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An Experimental Study on Biofield Energy Treated 1,4-Dichlorobenzene Determination of Isotopic Abundance Ratio of Biofield Energy Treated 1,4-Dichlorobenzene Using Gas Chromatography-Mass Spectrometry (GC-MS) Mahendra Kumar Trivedi1, Alice Branton1, Dahryn Trivedi1, Gopal Nayak1, Kalyan Kumar Sethi2, Snehasis Jana2, * 1Trivedi Global Inc., Henderson, NV, USA 2Trivedi Science Research Laboratory Pvt. Email address: (S. *Corresponding author To cite this article: Mahendra Kumar Trivedi, Alice Branton, Dahryn Trivedi, Gopal Nayak, Kalyan Kumar Sethi, Snehasis Jana. Received: May 10, 2016; Accepted: June 25, 2016; Published: July 13, 2016 Abstract: The objective of the current study was to evaluate the effect of biofield energy treatment on the isotopic abundance ratios of PM+1/PM, PM+2/PM, PM+3/PM and PM+4/PM in p-DCB using gas chromatography-mass spectrometry (GC-MS). Keywords: Biofield Energy Treatment, The Trivedi Effect®, 1,4-Dichlorobenzene, Gas Chromatography-Mass Spectrometry, Isotopic Abundance 1. Recently, it has been reported that Mr. 2. 2.1. 2.2. 2.3.

Biofield | Isotopic Abundance Ratio Analysis of p-Dichlorobenzene – Aftermath Description: The objective of the current study was to evaluate the effect of biofield energy treatment on the isotopic abundance ratios of P M+1/PM, PM+2/PM, PM+3/PMand PM+4/PM in p-DCB using gas chromatography-mass spectrometry (GC-MS). The p-DCB was divided into two parts - one part was control sample, and another part was considered as the treated sample which was subjected to biofield energy treatment (The Trivedi Effect®). Biofield Energy Treatment Vital Effects on 1,4-Dichlorobenzene 0WordPress0CiteULike0 New The objective of the current study was to evaluate the effect of biofield energy treatment on the isotopic abundance ratios of P M+1/PM, PM+2/PM, PM+3/PMand PM+4/PM in p-DCB using gas chromatography-mass spectrometry (GC-MS). The p-DCB was divided into two parts - one part was control sample, and another part was considered as the treated sample which was subjected to biofield energy treatment (The Trivedi Effect®). 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 Leave a comment Your comment

Molecular Analysis of Biofield Treated Eggplant and Watermelon Crops Mahendra Kumar Trivedi , Alice Branton , Dahryn Trivedi , Gopal Nayak , Mayank Gangwar and Snehasis Jana Eggplant and watermelon, as one of the important vegetative crops have grown worldwide. The aim of the present study was to analyze the overall growth of the two inbreed crops varieties after the biofield energy treatment.The plots were selected for the study, and divided into two parts, control and treated. The control plots were left as untreated, while the treated plots were exposed with Mr. Trivedi’s biofield energy treatment.

Analyze 1,4-Dichlorobenzene Properties after Biofield Energy Treatment The objective of the current study was to evaluate the effect of biofield energy treatment on the isotopic abundance ratios of P M+1/PM, PM+2/PM, PM+3/PMand PM+4/PM in p-DCB using gas chromatography-mass spectrometry (GC-MS). The p-DCB was divided into two parts - one part was control sample, and another part was considered as the treated sample which was subjected to biofield energy treatment (The Trivedi Effect®). T1, T2, T3, and T4 were referred the biofield treated p-DCB having analyzed at different time intervals. The GC-MS analysis of both the control and biofield treated p-DCB indicated the presence of the parent molecular ion peak at m/z 146 along with four major fragmentation peaks at m/z 111, 75, 55 and 50. The relative peak intensities of the fragmented ions in the biofield treated p-DCB were notably changed as compared to the control sample with respect to the time.

GC-MS Analysis of para-Dichlorobenzene (p-DCB) The objective of the current study was to evaluate the effect of biofield energy treatment on the isotopic abundance ratios of PM+1/PM, PM+2/PM, PM+3/PM and PM+4/PM in p-DCB using gas chromatography-mass spectrometry (GC-MS). The p-DCB was divided into two parts – one part was control sample, and another part was considered as the treated sample which was subjected to biofield energy treatment (The Trivedi Effect®). T1, T2, T3, and T4 were referred the biofield treated p-DCB having analyzed at different time intervals. The GC-MS analysis of both the control and biofield treated p-DCB indicated the presence of the parent molecular ion peak at m/z 146 along with four major fragmentation peaks at m/z 111, 75, 55 and 50. The relative peak intensities of the fragmented ions in the biofield treated p-DCB were notably changed as compared to the control sample with respect to the time.

