45 research outputs found

    Effect of Different Levels of Npk And Vermicompost on Physico-Chemicals Properties of Soil In Greengram [Vigna Radiata L.)] Cv. Samrat

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    In order to investigate the influence of different levels of NPK and vermicompost on physico-chemical properties of soil, growth and yield parameters of greengram, an experiment based on randomized blocks design with 9 treatments, 3 replications and 27 plots was carried out at research farm department of Soil Science, Sam Higginbottom Institute of Agriculture, Technology Sciences (Deemed-to-be-University), Allahabad. Treatments were included witness (control), 2, and 4 t/ha vermicompost and NPK fertilizers. Results showed that all agronomic traits were significantly affected by combination of vermicompost and chemical fertilizers compared to the control. The maximum physical and chemical properties was recorded in the treatment T8 (N P K@100%+vermicompost@100%). Bulk density (1.28Mgm-3), Particle density (2.74 Mgm-3), %Pore space (51.07 %), pH of soil (7.53), Electrical conductivity (0.25 dSm-1), Organic carbon (0.77%), Available nitrogen (334.0 Kgha-1), Available phosphorus (34.71 Kgha-1), Available potassium (206.35 Kgha-1), Where as minimum Physico-chemical properties of soil characters was recorded with the treatment T0 (control)

    Uniqueness Based Records Out Cause With Complete Audit In The Clouds

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    CRA must retain an arbitrary confidential value for users without affecting the security of the revocable IBE plan. In the Search Engine Optimization and Elmira Plan, for each user, each user creates a secret key by hitting some partial keys, which depend on the partial keys that grandparents use in the hierarchy tree. Another drawback is the lack of scalability, which means that the KU-CSP should have a secret value for each user. In this article, we recommend a new, revocable IBE plan with Cloud Revocation Authority to address each of the shortcomings, i.e. the performance is greatly improved and the CRA maintains system confidentiality for users only. Finally, we expanded the proposed IBE revocable plan to provide a CRA-supported certification plan for a limited time period to manage multiple cloud services. In the current system, bad-behaved users / at-risk in ID-PKS configuration are naturally high. The immediate cancellation method employs a reliable web-authorizing authority to reduce the burden of PKG management and help users decode the encrypted text. For experimental results and reward analysis, our plan is perfect for mobile devices. For security analysis, we make it clear that our plan is completely safe against adaptive recognition attacks according to Daffier-Hellman's two-pronged assumption. Outlines define the structure of an IBE cancellable plan with CRA and define their own security concepts to design potential threats and attacks. CRA Assisted Authentication Plan with Limited Time Rights to Manage Multiple Cloud Services

    DESIGN, IN-SILICO DOCKING AND PREDICTIVE ADME PROPERTIES OF NOVEL PYRAZOLINE DERIVATIVES WITH SELECTIVE HUMAN MAO INHIBITORY ACTIVITY

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    Objectives: Curcumin, a known hMAO-A (human Monoamine oxidase-A) inhibitor from Curcuma longa has never been recognized for this property due to its poor permeability and extensive metabolism. Thus, the main objective of this study is to incorporate structural features of Curcumin in the pyrazoline scaffold as an attempt to get potent, selective hMAO-isoform inhibitors with improved permeability.Methods: A series of twelve novel 4, 4'-(4, 5-dihydro-1H-pyrazole-3,5-diyl)bis(2-methoxyphenol) derivatives (1-12) were designed based on the structure of Curcumin. All the designed compounds were evaluated for their hMAO inhibitory activity by in-silico docking studies (Autodock4.20). The both isomers (R-and S-isomer) are considered for simulation approach to understand the effect of chirality and other structural features that determine the potency and selectivity. In order to judge the pharmacokinetic behavior, all the derivatives were evaluated for their in-silico ADME properties by using Qik Prop v 3.0.Results: The results of the present study showed that all the designed compounds were found to be potent and selective hMAO-isoform inhibitors, and exhibited lead like properties from the calculated ADME parameters. Curcumin was taken as a standard for comparison to judge any improvement in permeability.Conclusion: The design strategy adopted has predicted improved potency, selective towards hMAO-isoform and permeability characteristics in comparison with Curcumin.Â

