GUPTA, Priya, RAHAR, Ravi, YADAV, Rahul Kumar, SINGH, Ajit, RAMANDEEP und KUMAR, Sunil, 2023. Combining Forth and Rust: A Robust and Efficient Approach for Low-Level System Programming †. Engineering Proceedings. 26 Dezember 2023. Vol. 59, no. 1, p. 54-62. DOI 10.3390/engproc2023059054.
Elsevier - Harvard (with titles)Gupta, P., Rahar, R., Yadav, R.K., Singh, A., Ramandeep, Kumar, S., 2023. Combining Forth and Rust: A Robust and Efficient Approach for Low-Level System Programming †. Engineering Proceedings 59, 54-62. https://doi.org/10.3390/engproc2023059054
American Psychological Association 7th editionGupta, P., Rahar, R., Yadav, R. K., Singh, A., Ramandeep, & Kumar, S. (2023). Combining Forth and Rust: A Robust and Efficient Approach for Low-Level System Programming †. Engineering Proceedings, 59(1), 54-62. https://doi.org/10.3390/engproc2023059054
Springer - Basic (author-date)Gupta P, Rahar R, Yadav RK, Singh A, Ramandeep, Kumar S (2023) Combining Forth and Rust: A Robust and Efficient Approach for Low-Level System Programming †.. Engineering Proceedings 59:54-62. https://doi.org/10.3390/engproc2023059054
Juristische Zitierweise (Stüber) (Deutsch)Gupta, Priya/ Rahar, Ravi/ Yadav, Rahul Kumar/ Singh, Ajit/ Ramandeep/ Kumar, Sunil, Combining Forth and Rust: A Robust and Efficient Approach for Low-Level System Programming †., Engineering Proceedings 2023, 54-62.