研究目的
To evaluate the impact of biofield treatment on physical, thermal, and spectroscopic properties of p-dichlorobenzene.
研究成果
Biofield treatment significantly altered the physical and thermal properties of p-DCB, including increased crystallite size, reduced latent heat of fusion and melting point, and increased thermal stability, which could enhance its utility as a chemical intermediate. No changes were observed in spectroscopic properties.
研究不足
The study does not address the mechanism of biofield treatment or its reproducibility. Potential limitations include the lack of blinding or control for experimenter bias, and the specific conditions under which biofield treatment was applied may not be fully detailed or standardized.
1:Experimental Design and Method Selection:
The study involved dividing p-dichlorobenzene samples into control and treated groups, with the treated group receiving Mr. Trivedi's biofield treatment. The treated and control samples were then analyzed using XRD, DSC, TGA, and UV-Vis spectroscopy to assess changes in physical, thermal, and spectroscopic properties.
2:Sample Selection and Data Sources:
p-DCB was procured from S D Fine Chemicals Pvt., Ltd., India. The samples were divided into control and treated groups.
3:List of Experimental Equipment and Materials:
Equipment included Phillips, Holland PW 1710 X-ray diffractometer for XRD, Perkin Elmer/Pyris-1 DSC, Mettler Toledo TGA/DTG analyzer, and Shimadzu UV-2400 PC series spectrophotometer for UV-Vis. Materials included p-DCB samples.
4:Experimental Procedures and Operational Workflow:
The treated sample was subjected to biofield treatment without physical contact. XRD analysis used copper anode with nickel filter, wavelength
5:54056 ?. DSC was performed with heating rate 10°C/min under air. TGA/DTG heated from room temperature to 400°C at 5°C/min under air. UV-Vis was measured over 200-400 nm wavelength range. Data Analysis Methods:
Crystallite size calculated using G = kλ/(bCosθ). Percent changes calculated for crystallite size, melting point, latent heat of fusion, Tmax, and weight loss per °C using specified equations.
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