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"Characterization of Physical, Thermal and Structural Properties of Chr" by Mahendra Kumar Trivedi

"Characterization of Physical, Thermal and Structural Properties of Chr" by Mahendra Kumar Trivedi
Description Chromium (VI) oxide (CrO3) has gained extensive attention due to its versatile physical and chemical properties. The objective of the present study was to evaluate the impact of biofield treatment on physical, thermal and structural properties of CrO3 powder. In this study, CrO3 powder was divided into two parts i.e. control and treatment. Citation Information Mahendra Kumar Trivedi.

Characterization of Physical and Structural Properties of Brass Powder After Biofield Treatment Citation: Trivedi MK, Tallapragada RM, Branton A, Trivedi D, Nayak G, et al. (2015) Characterization of Physical, Thermal and Structural Properties of Chromium (VI) Oxide Powder: Impact of Bioeld Treatment. J Powder Metall Min 4: 128. doi:10.4172/2168-9806.1000128 Page 2 of 4 Volume 4 • Issue 1 • 1000128 J Powder Metall Min ISSN: 2168-9806 JPMM, an open access journal analysis-dierential thermal analysis (TGA-DTA), X-ray diraction (XRD), and Fourier transform infrared spectroscopy (FT-IR). ermo Gravimetric Analysis-Dierential ermal Analysis ermal analysis of control and treated CrO3 was analysed using Mettler Toledo simultaneous TGA and Dierential thermal analyser (DTA). a heating rate of 5°C/min under air atmosphere. point and latent heat of fusion (ΔH) were computed using integral area under peaks. from TGA curve. following equation: % change in Melting Point = Treated Control Control Where, T Control and T Treated are the melting point of control and treated samples, respectively. (%) etc.

Thermal Behaviour of CrO3 You are using an outdated version of Firefox which is not supported by ResearchGate anymore. For a faster, safer browsing experience, upgrade your browser now. <div class="c-box-warning full-width-element" style="text-align: center; "><div style="margin: auto; padding:10px;" class="container"><b>For full functionality of ResearchGate it is necessary to enable JavaScript. Here are the <a href=" rel="nofollow" target="_blank"> instructions how to enable JavaScript in your web browser</a>.</b></div></div> Article Follow publication Characterization of Physical, Thermal and Structural Properties of Chromium (VI) Oxide Powder: Impact of Bio Field Treatment Mahendra Kumar Trivedi, Rama Mohan Tallapragada, Alice Branton, Dahryn Trivedi, Gopal Nayak, Omprakash Latiyal, and Snehasis Jana 08/2015; 4(1). Chromium (VI) oxide (CrO3) has gained extensive attention due to its versatile physical and chemical properties. [more] 0 Followers 475 Reads Similar Publications View

"Spectroscopic Characterization of Biofield Treated Metronidazole and T" by Mahendra Kumar Trivedi Abstract Metronidazole and tinidazole are widely used antimicrobial drugs against Gram-negative and Gram-positive anaerobic bacteria. The present study was aimed to evaluate the impact of biofield treatment on metronidazole and tinidazole using FT-IR and UV spectroscopy. The study was carried out in two groups i.e. control and treatment. Treatment groups were subjected to Mr. Citation Information Mahendra Kumar Trivedi.

Impact of Biofield Treatment on Physical, Structural and Spectral Properties of Antimony Sulfide Research Article Open Access Industrial Engineering & Management Trivedi et al., Ind Eng Manage 2015, 4:3 Volume 4 • Issue 3 • 1000165 Ind Eng Manage ISSN: 2169-0316, IEM an open access journal Keywords: Bioeld treatment; Antimony sulde; X-ray diraction; FT-IR; Particle size; Surface area; Scanning electron microscopy Introduction Antimony Sulde (Sb2S3) is a semiconductor ceramics belonging to V-VI group of periodic table, which have high thermo-electric power and photosensitivity. applications in microwave devices, optoelectronic devices and solar cell absorber [1-4]. electronic band gap in the near-infrared region and the visible region, depending on its crystalline or amorphous nature [5]. important photoconductive semiconductor in the polycrystalline form as orthorhombic crystal structure. such as charge carrier transport mechanism, conduction, photoelectric properties makes it a promising material in solar energy industries role. the solar cell.

Spectroscopic Characterization of Biofield Treated Metronidazole and Tinidazole | Mahendra Kumar Trivedi Title: Spectroscopic Characterization of Biofield Treated Metronidazole and Tinidazole Select license: Creative Commons Attributions-NonCommercial-ShareAlike Updated: November 19th, 2016 Abstract: Metronidazole and tinidazole are widely used antimicrobial drugs against Gram-negative and Gram-positive anaerobic bacteria. Alterations in Thermal Properties of Chromium VI Oxide Chromium (VI) oxide (CrO3) has gained extensive attention due to its versatile physical and chemical properties. The objective of the present study was to evaluate the impact of biofield treatment on physical, thermal and structural properties of CrO3 powder. In this study, CrO3 powder was divided into two parts i.e. control and treatment. Control part was remained as untreated and treated part received Mr. Trivedi’s biofield treatment. Subsequently, control and treated CrO3 samples were characterized using Thermo gravimetric analysis-differential thermal analysis (TGA-DTA), X-ray diffraction (XRD), and Fourier transform infrared spectroscopy (FT-IR).

