The strength of the gravitational wave determines how much an object will change in shape. Joint Inversion of Gravity and Magnetic Data with Varying Density and Constant Magnetic Susceptibility Interface Model 引力波的强度决定了物体形变的程度。变密度常磁化强度界面重磁联合反演
When we have gravity an object is influenced by the gravitational acceleration and the gravitational acceleration is a constant. 当我们考虑到重力时,物体受重力,加速度影响,重力加速度,是一个常数。
Radioactive decay of the nuclides in the process of the gravitational constant decrease 核素在引力常数减小过程中的放射性衰变
The result was a remarkably accurate estimate of a parameter called the gravitational constant, and from that Cavendish was able to calculate the density and mass of the earth. 测量结果惊人的准确,他测出了万有引力恒量的参数,在此基础上卡文迪许计算地球的密度和质量。
Constraints on the f ( R)-gravity Theories from a Time-varying Gravitational Constant 时变的引力常数对f(R)引力理论的限制
And now we're going to multiply that by the gravitational force constant. 我们现在把这个结果,和重力常量相乘。
Its basic parameters include long/ short half axis, spheriform oblateness, gravitational constant G and self-rotating angular velocity of the earth. 其基本参数包括椭球体长/短半轴和体扁率、地球引力常数及自转角速度等。
A new method is provided to measure the gravitational constant G that depends on the density of the body. 进一步从理论上提供检验不同质量密度的物体之间的引力常数是不同的实验方法。
The Gravitational Field of Global Monopole for a Non-null Cosmological Constant 非零宇宙常数GlobalMonopole的引力场
This paper has made a qualitative analysis and discussion for the cause of the variation of geocentric gravitational constant. 对地心引力常数的变化原因作了定性分析和讨论。
The Plane Gravitational Waves with the Cosmological Constant Λ≠ 0 宇宙常数∧≠0的平面引力波
Analysis and Discussion for the Cause of Variation of Geocentric Gravitational Constant 地心引力常数变化原因的分析和讨论
In the first section of this article, we introduce the gravitational spectral shifts of static gravitational field, and spectral shifts of gravitational fields with mass, or electric charges or cosmological constant. 本文第一部分系统地介绍了引力场的频移效应,如均匀引力场,静态引力场,质量源,电荷源,宇宙常数等等引力场中谱线的频移效应。
In this paper gravitational mass defect in charged static and spherically symmetric metric discussed by [ 1,3] is extended to the case in which charge is kept constant in the course of gravitational mass defect. 本文在文献[1,3]讨论荷电静态和球对称度规下的引力质量亏损的基础上进一步讨论电荷守恒的情况。
The plane gravitational waves with the cosmological constant A ≠ 0 are discussed. 本文讨论了宇宙常数∧≠0时的平面引力波问题。
The gravitational constant G is an important fundamental physics constant closely related to theoretical physics, astrophysics and geophysics, the precise measurement of G is faced with various kinds of difficulties and challenges, however. 万有引力常数G是一个与理论物理、地球物理和天体物理密切相关的基本物理常数,但G值的高精度绝对测量面临着种种困难。
An explanation of the cause of climate change is then suggested based on the possibility that the Universal Gravitational Constant ( G) may vary with time. 并且根据万有引力常数(G)随时间变化的可能性提出了关于气候变化原因的解释。
Experimental Determination of Gravitational Constant G by Mechanical Resonance Method 用机械共振法测引力常数G
The gravitational wave can be finally determined after the accumulation of the time span changes exceeding the soliton timing jitter constant and the measure precision. 当孤子运行时间差的变化超过这个常数时,并且超过测量分辨率和棒的热噪声时,引力波就能被探测到。