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1.
The Teaching Debate on the Parallel Axis theorem of Rotational Inertia;
刚体转动惯量平行轴定理的教学讨论
2.
Discussion on Teaching of the Perpendicular Axis Theorem of the Moment of Inertia of a Rigid Body;
刚体转动惯量正交轴定理的教学探讨
3.
Inferring the Formula of Typical Rigid Body Rotating Constant by Applying Elementary Mathematics;
用初等数学推导典型刚体转动惯量公式
4.
An Error-Reducing Method to Determine the Moment of Inertia of Rigid Body;
一种减少误差刚体转动惯量的测定方法
5.
Study of Rigid Body Rotation Intertia Experiment Based on Hall Switch Sensor Again
基于霍尔传感器刚体转动惯量实验的再研究
6.
The Rotational Inertia for an Arbitrary Quadrilateral Rigid Plane and Its Inertia Principal Axis
四边形刚体平板的转动惯量与惯量主轴
7.
A Discussion on the General Shifting Transformation and General Rotating Transformation of Moment of Inertia of Axis of Coordinate System;
论刚体对坐标轴转动惯量的平移和旋转变换
8.
Academic Calculating of Moment of Inertia on Rigid Body to a Spatial Axis with Arbitrary Orientation;
刚体对空间任意方向轴转动惯量的理论计算
9.
ROTATIONAL INERTIA OF AN ISOSCELES TRIANGLE RIGID PLANE AROUND CENTROID AXIS
等腰三角形刚体平板绕质心轴的转动惯量
10.
Symmetry of Moment of Inertia ang Magnetic Moment of Electrified Rigid Body Turning Around Axis;
定轴转动带电刚体的惯性矩与磁矩的对称性
11.
Newton's laws, concepts of momentum, energy, angular momentum, rigid body motion, and non-inertial systems.
牛顿定律,动量的概念,能量,角动量,刚体运动,以及非惯性系。
12.
The Rotational Inertia Formula for an Arbitrary Hexagon Unifom Rigid Plane about Perpendicular of Center-of-mass Axis;
任意六边形匀质刚板绕垂直板面质心轴的转动惯量公式
13.
On Physical Experimental Teaching From the Perspective of Measuring Object Rotational Inertia;
由测量物体的转动惯量谈物理实验教学
14.
MEASUREMENT AND COMPARISON OF ROTATIONAL INERTIA OF HUMAN BODY FOR CHINESE ADULT FEMALE;
中国成年女子人体转动惯量的测量与比较
15.
Research on method that electronic inertia simulates mechanic moment of inertia
电惯量模拟机械转动惯量方法的研究
16.
The rotational inertias of uniform rotational rigid surfaces about the around axis
均质旋转面绕旋转轴转动的转动惯量
17.
inertio comparator
摆轮转动惯量比较仪
18.
The discussion has served to emphasize the important role the inertia tensor plays in the discussion of the motion of rigid bodies.
讨论强调了惯性张量在论述刚体运动时所起的重要作用。