Omprakash Latiyal's scientific contributions

Publications (34)

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Antimony tin oxide (ATO) is known for its high thermal conductivity, optical transmittance, and wide energy band gap, which makes it a promising material for the display devices, solar cells, and chemical sensor industries. The present study was undertaken to evaluate the effect of biofield energy treatment on the atomic and physical properties of...
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Calcium carbide (CaC2) is known for its wide applications in the production of acetylene and calcium cyanamide, whereas praseodymium Oxide (Pr6O11) is used in sensors and high-temperature pigments. The present study was designed to evaluate the effect of biofield energy treatment on the physical and structural properties of CaC2 and Pr6O11 powder....
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Manganese sulfide (MnS) is known for its wide applications in solar cell, opto-electronic devices, and photochemical industries. The present study was designed to evaluate the effect of biofield energy treatment on the atomic and physical properties of MnS. The MnS powder sample was equally divided into two parts, referred as to be control and to b...
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Calcium carbonate (CaCO3) is widely used in pharmaceutical industries and as a supplement in probiotics. The present study was designed to evaluate the effect of biofield energy treatment on the physicochemical properties of the CaCO3. The CaCO3 powder was divided into two parts and referred as control and treated. The control part was remained unt...
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Selenium (Se) is an essential trace element, and its deficiency in the humans leads to increase the risk of various diseases, such as cancer and heart diseases. The objective of this study was to investigate the influence of biofield energy treatment on the physical and thermal properties of the selenium powder. The selenium powder was divided into...
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Barium calcium tungsten oxide (Ba2CaWO6) is known for its double perovskite-type crystal structure. The present study was designed to see the effect of biofield energy treatment on physical, atomic, and structural properties of Ba2CaWO6. In this study, Ba2CaWO6 powder sample was divided into two parts, one part was remained as untreated, denoted as...
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Molybdenum dioxide (MoO2) is known for its catalytic activity toward reforming hydrocarbons. The objective of this study was to evaluate the effect of biofield energy treatment on physical, thermal, and structural properties in MoO2. The MoO2 powder sample was divided into two parts, one part was remained as untreated, called as control, while the...
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Bismuth oxide (Bi2O3) is known for its application in several industries such as solid oxide fuel cells, optoelectronics, gas sensors and optical coatings. The present study was designed to evaluate the effect of biofield energy treatment on the atomic, physical, and thermal properties of Bi2O3. The Bi2O3 powder was equally divided into two parts:...
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Tellurium has gained significant attention due to its photoconductivity, piezoelectricity, and thermo conductivity properties. The aim of this study was to evaluate the effect of biofield energy treatment on thermal, physical and atomic properties of tellurium powder. The tellurium powder was equally divided in two parts: control and treated (T). T...
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Magnesium nitride (Mg3N2) has gained extensive attention due to its catalytic and optoelectronic properties. The present investigation was aimed to evaluate the effect of biofield energy treatment on physical and thermal properties of Mg3N2 powder. The Mg3N2 powder was divided into two parts i.e. control and treated. The control part was remained a...
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Silver oxide has gained significant attention due to its antimicrobial activities. The purpose of this study was to evaluate the impact of biofield energy treatment on the physical and thermal properties of silver oxide (Ag2O). The silver oxide powder was divided into two parts, one part was kept as control and another part was received Mr. Trivedi...
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Silver is widely utilized as antimicrobial agent and wound dressing, where its shape, size, surface area, and surface charge play an important role. The aim of present study was to evaluate the impact of biofield treatment on physicochemical and atomic properties of silver powder. The silver powder was divided into two groups, coded as control and...
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Lithium has gained extensive attention in medical science due to mood stabilizing activity. The objective of the present study was to evaluate the impact of biofield treatment on physical, atomic, and thermal properties of lithium powder. The lithium powder was divided into two parts i.e., control and treatment. Control part was remained as untreat...
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Indium has gained significant attention in the semiconductor industries due to its unique thermal and optical properties. The objective of this research was to investigate the influence of the biofield energy treatment on the atomic, physical and thermal properties of the indium. The study was performed in two groups (control and treated). The cont...
