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1)  bend geometry
反式弯曲几何
2)  bent geometry
弯曲几何
1.
The calculated results show that titled compounds Ⅰ and Ⅲ have a trans-bent geometry,Ⅱ has a bent geometry,Ⅳ has a planar geometry.
计算结果表明,标题物Ⅰ和Ⅲ为反式弯曲几何构型,Ⅱ为弯曲几何构型,Ⅳ为线性平面分子。
2.
The calculated results show that titled compounds Ⅰ and Ⅲ have a trans-bent geometry,Ⅱ and Ⅳ has a bent geometry.
计算结果表明,标题物Ⅰ和Ⅲ为反式弯曲几何构型,Ⅱ和Ⅳ为弯曲几何构型。
3.
The calculated results show that all titled compounds Ⅰ-Ⅵ have a trans-bent geometry.
计算结果表明,全部标题物Ⅰ到Ⅵ为反式弯曲几何构型。
3)  trans-bent geometries
弯曲几何构型
1.
The results of calculation show that fluophosphathioketene and chlorophasphatioketene presents cumulative double bonds, isomer presents C(P)triple bonds, all of molecules have a trans-bent geometries.
计算结果表明,氟代和氯代磷杂硫烯酮为累积双烯结构,磷杂硫烯酮的异构体含 C P 三键,所有分子都具有弯曲几何构型。
4)  geometric nonlinear bending
几何非线性弯曲
1.
In this paper, a numerical solution technique, which is based on the pb-2 Ritz method is presented for the investigation of the geometric nonlinear bending of quadrangular thin plates.
本文用pb-2 Ritz能量法求解任意四边形薄板的几何非线性弯曲问题。
5)  tran bent
反式弯曲
1.
The condition of tran bent geometries and the X=X doub.
计算结果表明,H2X=XH2(X=Si,Ge,Sn,Pb)型分子均为非平面反式弯曲几何构型,亚甲基XH2的基态为单线态。
6)  hyperbolic geometry
双曲几何
1.
The paper introduces the one of non- Euclidean geometry - hyperbolic geometry into special theory of relativity.
本文试图将非欧几何之——双曲几何引入狭义相对论。
2.
It is proved that relativistic velocity make up of Bltrami-Klein model of hyperbolic geometry.
用光速不变原理直接导出洛伦兹速度变换式 ,并证明相对论性速度构成双曲几何的Beltrami Klein模型 。
补充资料:反式,反式-1,3-丁二烯-1,4-二羧酸
分子式:C6H6O4
分子量:142.11
CAS号:3588-17-8

性质:熔点290°C (dec.)。沸点320°C。水溶性insoluble。

说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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