• 牛顿运动方程能量动量守恒型积分方法

    Energy and momentum conserving integrators for Newtonian motion equations.

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  • 引力粒子高速运动以太粒子,引力场传播速度远远超过光速牛顿的引力方程得到修正。

    Gravitational particles are moving Ether particles in high-speed, the gravitational field spread much faster than the speed of light, Newton's gravitational equation was amended.

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  • 本文采用牛顿并藉计算机求解质点沿机械抛掷机构内旋转叶片运动方程

    In this paper we use Newtoh's method to solve the equation of motion of particles along rotating blades.

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  • 造波水槽内二维浮体牵引弹簧回复液压缸的受力系统简化弹簧—质量—阻尼系统,建立数学模型根据牛顿第二定律得到运动方程

    The model of a kind of wave energy device moored on seabed is simplified into a spring-mass-damping system, and then its motion equation is built according to Newton's second law.

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  • 提出完整力学广义达朗贝尔-拉格朗日原理包括牛顿表述拉格朗日表述。原理能导出态空间封闭运动方程

    Generalized DAlembert-Lagranges principle for non-holonomic mechanics, including its Newtons formulation and Lagrangian formulation, are given. This principle can lead to the closed motion equations.

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  • 依据牛顿第二定律列出运动微分方程序,序并求得计算瞬时速度的公式。

    On the basis of Newton's second Law, a motion differential equation has been put forward, by which a formula to calculating instantaneous velocity has been obtained.

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  • 机器人进行运动分析基础上利用牛顿欧拉建立机器人动力学方程

    We set up robot dynamic equations using Newton Euler method on the basis of kinematics analysis of robot.

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  • 颗粒运动满足牛顿第二定律流体相的运动规律局部平均维斯托克斯方程求解,两相间的耦合由牛顿第三定律决定。

    The motion of individual particles is obtained by solving Newtons second law of motion and gas flow by the Navier Stokes equation based on the concept of local average.

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  • 分别求出了密封中磁液密封液体速度分布,特别是磁液作为牛顿流体运动方程计算了两相液体界面的速度差。

    The motion equations of sealed liquid and magnetic liquid which is considered to be non-Newton fluid in magnetic liquid seal were solved respectively and their speed distributions were got.

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  • 本文根据牛顿第二定律建立了惯性分离室内包含多因素颗粒运动微分方程

    In this paper differential equations of grain moving in the deposition chamber were developed based on Newton's Second Law.

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  • 牛顿拉格朗日公式来解决和阐述运动方程序。

    Solve for the equations of motion using both the Newtonian and Lagrangian formulations.

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  • 牛顿拉格朗日公式解决阐述运动方程序。

    Formulate and solve for the equations of motion using both the Newtonian and Lagrangian formulations.

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  • 基于牛顿运动定律拉格朗日法推导出了粉尘粒子荷电水雾除尘过程中的轨迹方程,建立了单个粒子运动轨迹数学模型

    The trajectory equation of particles was put forward with Lagrangian approach on the basis of Newton law. The mathematical model of a single particle trajectory was established.

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  • 在此基础,导出了适用于圆运动微分方程。据此研究了非牛顿流体圆管紊流两种非牛顿流体圆管中的顶替规律

    Then, based on that, the turbulent motional differential equation for a pipe is made out From that, the turbulent flow and displacement laws for non-Newtonian fluids in a pipe have also been studied.

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  • 机器人进行运动分析基础上利用牛顿欧拉建立机器人动力学方程

    We set up robot dynamic equations using Newton Euler method on the basis of kinematics analysis of robot. The simulation result testified the validity of this method.

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  • 机器人进行运动分析基础上利用牛顿欧拉建立机器人动力学方程

    We set up robot dynamic equations using Newton Euler method on the basis of kinematics analysis of robot. The simulation result testified the validity of this method.

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