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This paper is about the hydrodynamics of blood in flow channel on the principle of hydrodynamics, and the hydrodynamics equations of Newton-fluid and Casson-fluid in rectangle channel. It also includes the studies of the diphasic flow. The fluid model selection is discussed from the examples in the hemorheology studies using flow channel technique.

本文用流体动力学原理,研究了流动渠道中的血流动力学问题,分别推导了牛顿流体、Casson流体在矩形渠道中的流体动力学方程,文中还对流动渠道内的二相流问题进行研究,并就血液流变学研究中利用流动渠道技术的应用实例,讨论了流体模型选择问题

This resembles the relationship between Newtonian and Einsteinian physics—the older system is still valid at low energies, but if you push mass and velocity high enough you get surprises like nuclear explosions or Linux.

这就像 牛顿式的和爱因斯坦式的物理之间的关系——旧的系统在低能量下仍然有效,但当你把质量和速度变得足够大的时候,你就得到了如同核爆炸或 Linux 那样的惊奇。

By describing Pythagorean theorem, the first time-space view explain the plane-line thought which impacts human's thinking manner; the second time-space view is absolute time-space theory of Newton and three-dimensions space-time view intersected by space-time; the third space-time view is curve space-time view which is generated from Einsteinian relative theory. The fourth space-time view is the directional, irreversible entropy time-space thought; the fifth time-space view is dense time-space view of cracked fractal generated from chaos-fractal theory.

第一时空观是通过对勾股定理的描述来说明影响人们思维方式的平直时空观;第二时空观是牛顿的绝对时空理论,是时空分割的立体三维时空观;第三时空观是爱因斯坦的相对论理论所带来的弯曲时空观;第四时空观是具有方向不可逆的熵时空观;第五时空观是混沌与分形理论所带来的破碎分形的稠时空观。

The invention of fluxionary calculus, mathematical development milestone.

中文摘要:摘要:经过人类长期生活与科学活动的发展,牛顿—莱布尼茨在前人的成果上,经过努力创立了微积分。

In mathematics, Newton shares the credit with Gottfried Leibniz for the development of calculus.

牛顿还发现了太阳光的颜色构成,还制作了世界上第一架反射望远镜。

While some of the ideas of calculus were developed earlier in Greece , China , India , Iraq, Persia , and Japan , the modern use of calculus began in Europe , during the 17th century, when Isaac Newton and Gottfried Wilhelm Leibniz built on the work of earlier mathematicians to introduce its basic principles.

虽然一些想法结石制定了早些时候在希腊,中国,印度,伊拉克,波斯,日本,现代利用的演算开始在欧洲,在17世纪时,艾萨克牛顿和莱布尼茨建立哥特弗里德威廉的工作早期数学家介绍其基本原则。

These ideas were systematized into a true calculus of infinitesimals by Gottfried Wilhelm Leibniz , who was originally accused of plagiarism by Newton.

These想法系统化成为一个真正的结石无穷小的哥特弗里德威廉莱布尼茨,谁最初被控剽窃的牛顿

Isaac Newton and Gottfried Leibniz had bitter disagreements over who first discovered calculus.

至于谁是第一个发现微积分的,艾萨克·牛顿和戈特弗里德·莱布尼茨之间有过激烈的争执。

This model considers more factors, especially great and complex effect of geological factors on grouting spread, Value of fissure aperture is cleared and defined, all kinds of parameters of geology and grouts property in connection with model can be tested accurately, therefore this approach practice more and have more practical value comparing with other grouting model to provide solid theoretical basis for grouting controlling method.

在频率水力隙宽和宾汉流体的渗流规律的研究成果基础上,考虑地下水影响半径、频率水力隙宽、粘度时变性、裂隙的倾角和方位角、流核等诸多影响因素,建立了牛顿流体和宾汉流体的注浆扩散模型,并对数学模型实现了计算机模拟,便于工程实际中的应用。

As the results, the ultra-thin films of 500SN and hexadecane exhibited nonlinear shearing response, which was different from that of the Newtonian fluids in their bulk state.

结果表明:在超薄膜润滑条件下,5 0 0 SN和十六烷均表现出明显的非牛顿剪切响应,即剪切稀释现象;摩擦力幅值随剪切速度的增大急剧上升到最大值,然后下降至某一固定值附近并产生波动;剪切挤压下的临界膜厚小于静态挤压的临界膜厚,剪切运动对吸附层有序结构产生破坏作用

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