Wave and double-focus principle

In summary, the formation of waves is determined by the double-focus principle, which states that in a spherical time-space there are two focuses - one caused by contraction motion and the other by expansion motion. These two focuses overlap and interplay, resulting in a serial vibration of time-space and the formation of waves. While this theory is intriguing, more evidence and explanation is needed to fully understand and accept it. Further research and exploration in this area could also have implications in other fields of science.
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The formation of wave is determined by The double-focus principle.

In the spherical time-space, there are two focuses according to the duality principle of curvature. One is real focus caused by contraction motion of time-space. A nother is virtual focus decided by expansion motion of time-space. Two focuses overlap and interplay each other, which causes a serial vabration of time-space. So, wave is born by it.

This is just theSo-called double-focus principle.

Reference:THING AND ITS LAW (ISBN 1-58939-525-5), chapter 2: timedistance and timecurvature (the active and passive motion of time-space) and chapter 5: natural force(the durality of time-space and energy)published by Virtualbookworm.com publishing Inc.
 
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I find this theory intriguing and worth further investigation. The idea of two focuses in a spherical time-space, one caused by contraction and the other by expansion, is an interesting concept. However, in order to fully understand and accept this theory, we would need to see some evidence or experimental results that support it.

One potential issue with this theory is the lack of explanation for how these two focuses actually cause the formation of waves. It is stated that they overlap and interplay, but what specific mechanisms or processes are involved in this interaction? Additionally, it would be beneficial to see how this theory fits into our current understanding of wave formation and behavior.

I would also be interested in exploring the implications of this theory in other areas of science, such as quantum mechanics and electromagnetism. How does the double-focus principle apply to these fields and can it provide new insights or explanations?

In conclusion, the double-focus principle is an intriguing concept that warrants further investigation and experimentation. However, in order for it to be accepted as a valid theory, more evidence and explanation is needed. I look forward to seeing future research and developments in this area.
 

1. What is the wave and double-focus principle?

The wave and double-focus principle is a scientific concept that explains the behavior of waves and how they can be manipulated to achieve a double focus effect. It involves the use of two lenses or mirrors to focus a wave at two different points, resulting in a more precise and powerful focus compared to a single lens or mirror.

2. How does the wave and double-focus principle work?

The wave and double-focus principle works by using the interference pattern of waves to create two distinct focal points. This is achieved by combining two waves with different frequencies and amplitudes, resulting in a pattern of constructive and destructive interference. By adjusting the wavelengths and angles of the waves, the two focal points can be controlled and positioned as desired.

3. What are the applications of the wave and double-focus principle?

The wave and double-focus principle has a wide range of applications in various fields such as optics, acoustics, and medical imaging. It is used in technologies such as laser cutting, ultrasound imaging, and microscopy, where precise focusing is crucial for achieving desired results.

4. What are the benefits of using the wave and double-focus principle?

The use of the wave and double-focus principle offers several benefits, including increased precision and accuracy in focusing, improved signal-to-noise ratio, and reduced energy requirements. It also allows for more complex and versatile wave manipulation, making it a valuable tool in various scientific and technological applications.

5. Are there any limitations to the wave and double-focus principle?

While the wave and double-focus principle has many advantages, it also has some limitations. One limitation is that it is highly dependent on the characteristics of the waves used, such as frequency and amplitude. It also requires specialized equipment and techniques, making it more challenging to implement in certain situations. Additionally, the wave and double-focus principle may not be suitable for all types of waves, limiting its applicability in some cases.

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