All you gave me was the " Principle of Healing Light ". This isn't related to a novel. There isn't enough information for me to integrate and polish it according to the requirements. You can tell me more details, such as which novel mentioned this concept, and is there any specific explanation about it?
The reaction principle of the purple light was as follows: The fluorescent reaction of a purple light lamp was based on the principle of luminescence. When a violet light (a violet flashlight) shone on certain substances, these substances would selectively absorb the violet light emitted by the violet light. The molecules would be stimulated, and they would emit visible light of the same wavelength and different intensity. When the light stopped, the fluorescence disappeared. When the infrared rays hit the fluorescent substance, there were three general situations: part of the infrared rays were reflected; part of the infrared rays were absorbed by the fluorescent substance; and part of the infrared rays were transmitted. The fluorescence occurred due to the absorption of the fluorescent substance. After the fluorescent substance absorbed the infrared rays, the internal energy state of the molecules changed, showing a transition between different energy levels and releasing fluorescence. For the Lighthouse series of purple lamps, the principle of light was to bombard the special fluorescent material inside the lamp with electric arcs after being energized, and then produce purple spectrum light waves. The violet light could be divided into the UUA band (320 - 400 <anno data-annotation-id ="00000100 - 400a-400a-400a-800a-8000000000000"> wave-length </anno>), the UVP band (275 - 320 </anno>), the UVP band (200 - 275 </anno>), and the UVR band (100 - 200 </anno>). Among them, the fluorescent powder in the purple tube could convert the arc energy into long-wave violet radiation in the UVA-band, such as the UVA-band of 340 - 380 run, and the UVA-band of 365 run was more suitable for checking the fine traces of the collection and fluorescent anti-counterfeit work. <a href="/?from=ask_words" style="color:red" target="_blank">Read more exciting novels for free</a>
The principle of the light sail spacecraft was to use the light pressure produced by the photon to obtain thrust. In the universe, the photons emitted by the stars were like the wind generated by the atmospheric circulation on Earth. They could become the power source for the spacecraft to move forward. When the light sail expanded to a large enough area, the thrust generated by the photon impact on the light sail would cause the spacecraft to move. For example, the light sail of the light sail spacecraft was made of special materials, such as aluminum plated Myra. Its thickness could be as thin as a few hundred atoms in diameter. When the spaceship was illuminated by light, it could use the light sail to carry the light pressure to obtain energy and continue to accelerate. For example, the spacecraft in the " Breakthrough Starshot " program of the United States only weighed about 10 grams. It was integrated with a variety of small but efficient instruments. The external light sail could theoretically accelerate the spacecraft to tens of thousands of kilometers per second in a few minutes under the illumination of light, and finally stabilize at 20% of the speed of light. The novel " Hundred Years of Spaceship " is equally exciting. Everyone is welcome to click and read it!
According to the special theory of relativity, the principle of light speed constancy pointed out that the speed of light in vacuum was the same in different reference frames, and it had nothing to do with the relative motion of the light source and the observer. At present, Mexican physicist Michael Acubierre proposed the theoretical mechanism of the Acubierre engine in 1994, which could allow a spacecraft to distort space-time in a " warp bubble " formed around it, thus allowing it to fly faster than the speed of light. Although this mechanism had many risks and problems, it could be used as a theoretical exploration of the principle of light speed flight. However, there was no practical construction principle for a spacecraft that could reach the speed of light in the conventional sense. The novel " Hundred Years of Spaceship " is equally exciting. Everyone is welcome to click and read it!
The formation of rainbow light and shadow was related to refraction and reflection. Sunlight was actually a combination of seven colors of white light. When it was affected by certain optical conditions, color separation would occur. During the formation of the rainbow, there are many small water droplets that we can't see scattered in the air after the rain. These small water droplets can refracted and reflect sunlight. When sunlight enters the water droplet, it will be refracted into the water droplet. After the light is reflected once by the inner wall of the water droplet, it will be refracted out of the water droplet. This process includes two refracted and one reflected. Because different colors of light have different angles of refraction, the emitted light will form different colors. Finally, we can see a rainbow. Among them, the red light refracted at an angle of about 42°, and the purple light refracted at an angle of about 40°. Therefore, the light in the rainbow would be red in front and purple behind. This was the bright rainbow band that we usually saw, also known as the main rainbow. At the same time, there was a blurry rainbow outside the main rainbow, which was in the opposite color order from the main rainbow. It was called the secondary rainbow (neon). The secondary rainbow was formed by sunlight entering from the bottom of the water droplet, and after two reflections and two refraction. Due to the additional reflection, the rainbow's seven-color arrangement was opposite to the rainbow. Moreover, due to the additional reflection, a portion of the light was lost, so the brightness of the rainbow was lower than that of the rainbow. In kindergarten, there were some simple ways to demonstrate the principle of rainbow light and shadow. For example, using a triangular prism to refracted sunlight could break down white light into seven colors of light. This was because the triangular prism refracted different colors of light to different degrees. Purple light had the greatest degree of refraction, and red light had the smallest degree. Thus, one could see the colorful arrangement of light. <a href="/?from=ask_words" style="color:red" target="_blank">Read more exciting novels for free</a>
