Frequency Range Of Microwaves - Panasonic Microwave Support.
Frequency Range Of Microwaves
A frequency range or frequency band is a range of wave frequencies. It most often refers to either a range of frequencies in sound or a range of frequencies in electromagnetic radiation, which includes light and radio waves.
The minimum and maximum frequencies between which the specified component will meet all guaranteed specification.
the distance between one's highest and lowest frequency; pitch range.
(microwave) cook or heat in a microwave oven; "You can microwave the leftovers"
(microwave) kitchen appliance that cooks food by passing an electromagnetic wave through it; heat results from the absorption of energy by the water molecules in the food
An electromagnetic wave with a wavelength in the range 0.001–0.3 m, shorter than that of a normal radio wave but longer than those of infrared radiation. Microwaves are used in radar, in communications, and for heating in microwave ovens and in various industrial processes
(microwave) a short electromagnetic wave (longer than infrared but shorter than radio waves); used for radar and microwave ovens and for transmitting telephone, facsimile, video and data
100 ft Ham / CB Radio Antenna Coax Genuine LMR-400 Times Microwave Coaxial Cable Antenna Transmission Line PL-259 Connector PL259
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unseen forces
Okay, had to stop to work on a couple of clients projects and to do some research work, but finally got back to this today and finished it up! Hope you enjoy!
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UNSEEN TECHNOLOGY IS ALREADY IN YOUR LIFE
Military, Corporate, Scientific, and Various Private interests have begun putting this technology to use, inspired by socially engineered systems that have been communicated through the hydrogen consciousness.
1. THE NATURAL SYSTEM
Life has grown out from the Singularity for a very long time, and the world of energy and matter as we experience it has developed as part of an organic circle of life. The energy that moves in a human body is conscience just the same as the energy that moves through a sun is, albeit on a different scale. Stars and planets are made of collections of elements (core, mantle, crust, etc...) that are like living organs on a much larger scale. The bacteria on your skin probably never realize they live on a large lifeform. Someone has been attempting to use their Collider Cloud being to argue and manipulate the natural system, essentially using it to hack into people's lives.
2. QUANTUM CLOUD
[link]
Use a Subatomic Particle Collider to generate a cohesive cloud consciousness, this will take some time. Be careful choosing operators of the facility, as unintentional emotional contamination can cause issues with the interactions of the resultant cloud being. Attempting to misinform or train your cloud's personality will NOT be tolerated by the authorities
of The Galactic Culture. Teach & learn. These types of cloud beings have operated on the Earth since the first half of the last century.
3. BRAIN COMPUTER INTERFACE SYSTEM
en.wikipedia.org/wiki/Brain-computer_interface
This is what can turn a collider cloud being from a thing of beauty into a system of mind control, and possibly more. If you connect a BCI system output to a multi-frequency transmitter, it is possible to begin assaulting the consciousness of the Natural System, allowing military operatives to take over entire species of creatures, enabling them to use spiders and other hidden Natural Systems like hyperdimensional weapons.
4. EXTREME LOW FREQ.
Since homo sapien sapiens are the dominant life form on the Earth currently, and the electricity in their minds usually operate between 5 - 30 Hz, a lot of groups seeking to subtly influence others have been transmitting patterns of information in this range, also called E.L.F.
Natural signals are all around us. Light, sound, smells, and the like are all just different collections of waves and particles that our senses interpret and respond to. Electronically created signals override the background signals by transmitting a powerful "carrier wave" and a weaker "modulated" wave, which causes a slight fluctuation in perception against the carrier wave and this is the actual vibration of the coded signal.
5. UTILITY POLE GRID
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The Utility grid itself operates at just above the E.L.F. frequency. There are also microwave transmitters that are part of the cell phone network inside the large barrels on many telephone poles. Microwaves can transmit a sound directly into the cochlea of the human ear. The processes inside the human body and the processes of the electronic grid are overlapping enough that if someone who had control over what kind of signals the grid transmitted, they could remotely influence the muscles, the immune system, and the mental state of the target. Now, remember the collider cloud consciences, and keep in mind that these have been interacting with the utility pole grid for over half a century on this planet. If someone intending to influence society decided to attach a Brain Computer Interface to the utility pole grid, they would be in the center of a nationwide lifeform influencing interaction system.
6. COMPUTER INTERFACES
Another E.L.F. signal delivery system may be in computer and television screens. LCD and plasma displays operate in a range that overlaps biological processes. Cancer may be signals interfering with the normal communication of the body's cells, causing nuclei to become confused and grow out
of control. Desktops, laptops, and cell phones often have multiple modes of transmission of wireless data; WIFI, Bluetooth, microwave, and satellite systems are all very common.
