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Institution

Christ University

EducationBengaluru, India
About: Christ University is a education organization based out in Bengaluru, India. It is known for research contribution in the topics: Computer science & Convection. The organization has 2267 authors who have published 2715 publications receiving 14575 citations. The organization is also known as: Christ College & Christ University.


Papers
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Journal ArticleDOI
TL;DR: In this paper, the authors present a study on fungal co-infection in the survivors and patients of Coronavirus disease (COVID-19) and provide a strong message to the clinicians, researchers and physicians around the world "nonpathological fungus should not be dismissed as contaminants, they can quell immunocompromised hosts".

7 citations

Journal ArticleDOI
TL;DR: It has been revealed that polyglycolic acid and poly-lactic-co-glyColic acid prove to be best substitute material for photon interactions and polyethylene glycol (PEG) demonstrating adequate tissue-equivalence, expected to be useful to choose most appropriate phantom material for radiation therapy.
Abstract: The efficacy of synthetic polymers as hydrogel phantoms for radiation therapy and dosimetry has been investigated for photon and charged particle (electron, proton and alpha particle) interactions. Tissue equivalence has been studied in terms of photon mass energy-absorption coefficients, KERMA (kinetic energy released per unit mass), equivalent atomic number and energy absorption build-up factors, relative to human tissues (skin, soft tissue, cortical bone and skeletal muscle), in the energy range 0.015-15 MeV. For charged particle interactions, ratio of effective atomic number is examined for tissue-equivalence in the energy region of 10 keV-1 GeV. Well established theoretical formulations are used for computation of photon mass-energy absorption effective atomic number, electron density and KERMA. Five-parameter geometric progression (G-P) fitting approximation is used to compute the values of energy absorption build-up factors. Effective atomic number for charged particle interaction is determined using logarithmic interpolation method. Using the analytical methodology, it has been revealed that all the selected synthetic polymers have good tissue-equivalence relative to all tissue except cortical bone. In particular, polyglycolic acid (PGA) and poly-lactic-co-glycolic acid (PLGA) prove to be best substitute material for photon interactions. On the other hand, % difference between effective atomic number for charged particle relative to human tissues is found least for polyethylene glycol (PEG) demonstrating adequate tissue-equivalence. Therefore, the present study is expected to be useful to choose most appropriate phantom material for radiation therapy.

7 citations

Journal ArticleDOI
TL;DR: In this article, the authors attempt to capture and compile the traits posed by Alpha Generation predominantly in the field of marketing, by adapting the framework of social learning theory, and they find that Alpha Generation will influence the buying patterns, technology, education, markets, and other factors of the economy.
Abstract: Alpha generation plays a significant role in today’s market as firms are supposed to accumulate and store enormous data for better selling. Alpha is the customer next who needs to be targeted by the producers as they tend to influence their parent’s decision making. Literature suggests that Alpha Generation will influence the buying patterns, technology, education, markets, and other factors of the economy, but this fact is still at its infancy stage and under-researched. Adapting the framework of social learning theory, the current paper attempts to capture and compile the traits posed by Alpha Generation predominantly in the field of marketing.

6 citations

Journal ArticleDOI
TL;DR: A metal-free and modular approach for the synthesis of dihydroquinazolinones has been developed from isatoic anhydride, amines, 4-chloro-N-hydroxybenzimidoylchloride.

6 citations


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Performance
Metrics
No. of papers from the Institution in previous years
YearPapers
202371
2022172
2021795
2020479
2019360
2018239