biochore 的音标是["baɪəʊ,kɔːɪ],翻译为“生物工程学”或“生物化学工程”。
速记技巧:可以通过词根记忆法来记住这个单词,bio(生物)+chore(工作)=生物工程学。同时也可以联想到与化学相关的词根,如chemistry(化学)、chymogen(酶)等。
Biochore这个词的词源可以追溯到生物学和动力学两个词根。Bio-表示生物学,而-chore通常与运动或劳动相关。因此,Biochore可以理解为生物学中的运动或劳动。
变化形式:Biochore在拼写和发音上没有明显的变化形式。
相关单词:
1. Biochemistry(生物化学):这个单词由bio-(生物)和chemistry(化学)组成,表示研究生物体内化学过程的一门学科。
2. Biophysics(生物物理学):这个单词由bio-(生物)和physics(物理学)组成,表示研究生物体中物理现象的学科。
3. Biotechnology(生物技术):这个单词由bio-(生物)和technology(技术)组成,表示利用生物学原理和方法开发的技术。
以上三个单词都是与生物学和工程学相关的专业术语,它们都反映了生物学和工程学的交叉学科性质。这些单词在科学研究和工业应用中得到了广泛应用。
Biochore作为生物学中的运动或劳动的概念,与生物学、工程学和运动科学等领域密切相关。它不仅涉及到生物学中的运动过程,还涉及到工程学中的劳动过程,以及运动科学中的运动训练和康复等方面的研究。因此,Biochore作为一个词源,反映了生物学、工程学和运动科学之间的紧密联系和交叉学科性质。
常用短语:
1. bioinformatics
2. biochemistry
3. biotechnology
4. genetic engineering
5. proteomics
6. genomics
7. cell biology
例句:
1. Bioinformatics is a rapidly growing field that involves the use of computers to analyze biological data.
2. Biochemistry is the study of the chemical processes that occur in living organisms.
3. Biotechnology has revolutionized the way we produce food, medicine, and other products.
4. Genetic engineering has the potential to revolutionize medicine by allowing for the creation of customized treatments for individual patients.
5. Proteomics is the study of the complete set of proteins expressed by a cell or organism at a given time.
6. Genomics involves the study of the complete set of DNA sequences in an organism.
7. Cell biology is the study of the smallest biological units that still retain their own unique characteristics and functions.
英文小作文:
Bioinformatics has revolutionized the way we study biology, allowing us to analyze vast amounts of data quickly and efficiently. By combining computational tools with traditional biological methods, we can now investigate the complexities of life at the molecular level and gain a deeper understanding of how cells, tissues, and organisms function. At the same time, biotechnology has also made significant progress, allowing us to produce novel drugs, vaccines, and other products that can improve human health and well-being. Genetic engineering has opened up new avenues for personalized medicine, allowing doctors to create customized treatments for individual patients based on their unique genetic make-up. In conclusion, bioinformatics, biotechnology, and genetic engineering have transformed our understanding of life and have the potential to continue to do so in the future.