What happens if humans see a wifi wave?

Imagine a world without colors

Imagine one day, human vision not only captures the color of the rainbow, but also the invisible signal that has filled the air. WiFi waves are actually always around because they move to carry data from one device to another without ever being seen. The frequency is in the same electromagnetic spectrum as the light, only the position is far beyond the reach of the eye.

If the visual ability of humans shifts a little to that range, the daily space view will change drastically. A room that looks empty can suddenly look dense by the radiance of energy that continues to move. Check out the following explanation!

The human eye captures 2.4 GHz radiation as a new light



If the eye is able to receive a frequency of 2.4 GHz or 5 GHz, the visual world will increase one layer of color that never existed before. WiFi waves have a wavelength of about 12.5 centimeters at 2.4 GHz, much longer than red light that is only hundreds of nanometers. That is, the object will not look as detailed as ordinary light, but rather like a thick fog that fills the room. The router (router) in the corner of the house may seem like a large lantern with a beam spread out in all directions.

Because the wavelength is large, the boundaries of objects such as tables or walls will not appear sharp in this spectrum. The human body can reflect and absorb some of the signal so that everyone will look like a shadow moving in the sea of invisible radiation. The metal surface reflects stronger, creating flashes or bright spots that change as the position shifts. A closed room can look like it’s filled with slow moving clouds following data traffic.

The walls of the house refract the signal like frosted glass



WiFi waves are able to penetrate the wall, but its strength decreases every time it passes through solid material. If it can be seen, the concrete wall will look like a semi-transparent layer that dims the radiance from behind it. Wood and gypsum may look thinner in this spectrum, while the metal appears as a thick barrier. Every house will have a light and dark map depending on the building material.

The phenomenon of reflection and refraction makes the signal not move perfectly straight. In the corner of the room, the waves can accumulate and form a brighter area due to interference. Some points actually looked dim because the waves negated each other. This kind of visual map will explain why the connection is sometimes strong in one corner, but weakens just a few steps from it.

Electronic devices emit visible traces of data



Cell phones, laptops, to smart televisions continue to exchange data packages in the form of electromagnetic pulses. If seen, every photo upload or video call will bring up a fast flash that moves towards the router. Solid data traffic in an apartment or office will resemble a light storm that crosses each other. The city environment with multiple networks may seem much brighter than in remote areas.

Each device has an antenna with a different radiance character. The omnidirectional antenna propagates the signal in all directions, while the directional antenna concentrates energy to one side. This difference will be clearly seen in the form of a beam pattern even though the eye no longer relies on visible light. Digital activities that are usually quiet will turn into a continuous visual performance.

The human body absorbs some of the wifi energy



The body contains a lot of water, while water absorbs waves at a certain frequency. When a person stands between the router and another device, some of the energy will be muffled. If seen, the body may appear as an area that makes the radiance behind it slightly dim. This effect does not mean dangerous in the context of household wifi, but still indicates that the signal does interact with the material.

Changes in body position will directly affect the light distribution of the WiFi version. Simple movements such as stepping or sitting can change the direction of the reflection. In a small room, the movement of one person can shift the bright and dim area. This picture helps understand why connections sometimes change just because people move places.

The sky of the city is filled with layers of frequencies



Wifi is not the only radio wave in the air. There are cellular signals, television broadcasts, FM radio, to satellite communications that occupy different frequencies. If the entire spectrum is visible, the city sky will be filled with a layer of light with different colors or intensity according to the wavelength of each. The downtown area may seem more congested than the relatively quiet rural area.

Each frequency layer has a different range and character. Waves with lower frequencies cover longer distances and penetrate obstacles more easily. In contrast, high frequencies carry larger data, but quickly weaken. The visual world will turn into a terraced landscape, no longer just an empty space.

The ability to see wifi waves will change the way humans understand space. This is because the air no longer seems empty, but is filled with active energy pathways at all times. Digital devices that have been silent all this time will actually look the most striking in the new visual landscape. If all the signals are really clear, can humans still feel that they live in a quiet and clean room from visual disturbances?

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