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Biofield Impact on Methyl 2-Naphthyl Ether Characterization

Biofield Impact on Methyl 2-Naphthyl Ether Characterization
o u r n a l f v i m e t y c h s Environmental Analytical Chemistry Trivedi et al., J Environ Anal Chem 2015, 2: Research ArticleOpen Access Volume 2 • Issue 5 • 1000162 J Environ Anal Chem ISSN: 2380-2391 JREAC, an open access journal Keywords: Methyl-2-naphthyl ether; Biofield energy; X-ray diffraction; Surace area analysis; Differential scanning calorimetry; Termogravimetric analysis Abbreviations MNE: Methyl-2-Naphthyl Ether; NCCAM: National Center For Complementary And Alternative Medicine; XRD: X-Ray Diffraction; DSC: Differential Scanning Calorimetry; GA: Termogravimetric Analysis; DA: Differential Termal Analysis; DG: Derivative Termogravimetry; F-IR: Fourier ransorms Inrared Introduction Naphthalene has been described as new class o potent antimicrobials against wide range o human pathogens. healing therapy or therapeutic touch, known as the biofield energy treatment, which was reported in several fields. Mahendra Kumar Trivedi , Alice Branton , Dahryn Trivedi , Gopal Nayak , Khemraj Bairwa . Abstract .

http://www.academia.edu/17609544/Physical_Thermal_and_Spectroscopic_Characterization_of_Biofield_Energy_Treated_Methyl-2-Naphthyl_Ether

Methyl 2-Naphthyl Ether- An Anti-Inflammatory Agent Methyl-2-naphthyl ether (MNE) is an organic compound and used as the primary moiety for the synthesis of several antimicrobial and anti-inflammatory agents. This study was attempted to evaluate the impact of biofield energy treatment on the physical, thermal, and spectroscopic properties of MNE. The study was carried out in two groups i.e., control and treated.

"Physical, Thermal, and Spectroscopic Characterization of Biofield Ener" by Mahendra Kumar Trivedi Description Methyl-2-naphthyl ether (MNE) is an organic compound and used as the primary moiety for the synthesis of several antimicrobial and anti-inflammatory agents. This study was attempted to evaluate the impact of biofield energy treatment on the physical, thermal, and spectroscopic properties of MNE. The study was carried out in two groups i.e., control and treated. Experimental data on Biofield Energy treated Methyl-2-Naphthyl Ether o u r n a l

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Assessment of FT-IR & UV Spectrum of Paracetamol Title: Effect of Biofield Treatment on Spectral Properties of Paracetamol and Piroxicam Publication: Chemical Sciences Journal Physical, Thermal and Spectral Properties of Biofield Treated 3-Nitroacetophenone 3-Nitroacetophenone (3-NAP) is an organic compound used as an intermediate for the synthesis of pharmaceutical agents. The aim of this study was to evaluate the impact of biofield energy treatment on the physical, thermal and spectral properties of 3-NAP. The study was performed in two groups i.e. control and treated.

Biofield Energy Treated Methyl-2-Naphthyl Ether Abstract Methyl-2-naphthyl ether (MNE) is an organic compound and used as the primary moiety for the synthesis of several antimicrobial and anti-inflammatory agents. This study was attempted to evaluate the impact of biofield energy treatment on the physical, thermal, and spectroscopic properties of MNE. The study was carried out in two groups i.e., control and treated. Bonding & Structural Properties of Paracetamol Description Paracetamol and piroxicam are non-steroidal anti-inflammatory drugs (NSAIDs), widely used in pain and inflammatory diseases. The present study aimed to evaluate the impact of biofield treatment on spectral properties of paracetamol and piroxicam. The study was performed in two groups (control and treatment) of each drug. The control groups remained as untreated, and biofield treatment was given to treatment groups.

"Physical, Thermal and Spectral Properties of Biofield Treated 3-Nitroa" by Mahendra Kumar Trivedi Description 3-Nitroacetophenone (3-NAP) is an organic compound used as an intermediate for the synthesis of pharmaceutical agents. The aim of this study was to evaluate the impact of biofield energy treatment on the physical, thermal and spectral properties of 3-NAP. The study was performed in two groups i.e. control and treated. The control group remained as untreated, and the treated group received Mr.

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