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Influence of Biofield Treatment on Physicochemical Properties of Hydroxyethyl Cellulose and Hydroxypropyl Cellulose

Influence of Biofield Treatment on Physicochemical Properties of Hydroxyethyl Cellulose and Hydroxypropyl Cellulose
Abstract Cellulose based polymers have shown tremendous potential as drug delivery carrier for oral drug delivery system (DDS). Hydroxyethyl cellulose (HEC) and hydroxypropyl cellulose (HPC) are widely explored as excipients to improve the solubility of poorly water soluble drugs and to improve self-life of dosage form. This work is an attempt to modulate the physicochemical properties of these cellulose derivatives using biofield treatment. The treated HEC and HPC polymer were characterized by X-ray diffraction (XRD), differential scanning calorimetry (DSC) and thermogravimetric analysis (TGA). The XRD studies revealed a semi-crystalline nature of both the polymers. Tables at a glance Figures at a glance

http://www.esciencecentral.org/journals/influence-of-biofield-treatment-on-physicochemical-properties-ofhydroxyethyl-cellulose-and-hydroxypropyl-cellulose-2329-9053-1000126.php?aid=57831

Spectroscopic Characterization of Disulfiram and Nicotinic Acid after Biofield Treatment Trivedi, M. K. (2015), 'Spectroscopic Characterization of Disulfiram and Nicotinic Acid after Biofield Treatment'. %0 Thesis %1 mahendrakumartrivedi %A Trivedi, Mahendra Kumar %B Spectroscopic Characterization of Disulfiram and Nicotinic Acid after Biofield Treatment %D 2015 %I Mahendra Kumar Trivedi %J Analytical & Bioanalytical Techniques %K biofield mahendrakumartrivedi myown %N 5 %T Spectroscopic Characterization of Disulfiram and Nicotinic Acid after Biofield Treatment %U %V 6 %X Disulfiram is being used clinically as an aid in chronic alcoholism, while nicotinic acid is one of a B-complex vitamin that has cholesterol lowering activity. The aim of present study was to investigate the impact of biofield treatment on spectral properties of disulfiram and nicotinic acid.

Effect of Bio Field Treatment on the Physical and Thermal Characteristics of Vanadium Pentoxide Powders Make the best use of Scientific Research and information from our 700+ peer reviewed, Open Access Journals that operates with the help of 50,000+ Editorial Board Members and esteemed reviewers and 1000+ Scientific associations in Medical,Clinical,Pharmaceutical,Engineering, Technology and Management Fields. Meet Inspiring Speakers and Experts at our 3000+ Global Conferenceseries Events with over 600+ Conferences, 1200+ Symposiums and 1200+ Workshops on Medical, Pharma, Engineering, Science, Technology and Business

Impact of Biofield Treatment on Atomic and Structural Characteristics of Barium Titanate Powder Trivedi, M. K. (2015), 'Impact of Biofield Treatment on Atomic and Structural Characteristics of rium Titanate Powder'. %0 Thesis %1 MahendraKumarTrivedi %A Trivedi, Mahendra Kumar %B Impact of Biofield Treatment on Atomic and Structural Characteristics of Barium Titanate Powder %D 2015 %E Mahendra Kumar Trivedi, Mahendra Trivedi %I Mahendra Kumar Trivedi %J Industrial Engineering & Management %K biofield mahendra-kumar-trivedi publications %N 3 %T Impact of Biofield Treatment on Atomic and Structural Characteristics of Barium Titanate Powder %U %V 4 %X Barium titanate, perovskite structure is known for its high dielectric constant and piezoelectric properties, which makes it interesting material for fabricating capacitors, transducer, actuator, and sensors. The perovskite crystal structure and lattice vibrations play a crucial role in its piezoelectric and ferroelectric behavior.

User:Mahendra Kumar Trivedi The Trivedi Effect, Henderson, USA Mr. Mahendra TrivediFounder and Chairmen Affiliation: Trivedi Global Inc., 10624 S Eastern Avenue Suite A-969, Henderson, NV 89052, USA Biography Mr. Spectroscopic Characterization of Disulfiram and Nicotinic Acid after Biofield Treatment *The embed functionality can only be used for non commercial purposes. In order to maintain its sustainability, all mass use of content by commercial or not for profit companies must be done in agreement with figshare. Description Disulfiram is being used clinically as an aid in chronic alcoholism, while nicotinic acid is one of a B-complex vitamin that has cholesterol lowering activity. The aim of present study was to investigate the impact of biofield treatment on spectral properties of disulfiram and nicotinic acid. The study was performed in two groups i.e., control and treatment of each drug.

Structural and Physical Properties of Biofield Treated Thymol and Menthol 0WordPress0CiteULike0 New Thymol and menthol are naturally occurring plant derived compounds, which have excellent pharmaceutical and antimicrobial applications. The aim of this work was to evaluate the impact of biofield energy on physical and structural characteristics of thymol and menthol. The control and biofield treated compounds (thymol and menthol) were characterized by X-ray diffraction (XRD), Differential Scanning Calorimetry (DSC), Thermogravimetric analysis (TGA), and Fourier Transform Infrared Spectroscopy (FT-IR). XRD study revealed increase in intensity of the XRD peaks of treated thymol, which was correlated to high crystallinity of the treated sample. The treated thymol showed significant increase in crystallite size by 50.01% as compared to control.

Effect of Biofield Treatment on Spectral Properties of Paracetamol and Piroxicam Trivedi, M. K. (2015), 'Effect of Biofield Treatment on Spectral Properties of Paracetamol and roxicam'. %0 Thesis %1 biofield %A Trivedi, Mahendra Kumar %B Effect of Biofield Treatment on Spectral Properties of Paracetamol and Piroxicam %D 2015 %E Mahendra Trivedi, Mahendra Kumar Trivedi %I Mahendra Kumar Trivedi %J Chemical Sciences Journal %K Chemical Journal Sciences mahendra-kumar-trivedi %N 3 %T Effect of Biofield Treatment on Spectral Properties of Paracetamol and Piroxicam %U %V 6 %X 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.

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