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This study was attempted to evaluate the impact of biofield energy treatment on the physical, thermal, and spectral properties of MSM.

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In summary, the result of present study showed the decrease in surface area of treated sample with respect to the control. This might be due to increase in crystallite size of treated sample as evidenced by XRD analysis. The TGA-DTG study showed the slight decrease in onset and end-set temperature of thermal degradation. The DSC analysis exhibited the significant increase in latent heat of fusion of treated sample as compared to the control. This may be due to the increased intermolecular bonding of MSM molecule. The effect of biofield energy treatment on MSM molecule showed time dependent shifting of S=O stretching frequencies in FT-IR spectra with respect to the control. This might be due to the decrease in force constant and atomic bond strength of MSM molecule. Overall, the present study concluded the significant impact of Mr. Trivedi’s biofield energy treatment on physical, thermal and spectroscopic properties of MSM with respect to the control. Based on this, it is expected that by altering the physicochemical properties using Mr. Trivedi’s biofield energy treatment, the MSM can be changed into the more effective form with respect to its pharmacological activity as well as solvent in organic synthesis.

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This page is a summary of: Evaluation of Physical, Thermal and Spectral Parameters of Biofield Energy Treated Methylsulfonylmethane, Journal of Molecular Pharmaceutics & Organic Process Research, January 2015, OMICS Publishing Group,
DOI: 10.4172/2329-9053.1000129.
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