1. Part I is concluded by a detailed chapter on stereochemistry.
第一部分有详述立体化学一章。

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2. Stereochemistry deals with stereoisomers and with asymmetric synthesis.
立体化学研究立体异构体以及不对称合成法。

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3. The important role of stereochemistry of cyclic systems in organic Chemistry has been well established.
环状化合物的立体化学在有机化学中起着十分重要的作用。

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4. Many chiral drugs may differ in their pharmacological activities due to the difference of stereochemistry.
许多药物对映体由于其空间结构的差异,导致某药理、药效上有很大的不同。

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5. As the chiral source of asymmetric induction, the chiral ligands control the procedure of stereochemistry in reaction.
在手性催化反应中,手性配体是不对称诱导的手性源,控制着反应的立体化学过程。

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6. Their structures and some of the stereochemistry were elucidated by means of various modern spectroscopic techniques and chemical methods.
运用多种现代波谱技术结合化学手段,确定了它们的化学结构和部分立体构型。

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7. Particular emphasis is placed on the study of reaction mechanisms, and the importance of stereochemistry is stressed throughout the course.
研究光谱学并强调光谱技术在分析有机化合物中的重要性。

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8. Furthermore, X-ray single crystal structural analyses were performed for three adducts, whose structures and relative stereochemistry were confirmed.
对三个加成产物进行了X -线单晶结构解析,验证了产物的结构和相对立体化学。

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9. Organic chemistry is so abstract and full of a large number of knowledge that the beginners may find it hard to master, especially the stereochemistry.
尽管有机化学知识点多、抽象,初学者觉得难以掌握,尤其立体化学问题更让人头疼。

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10. Information such as the potential for isomerism, the identification of stereochemistry, or the potential for forming polymorphs should also be included.
潜在异构体,立体化学的识别,或潜在形成多晶型的信息因包含在内。

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11. The present paper reviews the methods used in connection table for the presentation of stereochemistry, particularly for the chiral carbons and double bonds.
本文简要地综述了基于连接表的手性中心和双键立体化学的描述方法。

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12. The relative stereochemistry of the 1, 10-double bond and that of the methoxyl, methyl, and acetoxy groups were determined by NOESY experiments and analyses of the coupling constants.
通过NOESY实验以及偶合常数的分析,确定了其结构中1,10位双键和甲氧基、乙酰氧基、甲基等基团的相对构型。

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13. The organic groups can control and modify the structure of inorganic framework, for its rigidity in conjunct mode, flexibility in stereochemistry and strong capability of coordination.
有机基团在结构上具有连接方式的刚性和立体空间的柔韧性以及较强的配位能力,能在很大程度上调控和修饰无机骨架的结构。

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14. The organic groups can control and modify the structure of inorganic framework, for its rigidity in conjunct mode, flexibility in stereochemistry and strong capability of coordination.
有机基团在结构上具有连接方式的刚性和立体空间的柔韧性以及较强的配位能力,能在很大程度上调控和修饰无机骨架的结构。

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