2016β€’International journal of advanced research in chemical sciencesOpen access

Volumetric, Ultrasonic and Infra-red Sprectroscopic Stydy of Binary Liquid Mixture of o-xylene, m-xylene and p-xylene with tbutanol at 303.15 K

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Abstract

Density, speed of sound, IR of binary mixture of o-xylene, m-xylene, p-xylene with t-butanol have been measure at 303.15 .The excess molar volume 𝑉 𝐸 and excess Isentropic compressibility 𝐾 𝑆 𝐸 have been calculated from the experimental value.The experimental sound velocisity data have been analysed in terms of free length theory (FLT) and collision factor theory (CFT).The experimental result are discussed in terms of intermolecular interaction between unlike molecules

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Density, speed of sound, IR of binary mixture of o-xylene, m-xylene, p-xylene with t-butanol have been measure at 303.15 .The excess molar volume 𝑉 𝐸 and excess Isentropic compressibility 𝐾 𝑆 𝐸 have been calculated from the experimental value.The experimental sound velocisity data have been analysed in terms of free length theory (FLT) and collision factor theory (CFT).The experimental result are discussed in terms of intermolecular interaction between unlike molecules

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Available abstract

Density, speed of sound, IR of binary mixture of o-xylene, m-xylene, p-xylene with t-butanol have been measure at 303.15 .The excess molar volume 𝑉 𝐸 and excess Isentropic compressibility 𝐾 𝑆 𝐸 have been calculated from the experimental value.The experimental sound velocisity data have been analysed in terms of free length theory (FLT) and collision factor theory (CFT).The experimental result are discussed in terms of intermolecular interaction between unlike molecules

Key concepts: p-Xylene, Xylene, m-Xylene, o-Xylene, Infrared, Ultrasonic sensor, Binary number, Materials science

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Volumetric, Ultrasonic and Infra-red Sprectroscopic Stydy of Binary Liquid Mixture of o-xylene, m-xylene and p-xylene with tbutanol at 303.15 K β€” Research Paper | ScholarLens