D. K. Sharma
Maharshi Dayanand University
42 Papers
214 Citations
D. K. Sharma is an academic researcher from Maharshi Dayanand University. The author has contributed to research in topics: Molar volume & Medicine. The author has an hindex of 11, co-authored 37 publications.
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Papers
Thermodynamic studies of molecular interactions in mixtures of o-toulidine with pyridine and picolines: Excess molar volumes, excess molar enthalpies, and excess isentropic compressibilities
TL;DR: In this paper, the authors used the measured densities and speeds of sound data to determine excess molar volumes, VE and excess isentropic compressibilities, κ s E of the investigated mixtures.
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Bioremediation of Fungicides by Spent Mushroom Substrate and Its Associated Microflora
TL;DR: All these microbes both individually as well as in different combinations grew well and produced extracellular lignolytic enzymes on SMS, which helped in fungicides degradation, which reduced the residue levels of both fungicides after 1 month of SMS mixing.
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Molar Excess Volumes and Excess Isentropic Compressibilities of Ternary Mixtures Containing o-Toluidine
TL;DR: In this article, the Moelywn-Huggins concept of connectivity between the surfaces of the binary mixture constituents has been extended to ternary mixtures (using the concept of a connectivity parameter of third degree of molecules, 3 ξ, which in turn depends on its topology).
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Oesteogenic Study of Lumbosacral Transitional Vertebra in Central India Region
TL;DR: Knowing the prevalence of Lumbosacral Transitional Vertebra in Central India is designed as a prelude to any type of experimental work in biomechanics, for diagnostic and therapeutic purposes in low back pain and for interventional procedures like spinal anesthesia and lumbar puncture.
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Thermodynamic and topological investigations of ternary mixtures with o-toluidine, tetrahydropyran, and picolines: Excess molar volume and excess isentropic compressibility
TL;DR: In this article, the density, ρijk and speed of sound, uijk, ternary {o-toluidine (i)+tetrahydropyran (j)+α-, β-, or γ-picoline (k)} mixtures have been measured over the entire composition range at T = (298.15, 303.15), and 308.15)
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