You are here

Comparitive Study Of Theoretical Ultrasonic Velocities In Binary Liquid Mixture Containing 1- butanol And Hexane At Temperatures (=303.15, 308.15, 313.15, 318.15 & 323.15) K

Journal Name:

Publication Year:

Abstract (2. Language): 
Ultrasonic velocity is measured experimentally at 3MHz frequency in the binary liquid mixture containing 1-butanol and hexane at temperatures 303.15K, 308.15K, 313.15K, 318.15K & 323.15K over the entire composition range and theoretical values of ultrasonic velocity have been evaluated by using Nomoto's relation, Impedance relation, Van Dael ideal mixture relation. These theoretical values are compared with the experimental values. A good agreement has been found between experimental and theoretical ultrasonic velocities.
FULL TEXT (PDF): 
1-2

REFERENCES

References: 

1. Chauhan .S., Syal.V. K., Chauhan. M.S, Indian J.Pure
Appl. Phy., 32 (1993) 816.
2.Ali Anwar., Nain Anil Kumar., Sharma Vinod
Kumar.,Ahmad Shaki,Acoust. Lett. 24 (2001) 9.
3.Kannappan. V., Xavier Jesu Raja. S., Jaya Santhi. R,
Indian J. Pure Appl. Phys .41 (2003) 690.
4. Pandharinath. S., Patil. V. U., Hassan Mehdi, J Indian
Chem. Soc.78 (2001)368.
5.Deepali. P., Gulwade Narwade. M. L.,Wadadkar. K.N,
Indian J.Chem., 43A (2004) 2102.
6. Narendra. K., Narayanamurthy. P., Srinivasu. Ch, Pak. J.
sci. ind. res. 55(2012) 9-67.
7. Nomoto. O, J. Phys. Soc. Jpn. 13(1958) 1528-1532.
8. Baluja. S., Parsania. P.H, Asian J. Chem. 7 (1995) 417-
423.
9. Subhash Bhatia. C., Rachana Bhatia., Gyan Dubey, J. Mol.
Liq. 152(2010)39-52.
10. Perrin. D.D., Armarego. W.L.F, Purification of Lab.
Chem., 3rd ed., Pergamon Press, Oxford. (1980).
11. Durai. S.,Ramadoss. P, Ind.J.Pure and applied physics.
42 (2004) 334-337.
12. Awwad. A.K.L.M.,Hateem. A, J.Chem Eng. Data.
53(2008)1655-1659.
13. Dave. J.P, J.Mol.Liq. 94 (2001) 203-219.
14. Alamelumangai. G., Santhi. N, Int. J. Science Innvs and
disvs. 1(2011) 362-371.

Thank you for copying data from http://www.arastirmax.com