Примери за използване на Millimeter waves на Английски и техните преводи на Български
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Low-profile directional antennas for band of millimeter waves.
G uses millimeter waves that are known as extremely high frequency.
More controversial is the application of millimeter waves for 5G mobile subscriber access.
Millimeter waves also have more trouble passing through building walls.
While 4G's wavelengths travel along the surface of the skin, 5G's millimeter waves are more insidious.
Millimeter waves don't go through buildings and thus are absorbed by plants and rain.
The project is focused on the research of the novel low-profile antenna concepts for the band of millimeter waves.
Millimeter waves(MMWs) do not travel well through buildings and they tend to be absorbed by rain and plants.
In order to achieve faster speeds,5G relies on millimeter waves, which are even smaller than microwaves and operate at a higher frequency.
Millimeter waves are used by the U.S. Army in crowd-dispersal guns called Active Denial Systems.
Along with visible light,people will see microwaves, millimeter waves, and even images obtained in the infrared spectrum range.
Millimeter waves aren't useful everywhere, but are being considered for indoor spaces and crowded urban areas.
G will not only utilize the wireless frequencies already in use, butalso add higher frequency submillimeter and millimeter waves.
The new 5G technology Millimeter waves producing photons of much greater energy than 4g and Wi-fi.
Proposed structure should be modeled theoretically andverified by realization targeted on perspective bands of centimeter and millimeter waves.
But there is a catch, millimeter waves can't travel well through buildings or other obstacles and they tend to be absorbed by plants and rain.
This means that the reassurance we are being given- that these millimeter waves are too short to penetrate far into the body- is not true.
Millimeter waves, on the other hand, are non-ionizing because they have longer wavelengths and not enough energy to damage cells directly.
Dust in galaxies absorbs optical andinfrared light and re-emits the energy in longer millimeter waves which can be detected with ALMA.
Millimeter waves use frequencies from 30 to 300 gigahertz, which are 10 to 100 times higher than the radio waves used today for 4G and WiFi networks.
G likely will use the existing mobile spectrum space and extend it by also using higher frequencies,called millimeter waves because they're 1 to 10 mm long.
The new 5G wireless technology involves millimeter waves(extremely high frequencies) producing photons of much greater energy than even 4G and WiFi.
Built in only four years(1980 to 1984) at an elevation of 2850 meter, it is one of today's largest andmost sensitive radio telescopes for tracing millimeter waves.
Since the shorter length millimeter waves(MMV) used in 5G do not travel as far(or through objects), with our current number of cell towers the cell signal will not be.
If 5G is rolled out across the country,it will drastically increase the proximity of powerful millimeter waves to people everywhere, especially those living in cities and urban areas.
Since the shorter length millimeter waves used in 5G do not travel as far(and are more easily obstructed), the cell signal will not be reliable with the current number of cell towers.
Millimeter waves have historically been very difficult to generate, and building the required oscillators and other components have traditionally involved the application of exotic and expensive semiconductor processes, most notably gallium-arsenide(GaAs)- a key reason why lower frequencies have been utilized to a greater degree.
The new 5G wireless technology involves millimeter waves(extremely high frequencies) producing photons of much greater energy than even 4G and WiFi.“things” will be parts of the wireless future.
Since the shorter length millimeter waves(MMV) used in 5G do not travel as far(or through objects), with our current number of cell towers the cell signal will not be reliable. To compensate, many more mini cell towers must be installed.
These frequencies are called millimeter waves because they have wavelengths between 1 mm and 10 mm, while the wavelengths of the radio waves currently used by smartphones are mostly several dozen centimeters.