Investigating the Influence of the Taheri Consciousness Field (1) on the Magnetic Properties of Pure Iron Atoms in Microgravity Conditions

Main Article Content

Mohammad Ali Taheri
Firouz Payervand
Amir Moslehi
Farzad Ahmadkhanlou
Sara Torabi
Farid Semsarha

Keywords

Iron, Microgravity, Saturation magnetization, T-Consciousness Field 1

Abstract

Iron atom is the most abundant element that makes up the earth's mass with ferromagnetic property and its saturation magnetization can be easily investigated. Also, because the magnetic property of the earth has been attributed to it (Geodynamo theory), it has been chosen as the subject of this study. Before this, the investigation of the effect of microgravity on the vital properties of cells and plants showed that T -Consciousness Fields (TCFs) can not only be effective on such organisms but also cause the removal of destructive and harmful effects on life. In this study, to investigate the effect of TCFs on material and non-living beings, the magnetization property of pure iron atoms in microgravity conditions and under the treatment of TCF 1 has been investigated. Based on the results obtained from this study, the saturation magnetization property of pure iron in microgravity conditions obtained from the clinostat device and in the control mode (without the application of TCF) is reduced by about 25% compared to the saturation magnetization of iron in the earth’s gravity conditions, while the saturation magnetization of the samples under the treatment of TCF 1 in the same condition and while placed in the device simultaneously with the control samples, resist the reduction of the saturation magnetization. In other words, the TCFs 1 completely maintains the conditions necessary to keep the saturation magnetization of the sample in the earth’s gravity, in the conditions of reduced gravity (microgravity).

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