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ADJUVANT TREATMENT POSSIBILITY OF OZONE THERAPY AND HYPERBARIC OXYGEN IN COVID-19 PATIENTS: A SYSTEMATIC REVIEW
Among various potential treatments, ozone treatment and hyperbaric oxygen therapy towards COVID-19 appears to have an immunological job in view of the regulation of cytokines and interferons, including the acceptance of gamma interferon. Some information propose the conceivable part of ozone treatment in SARS, either as a monotherapy or, all the more everything being equal, as a subordinate to standard treatment regimens; thusly, there is expanding interest in the job of ozone treatment in COVID-19 treatment
A STUDY ON SOIL-LIKE MATERIAL OBTAINED FROM LANDFILL MINING
This study aims at understanding the engineering properties of soil-like-material (SLM) obtained from landfill mining and its feasibility to be reused in multiple potential directions. The engineering properties of the material are taken from the researchers. This study compares the properties of soil-like material (SLM) with the properties of local soil. Leaching of heavy metals from soil-like material is analyzed to understand the contamination levels. Properties like organic content, release of dark colour leachate and amount of soluble salts are analyzed in comparison to local soils. From geotechnical characterization of SLM, it is found that SLM is non-plastic with low specific gravity due to presence of organic material. The strength properties are found to be satisfactory and permeability is similar to that of local soil. From the laboratory test results, it is found that the SLM is not hazardous. It is not similar to local soil. It is not inert and hence the unrestricted re-use of SLM is avoided. Treatment techniques and design measures can be adopted and SLM can be used in various applications
PREDICTING MAXIMUM ENDURANCE OF A HIGH ALTITUDE LONG ENDURANCE UAV WITH TAGUCHI METHOD
In this study, an application of Taguchi method was done on performance of a high altitude long endurance (HALE) unmannedair vehicle (UAV). General performance characteristics were calculated for UAV with a basic mission profile for a typical reconnaissance mission. Initially, endurance values of UAV were calculated and tabulated in an interval of airspeed and flight altitude. Then, Taguchi method was used to predict the maximum endurance on this interval. Secondly, flight range was calculated was calculated and tabulated at the same interval. On the implementation of the Taguchi method, two parameters inthere levels were selected. Airspeed and flight altitude were the two parameters with assumed low, medium and high values. Taguchi method was found to be very effective in estimating the maximum values of flight endurance and the range of the UAV.Based on the response table of Taguchi, Speed was the most significant parameter and the optimum levels of the selected parameters to achieve the highest endurance were speed at level 1 and altitude at level 3. Also the percentage of contribution for speed and altitude was found to be 88.1% and 8.7% respectively
ENHANCEMENT OF TRANSMISSION CAPACITY IN DEREGUALTED POWER SYSTEM-AN OVERVIEW
In this paper review of few pioneer for transmission planning in deregulated environment is been studied and most critical observations are marked. Expansion planning of approaches may be different and it depend upon the type of market is been used for making deregulated environment. Two models are very much possible one is fully adopted in UK and other in US. The two models are discussed in a great detail in literature. Broadly speaking there are only two transmission planning approaches are possible deterministic and non deterministic
Development of Matlab Programme to study nonlinear vibration of a cantilever beam
The finite element model for the nonlinear transverse vibration of the beam was implemented in the program NLB This program was used to calculate the steady state response of the beam. The numerical results from the program were compared to the experimental results obtained by Malatkar (2003). The NLBprogram was also used to calculate the transient response of the beam, which was compared with the response obtained with ANSYS
IMAGE RECOGNITION THROUGH BIOMETRIC FUSION
Biometric is the science and technology ofmeasuring and analyzing biological data of human body, extracting a feature set from the acquired data andcomparing this set against the template set in the database. In this paper, the fusion and recognition of face and iris image based on wavelet features and KernelFisher Discriminant Analysis (KFDA) is developed. Firstly, the dimension is reduced, the noise is eliminated, the storage space is saved and the efficiency is improved by Discrete Wavelet Transform (DWT) to face and iris image. Secondly, face and iris features are extracted and fusion by KFDA. Finally, Nearest Neighbor classifier is selected to perform recognition
A SOLAR POWERED MINI SMART E-PODIUM WITH A WIRELESS LECTURE TRANSMITTER
To get an effective learning experience, conscious work on the part of the teacher and students is required. The purpose of this article is to present the design and construction of a solar powered mini classroom/corporate e-podium. This paper describes how the proposed e-podium exactly mimics ideas and perceptions about the ways lecturers and students work with the podium within the classroom setting to deliver better educational experiences. The e-podium has software that allows each lecture to be transmitted live to the audience via a wireless link. Any mobile device or laptop can be on the same page with the lecturer, especially in very large classroom settings
SUSTAINABLE USE OF RECYCLED AGGREGATE IN CONCRETE
In this research study, Natural coarse aggregates are replaced by Recycled coarse aggregates (RCA) with various percentage of RCA i.e. 25%, 50%, 75%, 100%. An Experimental work was performed to determine the compressive strength of recycled coarse aggregate concrete and to compare them with those of concrete made using natural coarse aggregate
RETRIEVATION OF DAMAGED ASPHALT PAVEMENT BY HELIANTHUS
The self-healingtechnology for the asphalt pavement is indeed a good approach to achieve economyand enhance the life of the pavement. The pavements which are usuallysubject to failuresare healed on their own by introducing the additives such as the self-healingagents. There are varioushealing agents such as steel fibers, glass fibers, Nanorubber, Nanoclay,etc. these materials are not economically available. Helianthus possessamending property which alters the viscosity of the asphalt based products. Hencethis property of Helianthuscan be used in construction of pavementswhich will have self-healingcapabilities. As the asphalt also has the viscoelastic properties, helianthus can accelerate the healing process. The study focuses on various techniques adopted for suitability of pavement healing. The study also reflects on suggesting a suitable material which can help in achieving the self-healing capabilities within economy
SMART CITY VALUATION AND LIFE CYCLE COSTING
Smart citiescombine ubiquitous computing and urban management, and are characterised by pervasive wireless networks and distributed sensor platforms from video surveillance to meteorological stations, monitoring flows from traffic to sewerage and providing information in real-time or in anticipation of risks. These have extended from small projects for example, shopping / business complexes with integrated building control systems combining video surveillance, fire detection and crowd flow monitoring