2022年12月19日 星期一

關於干涉儀與重力波之一些見解。 Insights on interferometers and gravitational waves.

【修己揚他/AskSelf】【意念/EN】【場域/FIELD】【時空/SpaceTime】【教育/Education】
關於干涉儀與重力波之一些見解。
Insights on interferometers and gravitational waves.


Nobel Prize 中央研究院 Academia Sinica

各位科學家,你們偵測到晃動或牽引力並非是引力波或重力波。目前還沒有這種事情和可能的技術,這必須要以時空意念來凝煉與匯集。

Scientists, the oscillation or force of pulls you detect are not pulling waves or gravitational waves. At present, there is no such thing and possible technology. This possibility must be converged and gathered with space-time EN.

我透過意念系統(天道系統)來執行的也算是一種重力意念的匯集,可以視為一種帶有意念能量聲音的重力波[1],所以中國的場域劇烈振盪,自然有類似地震和爆破音的時空呈現。

What I launched through the EN system (1-SYSTEM) can be regarded as a gathering of gravity ENs, which can be regarded as a kind of gravity wave with the EN energy sound [1], therefore the field in China oscillating violently and there would be space-time presentations similar to earthquakes and blasting sounds.

你們要從意念線的擺盪和勻質開始想起,也就是弦宇宙的概念。然後再從2D→3D透過場域將時空意念場景實踐(實體化),這需要有對應的意念路徑(也可以理解為量子路徑),可以透過幾近無限多的可能性同時發生。

You have to start thinking of the oscillation/swing and homogeneity of the EN lines, which is the concept of the string universe. Then, from 2D to 3D, the space-time EN scene is implemented (realized) through the field, which requires a corresponding EN path (also can be understood as a quantum path), which can happen at the same time with almost infinite possibilities.

意念線的擺盪和勻質的過程,被你們認為是重力波或引力波。但你們一直在把更豐富的東西當成最簡單化的物理現象,所以當然無法更進一步觀測或凝煉後製造出來啊!

The process of oscillating and homogenizing the EN line is considered by you as the gravitational wave or the pulling wave. But you have always regarded the more abundant things as the simplest physical phenomenon, so of course you can't make further observations or gather them out!

我是不明白你們研究這些要幹嘛?因為物理上的重力波很快就散行掉了,也就是呈現被物質吸收掉能量的過程。但你們得想清楚,假設物質一直吸收重力波,那吸收的能量去哪了?

I don't understand why you study these things? Because the physical gravitational wave will scatter quickly, that is, the process of energy being absorbed by matter appears. But you have to think clearly, assuming matter has been absorbing gravitational waves, where does the absorbed energy go?

主要是由於你們的認知只限定在物理範圍,所以根本造不出來或沒辦法進一步研究啊!?

The main reason is that your cognition is only limited to the physical range, so you can't make it or have no way to further study it!?

我給你們大家一個功課,請想辦法吸收所有物理震動轉成能量儲存,並馬上將此機構原理套用到所有的交通工具與壓縮機等機械上。這件事情本身就是自體動力學很重要的一環。還有將躁動的聲響與擾動降低之第一步(躁動本身就是一種散行)。

Let me give all of you a homework, please find a way to absorb all physical vibrations and convert them into energy and try to store, and immediately apply this mechanism principle to all vehicles and compressors and other machinery. This matter itself is a very important part of autodynamics. There is also the first step in reducing divergent sounds and disturbances (divergent is a kind of scattering).

實踐這個概念,不就有凝煉與壓縮重力的意念存在了嗎?

Practice this concept, isn't there the EN of ​​converging and compressing gravity?

[1] 2022-10-30_【修己揚他/AskSelf】【意念/EN】【場域/FIELD】
我發的訊息很簡單,「習近平,給我立刻停止所有對台灣的威脅。」
My message was simple, "Xi Jinping, stop all threats to Taiwan immediately."
https://porschewu0714.blogspot.com/2022/10/my-message-was-simple-xi-jinping-stop.html

★第一段
00:02_(小聲quiet)習近平給我立刻 XiJingPing, GeiWoLiKe...
00:05-06_立刻的「立Li」
00:15-20_(大聲loud)習近平XiJingPin

★第二段
00:30_習近 XiJing
00:34_平 Ping
00:38-39_給我立刻 GeiWoLiKe

★第三段
00:45-46_習近 the 
00:47_(大聲loud)平 Ping
00:48_(大聲loud)給我 GeiWo
00:49_(大聲loud)立刻 LiKe

Also share with 中央研究院 永續科學中心 Center for Sustainability Science, Academia Sinica 中央研究院天文及天文物理研究所(ASIAA) 中央研究院細胞與個體生物學研究所 國家科學及技術委員會 國家太空中心 NSPO 國家中山科學研究院公共關係室 國家中醫藥研究所-中醫藥文化記憶 國家中醫藥研究所 國發會 國研院台灣儀器科技研究中心 國研院 - 國家地震工程研究中心 國研院科政中心 國研院國網中心 原能會輻射偵測中心 報天氣 - 中央氣象局 報地震 - 中央氣象局 國家地震工程研究中心 NASA - National Aeronautics and Space Administration NASA Scientific and Technical Information (STI) Program NASA Technology Transfer Program NASA's James Webb Space Telescope NASA Sun Science COP27 COP27 Nature PanSci 科學新聞網 《科學人雜誌》 《科學人》粉絲團 Discovery 國家地理雜誌 National Geographic Magazine National Geographic National Geographic Adventure Science News Magazine Science Insider China Daily Sci-Tech China Xinhua News China Xinhua Sci-Tech CCTV Asia Pacific CCTV+ Wang Wenbin Chinese Foreign Ministry spokesperson 汪文斌 Tedros Adhanom Ghebreyesus The New York Times - Science Federal Aviation Administration 劉寶傑 關鍵時刻 李正皓

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