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Absorption of radiant energy in water - A new conjecture and theory of charge quantization in chromotized water samples.
Author(s):
1. Samina Azeemi: Department of Physics, University of Balochistan, Quetta, Pakistan
2. T. Yousuf: Department of Physics, University of Balochistan, Quetta, Pakistan
3. Syed Mohsin Raza: Department of Physics, University of Balochistan, Quetta, Pakistan
4. Masoom Yasinzai: Institute of Biochemistry, University of Balochistan, Quetta, Pakistan
5. Mujeeb-Ur-Rehman: Pakistan Council of Scientific & Industrial Research, PCSIR Laboratories Complex, Quetta, Pakistan
Abstract:
A new conjecture on charge quantization, gives a quantum insight into the radiant energy being absorbed in water molecule. We suggest a new phenomenon of ‘charge quantization’, i.e. hQ due to absorption of photon energies in water molecules. When water molecules absorb photon energies at different wavelengths in the visible region, their vibrational energies increase. We infer that the absorbed photon energies in water molecules are the manifests of quantum mechanical behavior which results into a quantum mechanical dipole moment, i.e., charge quantization. The water molecules which acquire vibrational energies produce a geometrical shape i.e., pentagon, hexagon, hectagon and nanogon with molecules having same frequency of any visible colour (resonant states). These geometrical structures in chromotized water are responsible to influence the migration rate of the ions, salts, etc. within intra macromolecule cells.
Page(s): 189-195
DOI: DOI not available
Published: Journal: Science International, Volume: 20, Issue: 3, Year: 2008
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