Theoretical spectroscopic studies of potential energy curves and Fortran parabola for beryllium oxide molecule

Other Title(s)

دراسة نظرية طيفية لمنحنيات طاقة الجهد و منحني فورتران لجزيئة أوكسيد البريليوم

Joint Authors

Salih, Ziyad Adnan
Mahmud, Marwah Walid
al-Amedy, Diya Hamdi

Source

Iraqi Journal of Physics

Issue

Vol. 11, Issue 22 (31 Dec. 2013), pp.93-101, 9 p.

Publisher

University of Baghdad College of Science

Publication Date

2013-12-31

Country of Publication

Iraq

No. of Pages

9

Main Subjects

Physics

Abstract EN

Theoretical spectroscopic studies of beryllium oxide has been carried out, potential energy curves for ground states X1Σ+ and exited states A1Π, B1Σ+ by using two functions Morse and Varshni compared with experimental results.

The potentials of this molecule are agreement with experimental results.

The Fortrat Parabola corresponding to and branches were determined in the range 1

It was found that for electronic transition A1Π- X1Σ+ the bands head lies in branche of Fortrat parabola and the bands degraded towards red region.

For electronic transition B1Σ+ - A1Π Fortart parabola appeared the bands head lies in branche and the bands degraded toward violet region.

American Psychological Association (APA)

Mahmud, Marwah Walid& al-Amedy, Diya Hamdi& Salih, Ziyad Adnan. 2013. Theoretical spectroscopic studies of potential energy curves and Fortran parabola for beryllium oxide molecule. Iraqi Journal of Physics،Vol. 11, no. 22, pp.93-101.
https://search.emarefa.net/detail/BIM-374666

Modern Language Association (MLA)

Mahmud, Marwah Walid…[et al.]. Theoretical spectroscopic studies of potential energy curves and Fortran parabola for beryllium oxide molecule. Iraqi Journal of Physics Vol. 11, no. 22 (Dec. 2013), pp.93-101.
https://search.emarefa.net/detail/BIM-374666

American Medical Association (AMA)

Mahmud, Marwah Walid& al-Amedy, Diya Hamdi& Salih, Ziyad Adnan. Theoretical spectroscopic studies of potential energy curves and Fortran parabola for beryllium oxide molecule. Iraqi Journal of Physics. 2013. Vol. 11, no. 22, pp.93-101.
https://search.emarefa.net/detail/BIM-374666

Data Type

Journal Articles

Language

English

Notes

Includes bibliographical references : p. 101

Record ID

BIM-374666