英文爱情短信:经典英文爱情短信

英文爱情短信:经典英文爱情短信

1. I love you not because of who you are, but because of who I am when I am with you.

  爱一个人不是因为他(她)是谁,重要的是和他(她)在一起有感觉。

  2. The worst way to miss someone is to be sitting right beside him knowing you cant have him.

  思念的痛苦在于他就在你身边,你却不能拥有他。

  3. Never frown, even when you are sad, because you never know who is falling in love with your smile.

  即使情绪很低落,也不要皱眉,想想爱你的人是如何着迷与你的笑容。

  4. To the world you may be one person, but to one person you
  may be the world.

  对于世界来说,你是渺小的;但他(她)却把你视为独一无二的珍宝。

  5. Dont cry because it is over, smile because it happened.

  不要因为爱而伤心落泪,曾经拥有才是最重要的。

I drop a tear in the ocean and the day you find it is the day I will
stoplove you

I love three things in the world , the sun ,the moon and you .The sun
f orday, the moon for night, and you for ever!

People laugh and people cry, some give up some always try, some say hi
andsome say bye, others may forget you but never I.

I open my wallet and found it empty, reached into my pocket and found a fewcoins, searched my life and I found you! Then I realized how rich am I!



You may fall from mountain, you may fall from tree, but the best way to fall, is fall to my love



If god will have created something more beautiful than you, he would have kept it to himself

Love is not blind - it sees more, not less. But because it sees more, it is willing to see less.

  Rabbi Julius Gordon

  For one human being to love another; that is perhaps the most difficult of all our tasks, the ultimate, the last test and proof, the work for which all other work is but preparation.

  Rainer Maria Rilke (1875 - 1926)

  He who is in love is wise and is becoming wiser, sees newly every time he looks at the object beloved, drawing from it with his eyes and his mind those virtues which it possesses.
六自由度机械臂ANN人工神经网络设计:正向逆向运动学求解、正向动力学控制、拉格朗日-欧拉法推导逆向动力学方程(Matlab代码实现)内容概要:本文档围绕六自由度机械臂的ANN人工神经网络设计展开,详细介绍了正向与逆向运动学求解、正向动力学控制以及基于拉格朗日-欧拉法推导逆向动力学方程的理论与Matlab代码实现过程。文档还涵盖了PINN物理信息神经网络在微分方程求解、主动噪声控制、天线分析、电动汽车调度、储能优化等多个工程与科研领域的应用案例,并提供了丰富的Matlab/Simulink仿真资源和技术支持方向,体现了其在多学科交叉仿真与优化中的综合性价值。; 适合人群:具备一定Matlab编程基础,从事机器人控制、自动化、智能制造、电力系统或相关工程领域研究的科研人员、研究生及工程师。; 使用场景及目标:①掌握六自由度机械臂的运动学与动力学建模方法;②学习人工神经网络在复杂非线性系统控制中的应用;③借助Matlab实现动力学方程推导与仿真验证;④拓展至路径规划、优化调度、信号处理等相关课题的研究与复现。; 阅读建议:建议按目录顺序系统学习,重点关注机械臂建模与神经网络控制部分的代码实现,结合提供的网盘资源进行实践操作,并参考文中列举的优化算法与仿真方法拓展自身研究思路。
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