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稳定状态

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At the beginning the temperatures of wall of U-tube and soil rise quickly and along with the Heat Pump running the temperatures change tardily until the temperatures are steady.

热泵刚开始运行的一段时间,管井壁面温度升高的很快,随着运行时间的增加,温度变化减小,直至达到某一稳定温度值,系统处于稳定状态

The results show that the maximum unbalanced force and the displacement of monitoring points in the simulation tend to be stable.

研究结果表明,模拟过程中的最大不平衡力和监测点位移均趋向于稳定,塑性区分布情况和安全系数值则再次表明边坡在整体上处于稳定状态

Generally, the increase of central city population is much faster and more lapsable than which of the region. The purpose of this paper is to establish a model of the population relationship between the region and its central...

因此,笔者试图构建中心城市人口与区域人口数量关系模型,以预测区域人口去推导中心城市人口,并在此基础上进一步研究在区域人口和城镇化水平趋于稳定状态下的稳定态城市规模。

The index of average density spatial energy relative time-space cosmic energy follow the rise and fall of quantum spatial measurement, at original cosmic time-space set out, from 1 come to do not exceed 2, not smaller 4/3, come to do not symmetrically gradually belong to stabilization thus at reductively fluctuate, not can reversely strides across reach 3/2 that stable state maintain unchanging.

宇宙能量的相对时空空间的能量平均密度指数随宇称量子的涨与落,在原初的宇宙时空启动,从1成不大于2,不小于4/3,成不对称地递归于稳定而在缩小地波动,不可逆地跨越到3/2的稳定状态保持不变。

The index of speed stride across of at the relative momentary point of time time-space follow the rise and fall of quantum spatial measurement cosmic energy, at original cosmic time-space set out, from 1 come to do not exceed 3/2, not smaller 5/4, come to do not symmetrically gradually belong to stabilization thus at reductively fluctuate, not can reversely strides across reach 4/3 that stable state maintain unchanging.

在时空时间的相对时刻点的跨越速率指数随宇宙能量的宇称量子的涨与落,在原初宇宙时空启动,从1成不大于3/2,不小于5/4,成不对称地递归于稳定而在缩小地波动,不可逆地跨越到4/3 的稳定状态保持不变。

Therefore, the speed of strides across time of at time-space follow the rise and fall of quantum spatial measurement cosmic energy, at original cosmic time-space set out, from 1×10-43 s come to do not exceed (3/2)×10-43 s, not smaller (5/4)×10-43 s, come to do not symmetrically gradually belong to stabilization thus at reductively fluctuate, not can reversely strides across reach (4/3)×10-43 s that stable state maintain unchanging.

因此,时空时间的跨越速率随宇宙能量的宇称量子的涨与落,在原初的宇宙时空启动,从1×10-43s 成不大于(3/2)×10-43s,不小于(5/4)×10-43s,成不对称地递归于稳定而在缩小地波动,不可逆地跨越到(4/3)×10-43s 的稳定状态保持不变。

The situation of spatial measurement relative time-space cosmic energy follow the rise and fall of quantum spatial measurement, at original cosmic time-space set out, from the 1/2 spatial measurement of cosmic time-space come to do not smaller the 1/4 spatial measurement of cosmic time-space, not exceed the 3/8 spatial measurement of cosmic time-space, come to do not symmetrically gradually belong to stabilization thus at reductively fluctuate, not can reversely strides across reach the stable state of 1/3 spatial measurement cosmic time-space maintain unchanging.

宇宙能量的相对时空宇称的状况随宇称量子的涨与落,在原初的宇宙时空启动,从宇宙时空宇称的1/2成不小于宇宙时空宇称的1/4,不大于宇宙时空宇称的3/8,成不对称地递归于稳定而在缩小地波动,不可逆地跨越到宇宙时空宇称1/3的稳定状态保持不变。

At the every relative momentary point of time time-space, the situation of difference spatial measurement of cosmic gravitation exceed cosmic space-energy follow the rise and fall of quantum spatial measurement, at original cosmic time-space set out, from 0 come to do not exceed the 1/2 spatial measurement of cosmic time-space, not smaller the 1/4 spatial measurement of cosmic time-space, come to do not symmetrically gradually belong to stabilization thus at reductively fluctuate, not can reversely strides across reach the stable state of 1/3 spatial measurement cosmic time-space maintain unchanging.

在时空时间的每1个相对时刻点,宇宙引力大于宇宙空间能的宇称差的状况随宇称量子的涨与落,在原初的宇宙时空启动,从0成不大于宇宙时空宇称的1/2,不小于宇宙时空宇称的1/4,成不对称地递归于稳定而在缩小地波动,不可逆地跨越到宇宙时空宇称1/3的稳定状态保持不变。

The spatial measurement of cosmic time-space is the eternal measurement of 1.57×10177 m3, so the spatial measurement of relative time-space cosmic energy follow the rise and fall of quantum spatial measurement, at original cosmic time-space set out, from 0.785×10177 m3 come to do not smaller 0.3925×10177 m3, not exceed 0.58875×10177 m3, come to do not symmetrically gradually belong to stabilization thus at reductively fluctuate, not can reversely strides across reach the stable state of (1/3)×1.57×10177 m3, maintain unchanging.

宇宙时空的宇称为1.57×10177m3的恒量,所以宇宙能量的相对时空宇称随宇称量子的涨与落,在原初的宇宙时空启动,从0.785×10177m3成不小于0.3925×10177m3,不大于0.58875×10177m3,成不对称地递归于稳定而在缩小地波动,不可逆地跨越到(1/3)×1.57×10177m3的稳定状态保持不变。

So, the average density of spatial energy of spatial radius is the length of Planck of relative time-space cosmic energy follow the rise and fall of quantum spatial measurement, at original cosmic time-space set out, from the structure-energy of mass 16.38×10-71 N · m to the space-energy of 8.19×10-71 N · m and the mass-energy of 8.19×10-71 N · m, come to do not exceed the structure-energy of mass 32.76×10-71 N · m to the space-energy of 8.19×10-71 N · m and the mass-energy of 24.57×10-71 N · m, not smaller the structure-energy of mass 21.84×10-71 N · m to the space-energy of 8.19×10-71 N · m and the mass-energy of 13.65×10-71 N · m, come to do not symmetrically gradually belong to stabilization thus at reductively fluctuate, not can reversely strides across reach the stable state of structure-energy mass 24.57×10-71 N · m to the space-energy of 8.19×10-71 N · m and the mass-energy of 16.38×10-71 N · m maintain unchanging.

所以,宇宙能量的相对时空空间的半径为普朗克长度的空间的能量平均密度随宇称量子的涨与落,在原初的宇宙时空启动,从16.38×10-71N · m 质量结构能对于8.19×10-71N · m 空间能与8.19×10-71N · m 质能,成不大于32.76×10-71N · m 质量结构能对于8.19×10-71N · m 空间能与24.57×10-71N · m 质能,不小于21.84×10-71N · m 质量结构能对于8.19×10-71N · m 空间能与13.65×10-71N · m 质能,成不对称地递归于稳定而在缩小地波动,不可逆地跨越到24.57×10-71N · m 质量结构能对于8.19×10-71N · m 空间能与16.38×10-71N · m 质能的稳定状态保持不变。

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