Investigation of Mahendra Trivedi's Biofield Treatment Effect on p-DCB Description The objective of the current study was to evaluate the effect of biofield energy treatment on the isotopic abundance ratios of P M+1/PM, PM+2/PM, PM+3/PMand PM+4/PM in p-DCB using gas chromatography-mass spectrometry (GC-MS). The p-DCB was divided into two parts - one part was control sample, and another part was considered as the treated sample which was subjected to biofield energy treatment (The Trivedi Effect®). T1, T2, T3, and T4 were referred the biofield treated p-DCB having analyzed at different time intervals. The GC-MS analysis of both the control and biofield treated p-DCB indicated the presence of the parent molecular ion peak at m/z 146 along with four major fragmentation peaks at m/z 111, 75, 55 and 50. Citation Information

Molecular Analysis of Biofield Treated Eggplant and Watermelon Crops Trivedi, M. K. (2016), 'Molecular Analysis of Biofield Treated Eggplant and Watermelon Crops', Advances in Crop Science and Technology 4 (1) . %0 Journal Article %1 mk2016molecular %A Trivedi, Mahendra Kumar %D 2016 %J Advances in Crop Science and Technology %K Biofied-Science Biofield Biofield-Energy Biofield-Treatment Citrullus-lanatus DNA-Fingerprinting Mahendra-kumar-Trivedi Plant-growth-attributes Polymorphism RAPD-analysis-of-eggplant Solanum-melongena Trivedi-Effect eggplant-crops improve-the-yield-of-watermelon watermelon-crops watermelon-rapd-analysis %N 1 %T Molecular Analysis of Biofield Treated Eggplant and Watermelon Crops %U %V 4 %X Eggplant and watermelon, as one of the important vegetative crops have grown worldwide.

Mahendra Trivedi Biography and Publication List | PubFacts Mahendra Kumar Trivedi completed his Bachelor’s degree in Mechanical Engineering in 1985 and worked as an Engineer for 10 years. In 1995, Mr. Trivedi discovered that he has the unique ability to harness the energy from the universe and transmit it to anywhere on earth, infusing it into living organisms and nonliving materials to optimize their potential. Mahendra Trivedi rapidly gained a substantial body of human testimonials from over 250,000 people that attest to the potent capabilities of his biofield treatments on every aspect of the human condition. By harnessing the potential of the human biofield, Mr.

The Trivedi Effect® : Path to a Deeper Health | Academia.edu The Trivedi Effect is a natural phenomenon that exists within our universe. Trivedi Effect is a world-renowned, natural phenomenon of transforming living organisms & non-living materials to perform at the highest level. Mahendra Kumar Trivedi has this incredible ability to transform living organisms & non-living substances. Trivedi Effect® is a Unique phenomenon, created by Mahendra Trivedi. According to over 4,000 scientific studies conducted at research institutes throughout the world, has the ability to transform both living & non-living matter on a fundamental level. Since 1995, Mr. Mr. Mahendra Trivedi (commonly known as Mr. less

The Trivedi Effect Publications List | MyScienceWork Thermal, Spectroscopic and Chemical Characterization of Biofield Energy Treated Anisole Trivedi Effect Mahendra Kumar Trivedi Alice Branton Dahryn Trivedi Published in Organic Chemistry Current Research in October 2015 The objective of the present study was to evaluate the impact of biofield energy treatment on the thermal, spectroscopic, and chemical properties of anisole by various analytical methods such as gas chromatography-mass spectrometry (GC-MS), high performance liquid chromatography (HPLC), differential scanning calorimetry (DSC), Fourier transform inf... Characterization of Biofield Energy Treated 3-Chloronitrobenzene: Physical, Thermal, and Spectroscopic Studies Trivedi Effect Alice Branton Mahendra Kumar Trivedi Dahryn Trivedi Published in International Journal of Waste Resources in October 2015 The chloronitrobenzenes are widely used as the intermediates in the production of pharmaceuticals, pesticides and rubber processing chemicals.

Impact of Biofield Energy on Eggplant and Watermelon Crops Growth The following are not allowed on Disqus: Targeted harassment or encouraging others to do soSpamImpersonationDirect threat of harmPosting personally identifiable informationInappropriate profile content Targeted harassment or encouraging others to do so The targeted and systematic harassment of people has no place on Disqus, nor do we tolerate communities dedicated to fostering harassing behavior. Spam Examples include 1) comments posted in large quantities to promote a product or service, 2) the exact same comment posted repeatedly to disrupt a thread. 3) following users multiple times Impersonation You may not impersonate others in a manner that does or is intended to mislead, confuse, or deceive others. Direct threat of harm This covers active threats of harm directed towards a specific person or defined group of individuals. Posting personally identifiable information Inappropriate profile content Graphic media containing violence and pornographic content are not allowed. Read the Basic Rules.

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