Schumann Resonance Today
May 24 2018
Schumann Resonance Today 5/24/2018 We will try to keep you updated about the variations of the Resonance with this page. The great variations that nobody can explain but that give us a clear sign that the planet is changing. The Earth is vibration higher and higher, just like us!
RS Base Frequency 7.83 Hz.
Schumann Resonance Today Peaks:
- Two spikes for today, first one lasted 40 minuets, from 8:20 to 9:00 UTC almost all the time above 40 Hz. Second one 30 minutes later close to 40 Hz with a short duration.
- As suggested we arranged the images in an Archive page where all of them are arranged in chronological order for and easier consultation, you can find the link in the banner below.
The Chart time is based on Tomsk – Russia – UTC +7
The Ancient Indian Rishis called 7.83 Hz the frequency of OM. It also happens to be Mother Earth’s natural heartbeat rhythm
Live From Hawaii – Fissure 20
Explanation of The Chart
The Schumann Resonance Spectrogram Chart
The Schumann Resonance Chart displays data from the magnetic field detector to monitor the resonances occurring in the plasma waves constantly circling the earth in the ionosphere. These three days spectrograms show the activity occurring at the various resonant frequencies from 1 to 40 Hz. Within the spectrogram, the power, or intensity level of each frequency is displayed as a color, with white being the most intense. The Schumann Resonances appear as the horizontal lines at 0.0, 4.0, 8.0, 12.0, 16.0, 20.0, 24.0, 28.0, 32.0, 36.0 & 40.0 Hz. This chart is based on Tomsk, Russia, time UTC +7 (UTC = Universal Time Coordinated).
What is a Spectrogram?
The Spectrogram Calendar is a visual representation of the range of frequencies in the magnetic field at a given location. Similar to how an equalizer displays the frequency content of music played on your stereo, the spectrogram calendar displays the frequency content of a magnetic field. Instead of showing a brief snapshot, it shows changes over a period of time, in this case 3 days.
The local magnetic field is a dynamic field that changes constantly because of variations in the ionosphere and sun and many other influences not yet fully understood. The range of variation displayed in the spectrogram chart is from 0 to 40 cycles per second. The vertical axis is frequency and the horizontal axis is time. The amplitude of a particular frequency at a specific time is represented by the intensity of color (green, yellow, white) of each point in the image
All the SR daily images in one single page
SR and Missile in Hawaii
In this image you can notice some kind a peculiarity occurred few days ago. The excerpt of the chart is taken from the portion of time that goes across from January 13th to January 14th.
The red band is on 01:11 am in Tomsk Russia that correspond to 8:11 am of the previous day, January 13th in the Hawaii, the day of the Missile Attack warning sent via sms to the population.
The strange thing is the sudden spike of the SR from normal to out of scale that we pointed out at that time hoping for an operation of the Light Forces happened almost exactly 1 hour before the warning… strange thing indeed!
Schumann Resonance January 14 and Hawaii Missile Attack
What is the Schumann Resonance?
The Herathbeat of Planet Earth
The below real-time trace is updated every 60 seconds and shows meteors detected over the presceding two minute period.
Time is shown as Universal Coordinated Time (UTC) which is an intenational time standard equivalent to GMT. This avoids regional confusion with local time zones.
“This Hour” is the number of counts since the beginning of the hour. “Prev Hour” is the number of counts in the last full hour. “PHR (15 min)” is the “present hourly rate” based on a 15 minute sample.
When a meteor strikes Earth’s atmosphere it decelerates rapidly. The friction created by the air causes the meteor to burn up at extremely high temperatures creating the white “shooting star” that we are all familiar with. This process also ionises the atmosphere along the trail making it possible to reflect radio waves.
Utilising a high powered VHF radar signal sent into the sky, we are able to detect reflected waves from these ionisation trails. Because the meteor is moving very fast, the reflected signal is shifted in frequency, by an amount according to it’s speed. This Doppler shift is also heard as an audible ping by the station operator.
Our system translates the reflected wave into three main parameters – Amplitude (strength), Frequency shift (Doppler shift) and decay time. This allows us to determine the relative size of the meteor strike (vertical scale) and the relative approximate speed and deceleration (width of the trace).
You can see the output from our system above in real time. the graph shows the presceding one minute period. During a meteor shower this trace will be full of meteor strike traces, but it is also surprising how many meteors are striking Earth’s atmosphere all of the time.
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