solution, a new approach is outlined allowing for collective interactions of large ionic ensembles with the external field.
Combined action of static and alternating magnetic fields on ionic current in aqueous glutamic acid solution
β Scribed by Mikhail N. Zhadin; Vadim V. Novikov; Frank S. Barnes; Nicholas F. Pergola
- Publisher
- John Wiley and Sons
- Year
- 1998
- Tongue
- English
- Weight
- 67 KB
- Volume
- 19
- Category
- Article
- ISSN
- 0197-8462
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β¦ Synopsis
Combined parallel static and alternating magnetic fields cause a rapid change in the ionic current flowing through an aqueous glutamic acid solution when the alternating field frequency is equal to the cyclotron frequency. The current peak is 20-30% of the background direct current. The peak is observed with slow sweep in the alternating magnetic field frequency from 1 Hz-10 Hz. Only one resonance peak in the current is observed in this frequency range. The frequency corresponding to the peak is directly proportional to the static magnetic field. The above effect only arises at very small alternating field amplitude in the range from 0.02 microT-0.08 microT.
π SIMILAR VOLUMES
This is an attempt to solve the energetic problem of the primary detection of weak parallel static (DC) and alternating (AC) extremely low frequency (ELF) magnetic fields. We studied the equations of motion for an ion situated inside a macromolecule under the influence of these fields. The main conc
## Abstract It has been shown that the ultralowβfrequency extremely weak alternating component of combined magnetic fields (MFs) exhibits a marked antitumor activity. The parameters of this component have been found (frequency 1, 4.4, 16.5 Hz or the sum of these frequencies; intensity 300, 100, 150