"An Evaluation of Biofield Treatment on Thermal, Physical and Structura" by Mahendra Kumar Trivedi Abstract Cadmium is widely utilized in nickel-cadmium batteries, stabilizers, and coating applications due to its versatile physico-chemical properties. The aim of present study was to evaluate the impact of biofield treatment on atomic, thermal, and physical properties of cadmium powder. The cadmium powder was divided into two groups, one group as control and another group as treated. The treated group received Mr. Citation Information Mahendra Kumar Trivedi.

Impact of Biofield Treatment on Physical, Structural and Spectral Properties of Antimony Sulfide | Mahendra Kumar Trivedi Title: Impact of Biofield Treatment on Physical, Structural and Spectral Properties of Antimony Sulfide Publication: Industrial Engineering & Management Select license: Creative Commons Attributions-NonCommercial-ShareAlike Updated: November 19th, 2016 Abstract: Antimony sulfide (Sb2S3) has gained extensive attention in solar cells due to their potential as a low-cost and earth abundant absorber material. Hence in the present investigation, Sb2S3 powder samples were exposed to biofield treatment, and further its physical, structural and spectral properties are investigated.

"Biofield Treatment: A Potential Strategy for Modification of Physical Description Indole compounds are important class of therapeutic molecules, which have excellent pharmaceutical applications. The objective of present research was to investigate the influence of biofield treatment on physical and thermal properties of indole. The study was performed in two groups (control and treated). The control group remained as untreated, and biofield treatment was given to treated group. The control and treated samples were characterized by X-ray diffraction (XRD), differential scanning calorimetry (DSC), thermogravimetric analysis (TGA), Fourier transform infrared (FT-IR) spectroscopy and ultraviolet-visible (UV-Vis) spectroscopy. Citation Information Mahendra Kumar Trivedi.

Soybean Seed Treatment & Soybean Productivity Biofield and Fungicide Seed Treatment Influences on Soybean Productivity,Seed Quality and Weed Community Soybean production in Iowa USA is among the most productive for rainfed regions in the world. Despite generally having excellent soils, growing season temperatures and rainfall, soybean yields are decreased by weed interference and inadequate available soil water at key stages of crop development. A field study was conducted at two locations in Iowa in 2012 to determine if seed-applied fungicide or biofield treatments influenced weed community, soil volumetric water concentration and soybean yield and quality. Application of biofield treatment resulted in lower density of tall waterhemp density, greater soybean stand density at R8 stage and greater seed pod-1 compared to the absence of seed fungicide and biofield. Soil volumetric water content varied by seed fungicide x biofield x date interaction but differences were not consistent among treatment combinations.

Agricultural Research and Impact Of Biofield Energy | Trivedi Science Agriculture is the cultivation of plants, fungi, animals and other forms of life for humanity’s basic needs, such as food, medicine, fiber, biofuel, and shelter. Agricultural science is the discipline dedicated to understanding and practicing Agriculture. Agricultural science addresses the exact, natural, economic and social parameters involved in production techniques, improving quality and quantity of agricultural products, developing new ecofriendly pesticides, creating new irrigation technologies, and developing processed products from raw materials. Agricultural biotechnology is a part of agricultural science that focuses on scientific tools and techniques, like genetic engineering, molecular markers and diagnostics, vaccines, tissue culture etc., to alter, transform or develop plants, animals, and microorganisms. As a result, consumers of agricultural products are becoming increasingly aware of the healthfulness and quality of their food.

Peer Evaluation : Impact of Biofield Treatment on Physical, Structural and Spectral Properties of Antimony Sulfide 0WordPress0CiteULike0 1 Antimony sulfide (Sb2S3) has gained extensive attention in solar cells due to their potential as a low-cost and earth abundant absorber material. In solar cell absorber, the optoelectrical properties such as energy band gap and absorption coefficient of Sb2S3 play an important role, which have strong relationships with their crystal structure, lattice parameter and crystallite size.��Hence in the present investigation, Sb2S3 powder samples were exposed to biofield treatment, and further its physical, structural and spectral properties are investigated. 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. Description

Biofield Treatment: A Potential Strategy for Modification of Physical and Thermal Properties of Indole Share this: Embed* Cite this: Trivedi, Mahendra Kumar (2015): Biofield Treatment: A Potential Strategy for Modification of Physical and Thermal Properties of Indole. figshare. Retrieved 13:25, Oct 29, 2015 (GMT) *The embed functionality can only be used for non commercial purposes. Description Indole compounds are important class of therapeutic molecules, which have excellent pharmaceutical applications. Comments (0) Published on 09 Sep 2015 - 11:14 (GMT) Filesize is 1.25 MB License (what's this?) Cite "Filename" Place your mouse over the citation text to select it Embed "Biofield Treatment: A Potential Strategy for Modification of Physical and Thermal Properties of Indole" Show filename on top Place your mouse over the embed code to select and copy it

Nutrient Value of Soybean, Soybean Fungicide Seed Treatment Abstract Soybean production in Iowa USA is among the most productive for rainfed regions in the world. Despite generally having excellent soils, growing season temperatures and rainfall, soybean yields are decreased by weed interference and inadequate available soil water at key stages of crop development. A field study was conducted at two locations in Iowa in 2012 to determine if seed-applied fungicide or biofield treatments influenced weed community, soil volumetric water concentration and soybean yield and quality. Application of biofield treatment resulted in lower density of tall waterhemp density, greater soybean stand density at R8 stage and greater seed pod-1 compared to the absence of seed fungicide and biofield.

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