畴,描述磁性物质中微小的区域,每个区域都有自己的方向和强度。
以上这些词汇都是与ferromagnetism相关的,它们在物理学、材料科学和电磁学等领域都有广泛的应用。
常用短语:
1. exhibit ferromagnetism
2. show ferromagnetic properties
3. magnetic ferromagnetism
4. paramagnetism and ferromagnetism
5. ferromagnetic materials
6. magnetic domains in ferromagnets
7. magnetic field induced ferromagnetism
例句:
1. This material exhibits strong ferromagnetism and is highly suitable for use in magnetic recording devices.
2. The iron oxide nanoparticles showed significant ferromagnetic properties and could be used for making high-performance magnetic recording media.
3. Paramagnetic substances do not show ferromagnetism, while ferromagnetic materials can be used to create powerful magnets.
4. The magnetic domains in a ferromagnet can be used to store information, making it a crucial component of modern computers and other electronic devices.
5. Magnetic field induced ferromagnetism is a phenomenon that occurs when a material is exposed to a strong magnetic field, causing it to become strongly magnetic.
6. Ferromagnets are commonly used in permanent magnets and other applications where strong magnetic fields are required.
7. Ferromagnets are essential for the development of high-performance magnetic recording media and other advanced technologies that require precise control of magnetic fields.
英文小作文:
Ferromagnetism is a phenomenon that occurs in certain materials and makes them magnetic when exposed to a magnetic field. This phenomenon is crucial for the development of advanced technologies such as magnetic recording media and permanent magnets. In addition, ferromagnets are commonly used in various applications where strong magnetic fields are required, such as in motors and sensors.
One of the most interesting aspects of ferromagnetism is that it can be induced by applying a magnetic field, which is a phenomenon known as magnetic field induced ferromagnetism. This phenomenon occurs when a material is exposed to a strong magnetic field, causing it to become strongly magnetic and exhibiting ferromagnetic properties. This unique property makes ferromagnets an essential component in various technological applications, such as in the design of advanced sensors and actuators that require precise control of magnetic fields.
In conclusion, ferromagnetism is a fascinating phenomenon that plays a crucial role in the development of advanced technologies and applications that require precise control of magnetic fields.
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