    STRUCTURAL AND THERMAL ANALYSIS OF VARIED METAL WELDING OF 1020 MILD METAL AND 304 STAINLESS STEEL

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    Joining of distinct metals has observed its use broadly in energy new release, electronic, nuclear reactors,petrochemical and chemical industries mostly to get tailor-made homes in a factor and reduction in weight. However efficient welding of distinctive metals has posed a major challenge due to difference in thermo-mechanical and chemical residences of the materials to be joined underneath a common welding situation. This factors a steep gradient of the thermo-mechanical houses alongside the weld. A kind of issues come up in distinctive welding like cracking, massive weld residual stresses, migration of atoms throughout welding causing stress awareness on one facet of the weld, compressive and tensile thermal stresses, stress corrosion cracking, and so forth. Weld residual stress and thermal stress had been analyzed for assorted steel welding of 304 stainless-steel to 1020 mild steel taking 302 stainless steel because the filler metallic. Similarly taking pressure developed as an index the susceptibility of the welded joint to stress corrosion cracking had been studied. It is found that once the filler steel is replaced by Inconel 625 significant growth is obtained within the welded joint in terms of discount in stress developed and stress corrosion cracking. Also the concern of carbon migration is eliminated by way of Inconel 625 as a weld filler metal because of the resistance of nickel-founded alloys to any carbon diffusion through them

    Power Quality Improvement Features For A Distributed Generation System Using Grid Interface Inverter

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    This paper presents that, the renewable energy resources are being increasingly connected to distribution systems by utilizing power electronic converters. And it presents a novel control strategy for achieving maximum benefits from these grid-interfacing inverters when installed in 3-phase 4-wire distribution systems. It is controlled to perform as a multi-function device by incorporating active power filter functionality. The inverter can thus be utilized as: power converter to inject power generated from RES to the grid, and shunt APF to compensate current unbalance, load current harmonics, load reactive power demand and load neutral current. All of these functions may be accomplished either individually or simultaneously. With such a control, the combination of grid-interfacing inverter and the 3-phase 4-wire linear/non-linear unbalanced load at point of common coupling appears as balanced linear load to the grid

    Synthesis, Spectroscopic Characterization and Molecular Docking Studies of 2-Butyl-4-Chloro-5-Formylimidazole Thiosemicarbazone Cobalt (II) Complex

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    A novel 2-Butyl-4-chloro-5-formylimidazole thiosemicarbazonecobalt (II) complex is synthesized and characterized by using spectroscopic techniques like elemental analysis, FT-IR, HRMS, electronic spectral analysis and Powder-X-ray diffraction. The Co(II) complex is found to be highly efficient in inhibiting the growth of human pathogens likeS. aureusand B. megaterium with MIC value 12.0 μg/mL whose inhibition zones are almost comparable with the standard antibiotic. The synthesized complex well occupies in the active site of β- ketoacyl-acyl carrier protein synthase III enzyme (PDB: 1MZS), in consists of catalytic triad and adenine-binding site, so the designed compoundis promising for to treat bacterial infection. © 2019 Author(s)

    Exploring indoor and outdoor dust as a potential tool for detection and monitoring of COVID-19 transmission

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    This study investigated the potential of using SARS-CoV-2 viral concentrations in dust as an additional surveillance tool for early detection and monitoring of COVID-19 transmission. Dust samples were collected from 8 public locations in 16 districts of Bangkok, Thailand, from June to August 2021. SARS-CoV-2 RNA concentrations in dust were quantified, and their correlation with community case incidence was assessed. Our findings revealed a positive correlation between viral concentrations detected in dust and the relative risk of COVID-19. The highest risk was observed with no delay (0-day lag), and this risk gradually decreased as the lag time increased. We observed an overall decline in viral concentrations in public places during lockdown, closely associated with reduced human mobility. The effective reproduction number for COVID-19 transmission remained above one throughout the study period, suggesting that transmission may persist in locations beyond public areas even after the lockdown measures were in place

    Effect Of A Glow Plug In A Gasoline Direct Injection Compression Ignition (gdici) Engine

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    A Gasoline Direct Injection Compression Ignition (GDICI) engine combines the high thermal efficiency of the diesel engine caused by its high compression ratio and the lower soot emissions as a result of using gasoline instead of diesel fuel. In addition, the GDICI has lower NOx emissions than the conventional gasoline engine because of the higher volatility of gasoline which forms a more homogeneous charge of a lower equivalence ratio. However, the GDICI engine faces problems related to the poor auto-ignition quality (low Cetane Number) of gasoline. These problems include difficulty in starting the engine particularly at lower atmospheric temperatures and combustion instability. The goal of this research is to investigate the use of a glow plug in the GDICI engine and to solve these problems
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