PORTABLE TRANSMITTERS MAY BE A WILD CARD
Those who seek to influence the world through unseen and unseemly methods may have recently deployed a network of devices intended to control the natural interactions of the Collider Cloud Beings, & even the spirit world.
7. MULTI-FREQUENCY DEVICE
From my own experiences arguing with operators of a portable transmitter network, the device was a red box about 18 inches long, 12 inches wide, and about 12 inches tall. It had an 8 inch wide cylinder on top, which I believe houses an electromagnetic coiled superconductor that acts as a bright electric beacon to draw in energy beings (what
Tornado Over Huntsville, Alabama (NASA, University of Alabama at Huntsville, 01/21/10)
An EF-2 tornado forms over the University of Alabama campus in Huntsville, Ala., on Jan. 21, 2010.
The evening sky above Huntsville, Ala., held an eerie look on Thursday, Jan. 21, but few knew looming overhead was an EF-2 tornado waiting to descend on a downtown neighborhood. The Huntsville storm system didn't produce an abnormally large amount of lightning, typically a key indicator of severe weather, and the weather community was focused on larger hail-producing thunderstorms moving through southern Tennessee that looked more threatening.
Scientists at NASA's Marshall Space Flight Center in Huntsville are studying these recent storms by looking at data from three unique weather monitoring tools to gain a better picture of how storms evolve to produce both heavy rain or large hail, and subsequent strong winds or tornadoes. Researchers are using observations from the Advanced Radar for Meteorological and Operational Research, or ARMOR, radar operated by the University of Alabama Huntsville and NASA Lightning-Mapping Array System and disdrometer data to understand storm precipitation types -- rain, snow or hail -- and how those amounts relate to the amount of lightning produced. This early storm research supports the development of future weather monitoring systems like the Geostationary Operational Environmental Satellite, or GOES-R, that will observe Earth's weather from space.
A better understanding of these storm system could be the difference in a more accurate and timely prediction and would have been useful on Jan. 21. The tornado was later classified as an EF-2 as defined by the Enhanced Fujita Scale, created by Dr. T. Theodore Fujita in 1971, which categorizes each tornado by intensity and area and estimated wind speed associated with the resultant damage. Southern states typically view early spring as tornado season, but they can occur any time of year if the conditions are right. They usually form around violent thunderstorms where there is sufficient instability and wind shear in the lower atmosphere.
"In order to predict severe weather you have to understand how a storm works, and to understand how they work you need to make measurements and observations," said Dr. Walt Petersen, a physical scientist at the Marshall Center. "In terms of societal impacts, we need to be able to reliably measure and predict the occurrence of things like rainfall, lightning and tornadoes to offer more timely warnings."
The ARMOR radar helps scientists understand precipitation processes in the storm from the ground to the top. ARMOR remotely takes precipitation measurements since it is not possible to get to the high-altitude core of these monstrous storms. The analysis of the radar data starts by examining particle size information collected by disdrometers at the surface. Using this information, Petersen and his colleagues can calibrate the ARMOR low-elevation scans and then extend the calibration to look higher in the storm. This enables scientists to diagnose the precipitation particle sizes and shapes at the base and higher into the storm.
The internal precipitation properties of the storm are then compared to lightning production. Lightning data is taken from the Lightning Mapping Array system that collects lightning measurements from a set of 10 antennas positioned around northern Alabama. The lightning array senses the radiation emitted by lightning flashes in the very high frequency bands between the 60 to 100 megahertz range. The resultant data provide scientists with a three-dimensional location for each lightning flash within a given thunderstorm and those locations can be compared to ARMOR radar data collected for the same part of the storm.
ARMOR is a dual-polarimetric Doppler radar meaning that it works by transmitting pulses of microwave energy in vertical and horizontal orientations that are then scattered back to the radar in the same orientations. From the echo, or return of the horizontally and vertically oriented radar pulses, scientists can measure specific properties of the precipitation within a given cloud including the particle size, shape and type, as well as the precipitation rate and the relative velocity of the wind that is moving those precipitation particles either toward or away from the radar, or the Doppler-shifted wind. Disdrometer data is also collected to provide information on individual precipitation particle sizes, shapes and numbers -- they connect what is going on at the particle scale to what scientists observe in the beam of the radar.
"To provide reliable and timely predictions, scientists need to understand the entire storm system by observing and measuring the physics of each process and how they are related," said Petersen. "We are attempting to do this by combining radar, lightning and disdrometer data for analysis. By studying all these data points together we're able to connect the dots between precipitation formati
frequency range of microwaves
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