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Aluminium carbide (Al4C3) has gained extensive attention due to its abrasive and creep resistance properties. Aim of the present study was to evaluate the impact of biofield treatment on physical and structural properties of Al4C3 powder. The Al4C3 powder was divided into two parts i.e. control and treated. Control part was remained as untreated an...
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Ethanol is a polar organic solvent, and frequently used as a fuel in automobile industries, principally as an additive with gasoline due to its higher octane rating. It is generally produced from biomass such as corn, sugar and some other agriculture products. In the present study, impact of biofield treatment on ethanol was evaluated with respect...
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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...
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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 w...
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Magnesium (Mg), present in every cell of all living organisms, is an essential nutrient and primarily responsible for catalytic reaction of over 300 enzymes. The aim of present study was to evaluate the effect of biofield treatment on atomic and physical properties of magnesium powder. Magnesium powder was divided into two parts denoted as control...
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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. In the present s...
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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...
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Brass, a copper-zinc (Cu-Zn) alloy has gained extensive attention in industries due to its high corrosion resistance, machinability and strength to weight ratio. The aim of present study was to evaluate the effect of biofield treatment on structural and physical properties of brass powder. The brass powder sample was divided into two parts: control...
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Stainless steel (SS) has gained extensive attention due to its high corrosion resistance, low maintenance, familiar lustre, and superior mechanical properties. In SS, the mechanical properties are closely related with crystal structure, crystallite size, and lattice strain. The aim of present study was to evaluate the effect of biofield treatment o...
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Boron nitride (BN) is known for high hardness, thermal stability, thermal conductivity, and catalytic action. The aim of this study was to investigate the effect of biofield treatment on physical, structural and spectral properties of BN powder. The control and treated sample of BN powder were characterized by X-ray diffraction (XRD), surface area...
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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, latt...
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Bronze, a copper-tin alloy, widely utilizing in manufacturing of gears, bearing, and packing technologies due to its versatile physical, mechanical, and chemical properties. The aim of the present work was to evaluate the effect of biofield treatment on physical and structural properties of bronze powder. Bronze powder was divided into two samples,...
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Silicon carbide (SiC) is a well-known ceramic due to its excellent spectral absorbance and thermo-mechanical properties. The wide band gap, high melting point and thermal conductivity of SiC is used in high temperature applications. The present study was undertaken to investigate the effect of biofield treatment on physical, atomic, and structural...
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In Mn3O4, the crystal structure, dislocation density, particle size and spin of the electrons plays crucial role in modulating its magnetic properties. Present study investigates impact of Biofield treatment on physical and atomic properties of Mn3O4. X-ray diffraction revealed the significant effect of biofield on lattice parameter, unit cell volu...
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Transition metal oxides (TMOs) have been known for their extraordinary electrical and magnetic properties. In the present study, some transition metal oxides (Zinc oxide, iron oxide and copper oxide) which are widely used in the fabrication of electronic devices were selected and subjected to biofield treatment. The atomic and crystal structures of...
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Calcium carbonate (CaCO3) is widely used in pharmaceutical industries and as a supplement in probiotics. The present study was designed to evaluate the effect of biofield energy treatment on the physicochemical properties of the CaCO3. The CaCO3 powder was divided into two parts and referred as control and treated. The control part was remained unt...

Citations

... Oxidative stress is one of the major factors along with other such as alcohol intake, air pollutions, environmental pollutants, physical stress, and radiations, etc. are some of the extrinsic factors, which results in generation of free radicals causing damage to body cells [5,6]. Thus properties [14][15][16], improved crop yield in agriculture science [17,18], microbiology [19][20][21], biotechnology [22,23], improved bioavailability of many compounds [24][25][26] ...
... All ingredients are food grade and typically used in other commercial probiotic products. Sugars such as dextrose have been known to be an effective protectant against oxidation damage [48] whilst calcium carbonate helps the probiotic bacteria adhere to the intestinal wall and assists in lowering the acid content, thus increasing probiotic activity in the GIT [49,50]. ...
... The significant absorbance peaks at 3235, 2940, 1645, 1275, and 845 cm −1 were associated with OH (H-bonded), C-H stretching vibrations, C = O stretching vibrations, and C-S vibration, respectively [26]. In addition, the FTIR observed peak around 600 cm −1 is assigned to the Zn-S and Mn-S bonds [27,28]. Fig. 2. ...
