sg电子老虎机-银行破坏家

光電學院學術報告

來源: 光電學院 作者:劉福莉 添加日期:2019-10-21 16:27:31 閱讀次數(shù):

報告題目:Schr?dinger’s Cat and His Timeless (t = 0) Quantum World
  報 告 人:Francis T. S. Yu(楊振寰)教授, (The Pennsylvania State University,美國賓夕法尼亞州立大學)
  報告時間:2019年10月22日,上午9:30
  報告地點:賽博南樓412會議室
  報告摘要:
  One the most famous cats in science must be the Schr?dinger’s cat in quantum mechanics, in which the cat can be either alive or dead at the same time, unless we look into the Schr?dinger’s box. The life of Schr?dinger’s cat has been puzzling the quantum physicists for over eight decades as Schr?dinger disclosed it in 1935. In this article, I will show that the paradox of the cat’s life is primarily due to the underneath subspace in which the hypothetical subatomic model is submerged within a timeless empty subspace (i.e., t = 0). And this is the atomic model that all the particle physicists, quantum scientists and engineers had been using for over a century, since Niles Bohr’s proposed in 1913. However the universe (our home) is a temporal space (i.e., t > 0) and it does not allow any timeless subspace in it. I will show that by immersing the subatomic model into a temporal subspace, instead a timeless subspace, the situation is different. I will show that Schr?dinger’s cat can only either alive or dead, but not at the same time, regardless we look into or not look into the Schr?dinger’s box. Since the whole quantum space is timeless (i.e., t = 0), we will show that, the fundamental superposition principle fails to exist within our temporal space but only existed within a timeless virtual space. This is by no means of saying that timeless quantum space is a useless subspace. On the contrary it has produces numerous numbers of useful solutions for practical application, as long the temporal or causality condition (i.e., t > 0) is not the issue.  In short, we found the hypothesis of Schr?dinger’s cat is not a physical realizable postulation and his quantum mechanics is timeless behaves like mathematics does. In which we see that his fundamental principle is timeless and not existed within our temporal universe.
報告人簡介:
  Francis T.S. Yu is an Evan Pugh Emeritus Professor of Electrical Engineering at The Pennsylvania State University, University Park. The author and co-author of twelve books and co edited of four books. He is a Life Fellow of The IEEE, The OSA and The SPIE. Dr. Yu was the 2004 Dennis Gabor Award winner of The International Society for Optical Engineering and the co-recipient of The IEEE 1998 Donald G. Fink Prize Award, and 2016 Emmitt Leith Medal of The Optical Society of America.  Dr. Yu received his Ph. D. degree (1964) in electrical engineering from The University of Michigan, Ann Arbor. He has published over 300 refereed papers in various technical journals and the recipient of The 1993 Premier Research Award of the Penn State Engineering Society and the 1993 Faculty Scholar Medal at Penn State University. He is an Honorary Professor of The National Chiao Tung University (Taiwan), The Nankai University (China) and others.
  歡迎廣大師生參加! 

光電學院
2019年10月21日

 


分享至:
百家乐最佳投注法下载| 皇家金堡娱乐城| 百家乐摇色子网站| 大发888破解老虎机| 老虎百家乐官网的玩法技巧和规则| 百家乐一拖三| 金百家乐官网博彩公司| 百家乐赌场视屏| 广州百家乐官网牌具公司| 百家乐单机版游戏下载| 百家乐官网网上投注系统| 博彩百家乐字谜总汇二丹东| 玉山县| 顶级赌场手机版官方| 百家乐官网路单走势图| 大发888新澳博| 百家乐官网太阳城小郭| 博发百家乐的玩法技巧和规则 | 澳门百家乐官网怎么才能赢钱| 百家乐纯数字玩法| 网上百家乐官网危险| 百家乐最佳打| 现金百家乐官网攻略| 威尼斯人娱乐城地址lm0| 老k百家乐官网的玩法技巧和规则| 大发888心得| 百家乐客户端LV| 网上百家乐官网信誉| 利澳娱乐城| 百家乐翻天超清| JJ百家乐官网的玩法技巧和规则| 百家乐官网如何视频| 大发888更名网址6| 太阳城百家乐群| 赌博百家乐官网赢钱方法| 邳州市| 太阳百家乐官网3d博彩通| E乐博| 伯爵百家乐的玩法技巧和规则| 百家乐视频游戏界面| 百家乐官网倍投工具|