bimolecular的音标为:[ˌbaɪmoʊləˈnɪkl] ,中文释义为“二分子化合物”或“双分子化合物”。
基本翻译:bimolecular是一种化学术语,指的是含有两个相同或不同分子结构的分子。
速记技巧:可以尝试使用谐音法来记忆,将其音译为“比莫林可”,这样更便于记忆。
希望以上信息对您有帮助,记忆方法仅供参考,具体请结合其他资料进一步学习。
Bimolecular这个词的英文词源可以追溯到拉丁语和希腊语,意为“两个分子的”。这个词在化学和生物学中常用来描述两个分子的相互作用。
变化形式:复数形式是bimoleculars或bimoleculars,也可以简写成bims。
相关单词:
1. Biochemistry(生物化学):研究生物体内bimolecular过程的学科。
2. Biomolecular(生物分子的):指生物体内的bimolecular物质或结构。
3. Bimolecular binding(双分子结合):指两个分子之间的相互作用和结合。
4. Bimolecular reaction(双分子反应):指由bimolecular相互作用引起的化学反应。
5. Bimolecular catalysis(双分子催化):指通过bimolecular过程促进化学反应。
6. Bimolecular interaction(双分子相互作用):指两个分子之间的相互作用力。
7. Bimolecular complex(双分子复合物):指由两个或多个bimolecular分子形成的复杂结构。
8. Bimolecular mechanism(双分子机制):指描述bimolecular过程的基本原理和机制。
9. Bimolecular dynamics(双分子动力学):指研究bimolecular过程的动力学性质和规律。
10. Bimolecular structure(双分子结构):指由两个或多个分子组成的复杂结构,可能具有特定的几何形状和电子特性。
常用短语:
1. bi-molecular reaction
2. bi-molecular interaction
3. bi-molecular enzyme
4. bi-molecular receptor
5. bi-molecular binding
6. bi-molecular catalysis
7. bi-molecular transport
例句:
1. The bi-molecular enzyme catalyzes the reaction between two substrates.
2. The bi-molecular receptor binds to its ligand with high specificity and affinity.
3. Bi-molecular interactions play a crucial role in cell signaling and communication.
4. Understanding bi-molecular processes is essential for developing new drugs and therapeutic agents.
5. Bi-molecular binding is a fundamental process in biology and chemistry.
6. Bi-molecular catalysis is a key aspect of chemical reactions in living systems.
7. Bi-molecular transport is crucial for the exchange of materials between cells and tissues.
英文小作文:
Bi-molecular interactions are essential for life on Earth, from the simplest bacteria to the most complex multicellular organisms. These interactions govern how cells communicate with each other, how nutrients are transported throughout the body, and how enzymes catalyze chemical reactions. Understanding bi-molecular processes is crucial for developing new drugs and therapeutic agents, as well as for understanding diseases such as cancer and neurodegenerative disorders. In the future, advances in biotechnology and molecular biology may lead to new methods of diagnosis and treatment that are more targeted and effective than current approaches.