Author, Subjects, Keywords

Cited Author

 

 
   » By Author or Editor
 » Browse Author by Alphabet
 » By Journal
 » By Subjects
 » Malaysian Journals
 » By Type
 » By Year
 » By Latest Additions
 
 
   » By Author
 » Top 20 Authors
 » Top 20 Article
 » Top Journal Cited
 » Top Article Cited
 » Journal Citation Statistics
 » Usage Since Sept 2007


 
 
 

Login | Create Account

Experimental Set Up for Low-angle X-ray Scattering System used for the Characterization of Materials

Hussein N.A., and Shukri A., and Tajuddin A.A., (2002) Experimental Set Up for Low-angle X-ray Scattering System used for the Characterization of Materials. Malaysian Journal of Science, 21A (Special Issue). pp. 71-76. ISSN 13943065

Full text not available from this repository.

Affiliations

Universiti Sains Malaysia. School of Physics and Garyounis University, Libya. Faculty of Science. Dept. of Physics.
Universiti Sains Malaysia. School of Physics.
Universiti Sains Malaysia. School of Physics and Abdus Salam International Center for Theoretical Physics, Italy.

Abstract

Elastic X-ray scattering at low angles will give rise to diffraction patterns of unique signatures that can be exploited in the identification of various materials. The design criteria for setting up a low angle X-ray scattering system (LAXS) and its parameters of influence will be discussed individually. The LAXS system under construction at the School of Physics, USM, will be introduced.

Item Type:Journal
Additional Information:Mr. N. A. Hussein would like to thank University of Garyounis for their scholarship. Technical assistance from Mr. Azmi Omar is greatly appreciated.
Keywords:LAXS, EDXRD, Elastic X-ray scattering, Characterization of materials
Subjects:Q Science, Computer Science
ID Code:8114

1. Guinier, A. and Fournet, G. (1955). Small angle scattering of X-rays. New York: Wiley.

2. Magalhaes, S.D., Eichler, J., Goncalves, O.D., and Rizzo, P. (1995). App. Rad. Isot. 46(6/7): 647-648.

3. Moore, R., Korbuly, D., and Amplatz, K. (1976). Radiology 120: 713-717.

4. Joseph, P.M. and Spital, R.D. (1981). Med. Phys. 8:551.

5. Holt, R.S., Kouris, K., Cooper, M.J. and Jakson, D.F. (1983). Phys. Med. Bio. 28(12): 1435-1440.

6. Holt, R.S., Cooper, M. J. and Jackson, D.F. (1984). Nuc. Ins. Meth. Phys. Res. 221: 98-104.

7. Chong, C.S. (1989). Proceedings of Regional on Radiation Physics and Medical Physics: 195-200.

8. Neitzel, U., Kosanetky, J. and Harding, G. (1985). Phys. Med. Bio. 30(2): 1289-1296.

9. Johns, P.C. and Yaffe, M.J. (1983). Med. Phys. 10(1): 40-50.

10. Harding, G., Kosanetzky, J. and Neitzel, U. (1985). Phys. Med. Bio. 30(2): 1983-1986.

11. Harding, G., Kosanetzky, J. and Neitzel, U. (1987). med. Phys. 14(4): 515-525.

12. Allday, A.W. and Farquharson, M.J. (2001). Rad. Phys. Chem. 61: 589-592.

13. Kidane, G., Speller, R.D., Royle, G.J. and Hanby, A.M. (1999). phys. Med. Bio. 44: 1791-1802.

14. Bull, C.R., Zwiggelaar, R. and Speller, R.D. (1997). Journal of food Engineering 33: 167-179.

15. Desouky, O.S., Ashour, A.H., Abdullah, M.I. and Elshemey, W,H. (2002). Rad. Phys. Chem. 64: 267-271.

16. Luggar, R.D., Horrocks, J.A., Speller, R.D. and Lacey, R.J. (1997). App. Rad. Isot. 48(2): 215-224.

17. Malden, C.H. and Speller, R.D. (2000). Nuc. Instr. Meth. Phys. Res. A. 449: 408-415.

18. Bomsdorf, T.M. and Kosanetzky, J. (2000). 15th World Conference on NDT, Rome.

Repository Staff Only: item control page