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Sat, 03 Feb 2024 08:38:21 GMT /slideshow/aapptx/266097567 vickkykusmariya@slideshare.net(vickkykusmariya) aa.pptx vickkykusmariya image and box <img style="border:1px solid #C3E6D8;float:right;" alt="" src="https://cdn.slidesharecdn.com/ss_thumbnails/aa-240203083821-0b77a8e6-thumbnail.jpg?width=120&amp;height=120&amp;fit=bounds" /><br> image and box
aa.pptx from Brajendra Kusmariya
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Acoustic and Viscometric studies of manitol with life-essential Co(II) and Cu(II) metal ions in aqueous medium at 298.15 K /slideshow/acoustic-and-viscometric-studies-of-manitol-with-lifeessential-coii-and-cuii-metal-ions-in-aqueous-medium-at-29815-k/53588084 ultrasonicarticlejoacjan2015-151006091802-lva1-app6892
The ultrasonic velocity, density and viscosity of manitol in different concentration of aqueous solutions of Cu(II) and Co(II) metal ions at 298.15 K and one atmospheric pressures has been investigated to understand the molecular interactions of manitol with metal ions in aqueous medium. The acoustical parameters such as isentropic compressibility, intermolecular free length, specific acoustic impedance, relative association, free volume, internal pressure, viscous relaxation time, Gibb’s free energy, attenuation coefficient, Rao’s constant, and Wada’s constant have been calculated from the experimental data. On the basis of the Jones-Dole equation, Falkenhagen coefficient A and Jones-Dole B-coefficient have been evaluated. The data have been interpreted in terms of molecular interactions and the variations in these parameters with solute concentration give the information about intermolecular interactions.]]>

The ultrasonic velocity, density and viscosity of manitol in different concentration of aqueous solutions of Cu(II) and Co(II) metal ions at 298.15 K and one atmospheric pressures has been investigated to understand the molecular interactions of manitol with metal ions in aqueous medium. The acoustical parameters such as isentropic compressibility, intermolecular free length, specific acoustic impedance, relative association, free volume, internal pressure, viscous relaxation time, Gibb’s free energy, attenuation coefficient, Rao’s constant, and Wada’s constant have been calculated from the experimental data. On the basis of the Jones-Dole equation, Falkenhagen coefficient A and Jones-Dole B-coefficient have been evaluated. The data have been interpreted in terms of molecular interactions and the variations in these parameters with solute concentration give the information about intermolecular interactions.]]>
Tue, 06 Oct 2015 09:18:02 GMT /slideshow/acoustic-and-viscometric-studies-of-manitol-with-lifeessential-coii-and-cuii-metal-ions-in-aqueous-medium-at-29815-k/53588084 vickkykusmariya@slideshare.net(vickkykusmariya) Acoustic and Viscometric studies of manitol with life-essential Co(II) and Cu(II) metal ions in aqueous medium at 298.15 K vickkykusmariya The ultrasonic velocity, density and viscosity of manitol in different concentration of aqueous solutions of Cu(II) and Co(II) metal ions at 298.15 K and one atmospheric pressures has been investigated to understand the molecular interactions of manitol with metal ions in aqueous medium. The acoustical parameters such as isentropic compressibility, intermolecular free length, specific acoustic impedance, relative association, free volume, internal pressure, viscous relaxation time, Gibb’s free energy, attenuation coefficient, Rao’s constant, and Wada’s constant have been calculated from the experimental data. On the basis of the Jones-Dole equation, Falkenhagen coefficient A and Jones-Dole B-coefficient have been evaluated. The data have been interpreted in terms of molecular interactions and the variations in these parameters with solute concentration give the information about intermolecular interactions. <img style="border:1px solid #C3E6D8;float:right;" alt="" src="https://cdn.slidesharecdn.com/ss_thumbnails/ultrasonicarticlejoacjan2015-151006091802-lva1-app6892-thumbnail.jpg?width=120&amp;height=120&amp;fit=bounds" /><br> The ultrasonic velocity, density and viscosity of manitol in different concentration of aqueous solutions of Cu(II) and Co(II) metal ions at 298.15 K and one atmospheric pressures has been investigated to understand the molecular interactions of manitol with metal ions in aqueous medium. The acoustical parameters such as isentropic compressibility, intermolecular free length, specific acoustic impedance, relative association, free volume, internal pressure, viscous relaxation time, Gibb’s free energy, attenuation coefficient, Rao’s constant, and Wada’s constant have been calculated from the experimental data. On the basis of the Jones-Dole equation, Falkenhagen coefficient A and Jones-Dole B-coefficient have been evaluated. The data have been interpreted in terms of molecular interactions and the variations in these parameters with solute concentration give the information about intermolecular interactions.
Acoustic and Viscometric studies of manitol with life-essential Co(II) and Cu(II) metal ions in aqueous medium at 298.15 K from Brajendra Kusmariya
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