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1.
STUDY ON STOPPING POWER OF MONO-ENERGETIC ELECTRONS IN THE EXPERIMENT TO VERIFY RELATIVISTIC RELATIONSHIP BETWEEN MOMENTUM AND ENERGY WITH β PARTICLES
β粒子验证相对论动量-能量关系实验中单能电子阻止本领的研究
2.
Nielsen equation of relativstic rotational variable mass system;
相对论转动变质量系统的Nielsen方程
3.
Ценов equation of relativistic rotational variable mass system;
相对论转动变质量系统的Ценов方程
4.
Research on the Concepts Mass,Energy and Kinetic Energy in the Special Theory of Relativity
狭义相对论质量、能量和动能概念的研究
5.
Electronic spin is not the relativistic effect of the orbital angular momentum
电子自旋不是轨道角动量的相对论效应
6.
Relativistic Consistent Angular-momentum Projected Shell Model and Its Appkications;
相对论自治角动量投影壳模型及其应用
7.
Relativistic universal D′Alembert principle of the rotational variable mass system;
转动变质量系统的相对论性万有D′Alembert原理
8.
This experiment is going to validate the relations between the momentum and kinetic energy by determining the momentum and the kinetic energy of the celerity electron at the same time.
本实验通过对快速电子的动量及动能的同时测定来验证动量和动能之间的相对论关系。
9.
relativistic rate of energy loss
相对论性能量损失率
10.
nonrelativistic quantum mechanics
非相对论性量子力学
11.
relativistic increase of mass
质量的相对论性增加
12.
The relativistic mechanics in chapter 21 is circumscribed with primary emphasis on the concepts of energy and momentum.
第二十一章的相对论性力学主要限于强调能量和动量的概念。
13.
The components of relativistic momentum don t include the item of Σ_z in spherical coordinate system;
相对论性动量算符在球面坐标系中的分量不会出现Σ_z项
14.
Non-Noether conserved quantities for nonholonomic controllable mechanical systems with relativistic rotational variable mass
相对论性转动变质量非完整可控力学系统的非Noether守恒量
15.
In the first chapter we discuss the relativistic kinematics at a quantum mechanical level.
第一章我们在量子力学的基础上讨论了相对论运动学。
16.
Kane s equations of variable moment of inertia nonholonomic rotationals relativistic systems in terms of quasi-coordinates;
变转动惯量非完整转动相对论系统在准坐标下的Kane方程
17.
Equations of motion of nonlinear nonholonomic relativistic systems in poincaré-Четаев variables;
Poincaré-Четаев变量下非线性非完整转动相对论系统的运动方程
18.
"According to relativity theory, this is not so; all measurements depend on the relative motions of the observer and the observed."
根据相对论,这些测量结果是不同的。所有的测量取决于观察者与观察目标的相对运动。