American Psychological Association 6th edition

Jijila, B., Nirmala, V., Selvarengan, P., Kavitha, D., Arun Muthuraj, V., & Rajagopal, A. (2024). Employing neural density functionals to generate potential energy surfaces. Journal of Molecular Modeling, 30(3), 1-18. https://doi.org/10.1007/s00894-024-05834-2

ISO-690 (author-date, English)

JIJILA, B, NIRMALA, V., SELVARENGAN, P., KAVITHA, D., ARUN MUTHURAJ, V und RAJAGOPAL, A., 2024. Employing neural density functionals to generate potential energy surfaces. Journal of Molecular Modeling. 1 März 2024. Vol. 30, no. 3, p. 1-18. DOI 10.1007/s00894-024-05834-2.

Modern Language Association 9th edition

Jijila, B., V. Nirmala, P. Selvarengan, D. Kavitha, V. Arun Muthuraj, und A. Rajagopal. „Employing Neural Density Functionals to Generate Potential Energy Surfaces.“. Journal of Molecular Modeling, Bd. 30, Nr. 3, März 2024, S. 1-18, https://doi.org/10.1007/s00894-024-05834-2.

Mohr Siebeck - Recht (Deutsch - Österreich)

Jijila, B/Nirmala, V./Selvarengan, P./Kavitha, D./Arun Muthuraj, V/Rajagopal, A.: Employing neural density functionals to generate potential energy surfaces., Journal of Molecular Modeling 2024, 1-18.

Emerald - Harvard

Jijila, B., Nirmala, V., Selvarengan, P., Kavitha, D., Arun Muthuraj, V. und Rajagopal, A. (2024), „Employing neural density functionals to generate potential energy surfaces.“, Journal of Molecular Modeling, Vol. 30 No. 3, S. 1-18.

Achtung: Diese Zitate sind unter Umständen nicht zu 100% korrekt.