Fibonacci Dimension (斐波那契維度)
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冥想、大腦、量子、催眠、韃靼文明、地球
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零陵香豆树(Tonka bean tree)如何利用闪电 - 农业/植物与电培养系列8

零陵香豆树进化出极强的导电性,使其能够在雷击中幸存下来,并消灭与之竞争的邻近植物和寄生藤蔓。这种适应性变化与树木内部的导电性和较低的树干含水量有关,这为零陵香豆树的生长创造了开阔的空间和更多的光照。
目前无任何应用此树作为自由能上的讨论。

Tonka bean tree wielding lightning explained - Agriculture/Plants and Electroculture Series 8
The Tonka bean tree has evolved to conduct electricity from lightning strikes exceptionally well, allowing it to survive these events and eliminate competing neighboring plants and parasitic vines. This adaptation, which involves the tree's internal conductivity and low trunk moisture, creates open space and more light for the Tonka bean tree to thrive.
There is currently no discussion of the application of this tree to free energy.
云海中的台北101大楼 - 台北天空的电离层 -1

这不是个别现象,这样情景还蛮常见的,在特定天气下,显示了台北天空的具两层明显不同电离层。

另可参考:建筑隐藏了什么15 https://t.me/Fibonacci_adj/778

Taipei 101 in a Sea of ​​Clouds - Taipei's Ionosphere -1

This isn't an isolated phenomenon; it's quite common. Under certain weather conditions, Taipei's sky displays two distinct ionospheres.

Also see: What Buildings Hide 15 https://t.me/Fibonacci_adj/778
云海上的台北101 - 台北天空的电离层 -2

这不是个别现象,这样情景还蛮常见的,在特定天气下,显示了台北天空的具两层明显不同电离层。
不管古文明或现代文明,定海神针都是需要的。

另可参考:建筑隐藏了什么15 https://t.me/Fibonacci_adj/778

Taipei 101 in a Sea of ​​Clouds - Taipei's Ionosphere -2

This isn't an isolated phenomenon; it's quite common. Under certain weather conditions, Taipei's sky displays two distinct ionospheres.
Whether it is ancient civilization or modern civilization, a electric needle as astabilizer is needed.

Also see: What Buildings Hide 15 https://t.me/Fibonacci_adj/778
2025年8月5日中午台北超级大风大雨 - Chemtrails 化学尾迹 and HAARP 系列24

2025手8月5日早上台北天气不是很热,整天有云,但到了中午12点台北突然大风大雨,可是周围地区的新北市依然看得到阳光。卫星图显示台北周围起了低气压的涡流,像台风,但即使是午后雷阵雨只会是强烈对流,并不会产生涡流。
这是奇怪的涡流,虽然未必与HAARP有关,但值得留下记录。

Extremely strong winds and heavy rain in Taipei at noon on August 5, 2025 - Chemtrails and HAARP Series 24

On the morning of August 5, 2025, Taipei wasn't very hot, with clouds all day. However, at noon, Taipei suddenly experienced strong winds and heavy rain, while the surrounding area of ​​New Taipei City still saw sunshine. Satellite images showed a low-pressure vortex forming around Taipei, resembling a typhoon. However, even afternoon thunderstorms would only be strong convection, not a vortex.
This is a strange vortex, and while it may not be related to HAARP, it's worth documenting.
范德华力(Van der Waals Forces)本质上是一种静电作用力- 物体的电气性展示与静电实验8-1 (静电无处不在7-1)

范德华力包括原子、分子间的吸引力和排斥力,以及其他分子间力。它与共价键和离子键的不同之处在于,它是由附近粒子波动极化的相关性引起的,此时原子间的距离称为范德华接触距离。
因此,这种力是由电子密度的瞬时变化引起的,若在气体或液体的平衡瞬间改变连结的距离,就会造成很大的排斥力或吸引力。

范德华力同时也解释为什么壁虎会爬墙、蛋白质如何折叠、液体如何凝结,范德华力涵盖的范畴非常巨大。

视频2:介绍范德华力
视频3:为什么面粉粘在一起,而生米粒却直接掉下来
Van der Waals forces are essentially electrostatic forces - Electrical flow properties of objects and static electricity experiment8-1 (static electricity everywhere7-1)

Van der Waals forces include the attractive and repulsive forces between atoms and molecules, as well as other intermolecular forces. Unlike covalent and ionic bonds, they arise from the correlation of the polarization fluctuations of nearby particles. The distance between atoms in this case is called the van der Waals contact distance.

Thus, this force is caused by instantaneous changes in electron density. If the distance between bonds changes momentarily during equilibrium in a gas or liquid, a significant repulsive or attractive force will result.

Van der Waals forces also explain why geckos climb walls, how proteins fold, and how liquids condense. The scope of van der Waals forces is vast.

Video 2: Introduction to van der Waals forces
Video 3: Why flour sticks together, but raw rice grains fall apart
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范德华力(Van der Waals Forces)非常常见- 物体的电气性展示与静电实验8-2 (静电无处不在7-2)

范德华力包括原子、分子间的吸引力和排斥力,以及其他分子间力,此时原子间的距离称为范德华接触距离。若在气体或液体的平衡"瞬间"改变连结的距离,就会造成很大的排斥力或吸引力,见视频的每个实验。

Van der Waals forces are very common - Electrical Properties of Objects and Electrostatic Experiment 8-2 (Static Electricity is Everywhere 7-2)

Van der Waals forces include the attractive and repulsive forces between atoms and molecules, as well as other intermolecular forces. The distance between atoms in this situation is called the van der Waals contact distance. If this contact distance is "instantaneously" changed during equilibrium in a gas or liquid, a significant repulsive or attractive force will result (See videos for each experiment).