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1)  Tresca hexagon
Tresca六边形
1.
Utilizing the expression of maximum deviatoric stress yield rule on π plance and the relationship betwen π plane and principal stress this paper deduces and examines the shape and position of maximum deviatoric stress yield rule on π plane and the relation to Mises circle and Tresca hexagon.
利用π平面与主应力空间的关系及最大偏应力屈服准则在π平面上的表达式,推导验证最大偏应力屈服准则在π平面上图形的形状、方位及其与Mises圆和纯拉伸Tresca六边形的关系。
2)  Hexagon [英]['heksəɡən]  [美]['hɛksə'gɑn]
六边形
1.
Study of hexagonal orthogonal image pyramid on image compression algorithm and its application on manipulative transmission;
六边形正交影像金字塔图像压缩算法研究
2.
Then, two novel hexagonal open-loop quasi-elliptic resonator microstrip filters are designed, one symmetric and the other asymmetric, are designed and .
含广义交叉耦合的N个谐振器滤波器,即含源-负载交叉耦合的滤波器能产生N个传输零点,通过给出这种滤波器的等效网络模型和传输函数,设计了两种新颖六边形结构的含源-负载交叉耦合的微带滤波器,一种为对称结构,一种为非对称结构。
3.
Firstly,this paper constructures the spherical hexagonal grid based on icosahedron using Snyder equal-area projection.
利用二十面体施奈德等积多面体投影构建了球面多分辨率六边形层次网格;通过边界四元组将六边形单元分解到四元三角形及其子单元中处理;利用改进的四元三角网编码方案建立了网格的数字空间、单元层次编码模型和不同实体在球面上的表达方法。
3)  regular hexagon
正六边形
1.
This paper concludes that if the structure of mesh lattice units is formed in the shape of regular hexagon, the data precision can be raised under the condition of equal area and equal amount of data and, the data amount can be lessened under the condition of keeping equal precision, thus loweri.
选用周长最短的正六边形作为栅格单元结构 ,可在相同面积、相同数据量的条件下提高数据精度 ,或在保证精度的条件下 ,减少数据量 ,从而可降低生产成本 。
2.
The paper focuses on these two problems, proposed a new method of regular hexagonal grid plot for wireless sensor network.
综合考虑无线传感器网络中的连通与覆盖问题,提出了一种新的同构无线传感器网络网格划分方法,即正六边形网格划分方法。
4)  The hexgaon number
六边形数
5)  relatively long side
凸六边形
1.
Based on the ratio of the corresponding sides of P and H,show that every convex hexagon has a relatively long side and every convex hexagon with pair of parallel sides has a relatively short side.
将凸六边形嵌入到平行四边形内 (边可重叠 ) ,利用对应边的边长比的关系可证任意凸六边形均有相对长边 ,有平行对边的凸六边形必有相对短边 。
6)  Having six sides.
六边形的
补充资料:江恩六边形

江恩六边形概述

  江恩螺旋正方形是将市场循环分为八等分,而江恩六边形则是把市场循环分为六等分,是介于江恩螺旋四方形与江恩轮中轮之间的一种图形。江恩六边形把360度圆周六等分,每部分为60度,按照逆时针螺旋展开直至无穷的。

  Image:江恩六角形.gif

  图: 江恩六边形

  第一个循环: 1~6 ,数字增加6;

  第二个循环:7~18,数字增加12;

  ……

  第九个循环:217~330,数字增加54;

  第十个循环:331~396,数字增加60。,

  六角形中的数字代表市场的价位,当市场中的价位到达江恩六边形某一重要角度线时,就会出现支持力或阻力,如0度和180度等。

  我们可以利用江恩六边形发现价格将要出现的转折点,有效的掌握买卖的时机。

[编辑]

江恩论述六边形的手稿(英汉)

Since everything moves in a circle and nothing moves in straight lines, this chart is to show you how the angles influence stocks at very low levels and very high levels and why stocks move faster the higher they get, because they have moved out to where the distance between the angles of 45 are so far apart that there is nothing to stop them and their moves are naturally rapid up and down. We begin with a circle of “1” , yet the circle is 360* just the same . We then place a circle of circles around this circle and six circles complete the second circle , making a gain of 6 over the first one , ending the second circle at 7, making 7 on this angle ,a very important month, year , and week as well as days , the seventh day being sacred and a day of rest .

  因为任何事物都是循环运动,没有什么东西是直线运动的,所以这个图是想展示给你角度是怎么在比较高和比较低的价格水平时影响股票价格变化的,以及为什么当股票达到比较高的价格时会出现比较快速的运动。原因是他们已经移动到距离45度角足够远的分离位置,没有什么能使他们停下来,她们的运动自然而然的就是飞速的上或者下。 在六边形里最开始的位置是 1 ,也正好是360度的循环位置。然后我们放置一个循环中的循环在这循环中,6个循环后结束第二个循环,距离初始位置增加了6。第二循环的结束位置是7,7 在这里可以代表重要的月.年.周.日 ,而7日就正好是上帝安排的安息日。

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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