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JOURNALS // Nanosystems: Physics, Chemistry, Mathematics // Archive

Nanosystems: Physics, Chemistry, Mathematics, 2016 Volume 7, Issue 3, Pages 518–522 (Mi nano232)

Papers, presented at NANO-2015

Mathematical modeling for the evaluation of various parameters of $5$-methyl salicylaldehyde aniline nano composite using fuzzy evidence theory

R. Irene Hepzibahab, G. Geethalakshmic, R. Ida Malarselvidb

a Department of Mathematics, AVC College of Engineering, Mayiladuthurai-609305, Tamil Nadu, India
b Research and Development Centre, Bharathiar University, Coimbatore – 641046, Tamil Nadu, India
c Department of Mathematics, K.S.K College of Engineering and Technology, Kumbakonam, Tamil Nadu, India
d Centre for Advanced Material Research, Government Arts College, Kumbakonam, Tamil Nadu, India

Abstract: Densities, viscosities, surface tension and Ultrasonic speeds of nano composite $5$-Methyl Salicylaldehyde (5MS) with Aniline (A) were measured over the entire composition range at temperature $303$ K. The adiabatic compressibility $(\beta)$, free length $(L_f)$, free volume $(V_f)$ and viscous relaxation time $(T)$ have been calculated from the experimental data. The experimental results have been correlated using Fuzzy Evidence Theory and the results are interpreted on the basis of possible hydrogen bonding between unlike molecules and changes in molecular association equilibria as well as structural effects for these systems. A good agreement among experimental data and the values estimated by theoretical procedure was obtained.

Keywords: 5-MS-A composite material, hydrogen bonding, acoustical and physical parameters, Fuzzy Evidence Theory.

PACS: 02.10Ab, 02.50Cw, 02.50.Le, 07.05.Mh

Language: English

DOI: 10.17586/2220-8054-2016-7-3-518-522



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