... Further, lithium characteristic peaks appear at 32°, 35.5°, 36.13°, 51.48°, these sharp peaks indicate the high crystallinity of Li 2 O [46]. The low peak intensity of the peak at 2h = 20°proves the presence of lithium phosphate which indicates the interaction between HAP and Li 2 O [47]. ...
... Biofield (putative energy fields) or electromagnetic based energy therapies used to promote health and healing that had been exclusively reported by the National Institute of Health/National Center for Complementary and Alternative Medicine (NIH/NCCAM) [8] . The Trivedi Effect ® has been known to improve the overall productivity of crops in the field of agriculture [9][10][11][12] , altered characteristics features of microbes in the field of microbiology [13][14][15][16] , alter the structural, physical, and thermal properties of several metals and ceramics [17][18][19][20] and improved excellent outcomes of various nutraceutical compounds in the fields of nutraceuticals [21][22][23][24] . Based on the importance of herbs and various essential minerals on stress-related disorders and outstanding effects of Biofield Energy Healing in multiple-fields authors hypothesized that the Biofield Energy Treated test formulation may able to combat with stress-related disorders in stress induced rats model. ...
... Biofield (putative energy fields) or electromagnetic based energy therapies used to promote health and healing that had been exclusively reported by the National Institute of Health/National Center for Complementary and Alternative Medicine (NIH/NCCAM) [10]. The Trivedi Effect ® has been published in numerous peer-reviewed science journals with significant outcomes in many scientific fields such as cancer research [11,12], microbiology [13][14][15][16], biotechnology [17,18], pharmaceutical science [19][20][21][22], agricultural science [23][24][25][26], materials science [27][28][29][30], nutraceuticals [31,32] ...
... To provide experimental evidence for the formation of the HO Ca C CH intermediate, an FTIR study of calcium carbide was carried out as described in Section 2.2.2. A typical FTIR spectrum of calcium carbide powder exposed to the atmosphere in KBr matrix is Fig. 5. FTIR spectra of calcium carbide powder exposed to the atmosphere in KBr matrix: a -data of the current study; b, c -literature data [34]. presented in Fig. 5a. ...
... The morphology and composition of natural limestone are illustrated in Figure S1 To identify the limestone and Ca-MOF-xh-10 structure, FTIR was used to analyze the adsorption peaks of the functional group (Figure 1b). The adsorption peaks of the limestone at 713 cm −1 , 875cm −1 and the band between 1563 cm −1 and 1355 cm −1 were indexed as the in-plane bending of carbonate ion, out-of-plane bending vibration of carbonate ion and asymmetric stretching of carbonate ions, respectively [23]. The adsorption peak at 1685 cm −1 represented the characteristic adsorption of C=O bonds of COOH in H2BDC. ...
... This energy can be harnessed and transmitted by individuals into living and non-living things via the process of Biofield Energy Healing. Biofield Energy Healing Treatment (The Trivedi Effect ® ) have been known to transform the structural, physical, and thermal properties of various metals, chemicals, ceramics and polymers in materials science [22][23][24][25], improved the overall productivity, yield and quality of crops [26][27][28][29], altered characteristics and features of microbes [30][31][32][33], improved excellent outcomes of various nutraceutical compounds in the fields of nutraceuticals [34][35][36][37], and improved the growth and anatomical characteristics of various medicinal plants [38, 39]. Based on the literature related to Biofield Energy Treatment, the authors of this study sought to investigate the effects of Biofield Energy (The Trivedi Effect ® ) on the test herbomineral formulation, which might modulate the key pro-inflammatory cytokines expression in in vitro murine DCs and splenocytes models. ...
... To investigate the effect of initial ions concentration on the adsorption processes, the stock solutions of Li + and Sr 2+ were prepared to different concentrations, namely (0 (control), 5,15,30,45,60,75,90, 100 mg/L). 10 mg of IIP was added to 30 mL from each diluted solution with continuous shaking for 24 h, the solution was filtrated after adsorption, and both the treated solution and the IIP were preserved separately for further testing. ...