期刊文献+

力学定理探讨

Discussion on the Mechanics Theorem
下载PDF
导出
摘要 本文通过相对论中质速关系式m=m_0/√[1-(v/c)~2]和万有引力定律在实际运用分析,并结合E=mc^2进一步分析得出新的质速关系式◎v=◎_0(1+v1/c^2)v。当v1=1米/秒,则有v趋近于c时lim◎v=e◎_0(e为常数)。这一结论否定了爱因斯坦关于物体的运动速度趋近于光速时,质量无限制增大的结论。在对物体相互作用分析中发现物体间相互作用存在两种力,一种是作用物体所施的力,另一种是被作用物体所受的力。物体在运动学中,由于速率变化,施力物体的性质,决定了受力物体所受力永远不存在恒定。从而得出被作用物体的加速度表达式为a(v)=(m/△t)(V_0-v)/◎_0(1+v_1/c^2)v进而得出受力物体所受力的表达式F(v)=◎va(v),为今后用力学研究物质运动准备了新的工具。 In this paper, through the analysis of the practical application of m=m0/[1-(v/c)^2] and the law of universal gravitation in the theory of relativistic mass velocity relation, and combining E = MC2 to further analyze the new equation of mass velocity relation, v = 0(1+v1/c^2) v. When V1=1 m/s, V tends to C when Lim = v = e * 0(E is constant). This conclusion negates Einstein's conclusion that when the velocity of an object moves towards the speed of light, the mass is unlimited. In the analysis of the interaction of objects, it is found that there are two forces on the interaction between objects,one is the force acting on the object and the other is the force that the object is subjected to. In the kinematics of a body,due to the rate of change, the force of the object exerting force determines that the force exerting on the object is never constant. The expression of the acceleration of the affected object is a(V) =(m/delta T)(V0 V)/0(1+v1/c^2) V and then the expression of the force of the force object is obtained, and F(V) =-V A(V A) has been prepared for the future use of mechanics to study the movement of material.
作者 闫赤元 YAN Chiyuan(Huanyu Institute of life sciences,Tianjin Baodi District Tianjin 301801)
出处 《办公自动化》 2018年第14期21-23,共3页 Office Informatization
关键词 质速关系式m=m0/√[1-(v/c)^2] 万有引力定律 质能关系式E=mc^2 作用力F=(m/△t)V0 被作用受力FV=(m/△t)(V0-v) 新的质速关系式◎v=◎0(1+v1/c2)^v 新加速度表达式a(v)=(m/△t)(V0-v)/◎0(1+v1/c2)^v 新力学定理表达式F(v)=◎va(v) Mass velocity relation m=m0/√[1-(v/c)^2] Law of universal gravitation Qualitative energy relation E =mc^2 Force F=(m/△t)Vo Expression of new accelerationa(v)=(m/△t)(V0-v)/◎0(1+v1/c^2)v New mechanics theorem expression F(v)=◎v a(v)
  • 相关文献

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部