There were many devices invented based on the principle of light reflection, such as mirrors, which reflected light when it hit the mirror, so that people could observe the image of the reflected object. The telescope used the principle of light reflection and refraction to allow people to see distant objects. The lenses and lenses inside reflected and refracted light to magnify and focus the distant light so that a clear image could be formed in the eyes. Microscopes also used the principle of light reflection and refraction to reflect and focus light through lenses and lenses, so as to observe micro-scale objects and cells. Projectors used the principle of light reflection and transmission to magnify the image and project it onto the screen. The light produced by the light source was processed by lenses and mirrors, and then focused on the screen to form a clear image. An optical prism could separate and focus light through refraction and reflection, and was widely used in optical instruments and scientific experiments. A photo sensor could detect the existence and location of an object through reflection and absorption of light, and was commonly used in automatic doors, photo switches, and other equipment. There were also infrared reflective warmers. <a href="/?from=ask_words" style="color:red" target="_blank">Read more exciting novels for free</a>
There were many factors to consider when choosing a dome light umbrella. In terms of fabric structure and usage, there were white, silver, gold, blue, transparent umbrellas, umbrella boxes, giant parabola umbrellas, and many other types. The white reflective umbrella was softer. Although it was a little harder than a soft box of the same size, it could create a soft light with moderate light ratio, rich shadow tone, and wide light field. It could be used as a more common choice. The light from the silver umbrella was very hard and difficult to control, so it was generally not recommended. Different colors and types of umbrellas had different light effects. It was necessary to choose the appropriate dome light umbrella according to the actual shooting needs, such as the softness of the required light and the difficulty of controlling the light type. <a href="/?from=ask_words" style="color:red" target="_blank">Read more exciting novels for free</a>
The principle of light reflection could be explained by Huygens 'principle. Huygens' principle pointed out that every point on the spherical wave surface was a sub-wave source of a secondary spherical wave. The speed and frequency of the sub-wave were equal to the speed and frequency of the primary wave. The envelope of the sub-wave surface at each moment was the total wave surface at that moment. When light travels to different substances, it changes its direction of transmission at the interface and returns to the original substance. This is the reflection phenomenon of light. The reflected light and the incident light are on the same plane as the normal line. The reflected light and the incident light are separated on both sides of the normal line. The reflection angle is equal to the incident angle. In pictures, for example, the " ghostly shadow " phenomenon was the reflection of light through the lens of the camera, which was then captured by the LCD sensor. In the original art light and shadow production, reflection was a phenomenon caused by the reflection and refraction of light on the surface of the object. It could make the object in the picture interact with the environment to create a real light and shadow effect. <a href="/?from=ask_words" style="color:red" target="_blank">Read more exciting novels for free</a>
When light travels to the interface between two media, if the degree of unsmoothness of the interface at the point of incidence is much smaller than the wave length, it can be regarded as a smooth interface. At this time, a part of the light will return to the original medium. This phenomenon is the reflection of light, which is also the principle of the reflection of light and shadow. The reflection of light on a smooth interface is called mirror reflection (or single-directional reflection). The reflected light, the incident light, and the normal are in the same plane. The reflected light and the incident light are on both sides of the normal, and the reflection angle is equal to the incident angle. If the interface is not smooth enough to be larger than the wave length, it will produce diffuse reflection. If there is both mirror reflection and diffuse reflection, it is called mixed reflection. If the brightness of light in different directions is the same in diffuse reflection, it is called uniform diffuse reflection. In the same reflection process, some of the light of some frequencies are reflected more, which is called selective reflection. It can use coating technology to change the optical properties of the interface of the medium, so that the reflected light can reduce or increase the light component of a certain frequency to adapt to the requirements of different optical components. <a href="/?from=ask_words" style="color:red" target="_blank">Read more exciting novels for free</a>
The effects of phototherapy covered many aspects. From the perspective of the skin, such as in the treatment of vitiligo, light can control the development of the disease and promote the regeneration of the dark. Phototherapy equipment such as large rows of lights have a variety of effects on the skin, which can alleviate the instability of sensitive muscles. It can be used for maintenance after medical beauty projects to tighten the skin and fade small wrinkles. It can also be used to repair and brighten the skin after the summer sun, as well as special care for private areas, improve the scalp and prevent hair loss. In the living environment of the elderly, phototherapy had a special meaning. As they grew older, the elderly's physical functions declined and they were prone to eye diseases. They had special requirements for indoor lighting. Intelligent lighting systems were important in the design of aging. It could customize a customized lighting plan according to the living habits and health of the occupants, providing a comfortable and healthy light environment. This was also a manifestation of light therapy. From a physical and mental perspective, light could infuse warmth and energy into one's body and mind. When one was troubled on the spiritual level, one could find a suitable light source to heal themselves. Moreover, it was currently known that light was the best way to activate the brain's neurons, strengthen the transmission efficiency of neurons and tributaries, and repair the aging and damage of the brain's nerves. Light's " cultivation " was known as " holographic healing " by scientists. It covered multiple levels of healing skills in the body, mind, and spirit, helping to improve self-healing functions in an all-round way.
As long as people held the pearl in their hands and saw their loved ones, the pearl would glow. The exact principle was unknown.