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The Chart time is based on Tomsk – Russia – UTC +7

  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).

  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

  The Ancient Indian Rishis called 7.83 Hz the frequency of OM. It also happens to be Mother Earth’s natural heartbeat rhythm

Schuman resonances are named after professor Schumann who was involved in early German secret space program and was later paperclipped into the United States. The frequencies of Schumann resonances are fairly stable and are mainly defined by the physical size of the ionospheric cavity.

  The amplitude of Schumann resonances does change and is bigger when ionospheric plasma gets excited. Ionospheric plasma excitation happens because of solar activity, thunderstorms, use of scalar plasma weapons and HAARP and lately also when the Light forces are clearing the plasma anomaly.

Current Time in Tomsk, Russia

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