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Evaluation of BaO & ZnS- Biofield Impact

Evaluation of BaO & ZnS- Biofield Impact
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BaO & ZnS- Study of FT-IR Analysis Barium oxide (BaO) and zinc sulfide (ZnS) are well known for their applications in electrical, optical and chemical industries. The present study was aimed to evaluate the impact of biofield treatment on the structural and physical properties of BaO and ZnS powder. The study was carried out in two groups, one was set to control, and another group was subjected to Mr. Trivedi’s biofield treatment. Control and treated samples of BaO and ZnS were analyzed using X-ray diffraction (XRD), Fourier transform infrared spectroscopy (FT-IR), and surface area analyzer.

Characteristics of Barium Oxide and Zinc Sulfide Citation: Trivedi MK, Tallapragada RM, Branton A, Trivedi D, Latiyal O, et al. (2015) Inuence of Bioeld Treatment on Physical and Structural Characteristics of Barium Oxide and Zinc Sulde. J Laser Opt Photonics 2: 122. doi:10.4172/jlop.1000122 Page 6 of 7 Volume 2 • Issue 2 • 1000122 J Laser Opt Photonics ISSN: JLOP, an open access journal and structural properties of both BaO and ZnS samples. showed that density of treated BaO and ZnS powder was increased upto 1.27% and 0.55% as compared to control. reduction of lattice parameter in unit cell aer bioeld treatment. In addition, crystallite size was signicantly increased by 40.5% and 71.4% in BaO and ZnS, respectively as compared to control. data showed the shiing of absorption peaks in treated BaO and ZnS corresponding to Ba-O and Zn-S stretching vibrations, respectively, as compared to control. and Ba-O, possibly altered aer bioeld treatment. area was reduced by 4.32% and 2.1% in treated BaO and ZnS powder, Acknowledgement We thank Dr.

Human Energy Treatment | BaO & ZnS Description Barium oxide (BaO) and zinc sulfide (ZnS) are well known for their applications in electrical, optical and chemical industries. The present study was aimed to evaluate the impact of biofield treatment on the structural and physical properties of BaO and ZnS powder. The study was carried out in two groups, one was set to control, and another group was subjected to Mr. Trivedi’s biofield treatment. Control and treated samples of BaO and ZnS were analyzed using X-ray diffraction (XRD), Fourier transform infrared spectroscopy (FT-IR), and surface area analyzer. Citation Information Trivedi MK, Tallapragada RM, Branton A, Trivedi D, Latiyal O, et al. (2015) Influence of Biofield Treatment on Physical and Structural Characteristics of Barium Oxide and Zinc Sulfide.

Barium Oxide & Zinc Sulfide | Trivedi Effect Mahendra Kumar Trivedi1, Rama Mohan Tallapragada1, Alice Branton1, Dahryn Trivedi1, Omprakash Latiyal2 and Snehasis Jana2* 1Trivedi Global Inc., 10624 S Eastern Avenue Suite A-969, Henderson, NV 89052, USA 2Trivedi Science Research Laboratory Pvt. Ltd., Hall-A, Chinar Mega Mall, Chinar Fortune City, Hoshangabad Rd., Bhopal- 462026 Madhya Pradesh, India *Corresponding Author: Snehasis J Trivedi Science Research Laboratory Pvt. Received Date: July 15, 2015; Accepted Date: August 10, 2015; Published Date: August 12, 2015 Citation: Trivedi MK, Tallapragada RM, Branton A, Trivedi D, Latiyal O, et al. (2015) Influence of Biofield Treatment on Physical and Structural Characteristics of Barium Oxide and Zinc Sulfide. Copyright: © 2015 Trivedi MK, et al. Visit for more related articles at Journal of Lasers, Optics & Photonics Abstract Barium oxide (BaO) and zinc sulfide (ZnS) are well known for their applications in electrical, optical and chemical industries. Keywords Introduction Experiment Conclusion

BaO & ZnS- Effect of External Energy Title: Influence of Biofield Treatment on Physical and Structural Characteristics of Barium Oxide and Zinc Sulfide Publication: Journal of Lasers, Optics & Photonics Select license: Creative Commons Attributions-NonCommercial-ShareAlike Updated: November 19th, 2016 Abstract: Barium oxide (BaO) and zinc sulfide (ZnS) are well known for their applications in electrical, optical and chemical industries.

Biofield Evaluation of BaO & ZnS 0WordPress0CiteULike0 New Barium oxide (BaO) and zinc sulfide (ZnS) are well known for their applications in electrical, optical and chemical industries. The present study was aimed to evaluate the impact of biofield treatment on the structural and physical properties of BaO and ZnS powder. The study was carried out in two groups, one was set to control, and another group was subjected to Mr. Your session has expired but don’t worry, your message has been saved.Please log in and we’ll bring you back to this page. Your evaluation is of great value to our authors and readers. Review When you're done, click "publish" Only blue fields are mandatory. Your mailing list is currently empty.It will build up as you send messagesand links to your peers. No one besides you has access to this list. Enter the e-mail addresses of your recipients in the box below. Your message has been sent. Description Subject : ScienceArea : Materials ScienceLanguage : EnglishYear : 2015 Leave a comment Your comment

Biofield Treatment’s impact on Salmonella Paratyphi 0WordPress0CiteULike0 2 Enteric fever is a major global problem. Emergence of antimicrobial resistance threatens to render current treatments ineffective. The current study was attempted to investigate the effect of biofield treatment on Salmonella paratyphi A (S. paratyphi A) in terms of antimicrobial susceptibility assay, biochemical characteristics and biotyping. Your session has expired but don’t worry, your message has been saved.Please log in and we’ll bring you back to this page. Your evaluation is of great value to our authors and readers. Review When you're done, click "publish" Only blue fields are mandatory. Your mailing list is currently empty.It will build up as you send messagesand links to your peers. No one besides you has access to this list. Enter the e-mail addresses of your recipients in the box below. Your message has been sent. Description Abstract : Enteric fever is a major global problem. Subject : microbiologyArea : Materials ScienceLanguage : EnglishYear : 2015

Salmonella paratyphi A: An Impact of Biofield Treatment Abstract Enteric fever is a major global problem. Emergence of antimicrobial resistance threatens to render current treatments ineffective. The current study was attempted to investigate the effect of biofield treatment on Salmonella paratyphi A (S. paratyphi A) in terms of antimicrobial susceptibility assay, biochemical characteristics and biotyping. Keywords: S. paratyphi A; Paratyphoid fever; Antimicrobial susceptibility; Biofield treatment; Biochemical reaction; Biotype Abbreviations MIC: Minimum Inhibitory Concentration; ATCC: American Type Culture Collection; NBPC 30: Negative Breakpoint Combo 30 Introduction Enteric fever is a major public health problem in India. Fluoroquinolone derivatives like ciprofloxacin, nalidixic acid etc. are extensively used to combat paratyphoid fever in most parts of world. Materials and Methods S. paratyphi A, American Type Culture Collection (ATCC 9150) strains were procured from MicroBioLogics, Inc., USA, in two sets A and B. Experimental design Gr. 1.

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