Profil

MAREHALLI SRINIVAS Shesha Gopal

University of Luxembourg > Faculty of Science, Technology and Medicine (FSTM) > Department of Physics and Materials Science (DPHYMS)

ORCID
0009-0003-2749-4936
Main Referenced Co-authors
AVANZINI, Francesco  (3)
ESPOSITO, Massimiliano  (3)
POLETTINI, Matteo  (1)
Main Referenced Disciplines
Chemistry (3)
Physics (2)

Publications (total 4)

The most downloaded
19 downloads
MAREHALLI SRINIVAS, S. G., POLETTINI, M., ESPOSITO, M., & AVANZINI, F. (May 2023). Deficiency, kinetic invertibility, and catalysis in stochastic chemical reaction networks. Journal of Chemical Physics, 158 (20). doi:10.1063/5.0147283 https://hdl.handle.net/10993/59442

The most cited

2 citations (Scopus®)

MAREHALLI SRINIVAS, S. G., POLETTINI, M., ESPOSITO, M., & AVANZINI, F. (May 2023). Deficiency, kinetic invertibility, and catalysis in stochastic chemical reaction networks. Journal of Chemical Physics, 158 (20). doi:10.1063/5.0147283 https://hdl.handle.net/10993/59442

Thesis and dissertations

Doctoral thesis

MAREHALLI SRINIVAS, S. G. (2025). Nonequilibrium Thermodynamics of Growth: A Chemical Reaction Network Approach [Doctoral thesis, Unilu - University of Luxembourg]. ORBilu-University of Luxembourg. https://orbilu.uni.lu/handle/10993/64813

Scientific outputs

Articles in scientific journals with peer reviewing verified by ORBi or included in HEC journal guide

MAREHALLI SRINIVAS, S. G., AVANZINI, F., & ESPOSITO, M. (June 2024). Characterizing the conditions for indefinite growth in open chemical reaction networks. Physical Review. E, 109 (6), 064153. doi:10.1103/PhysRevE.109.064153
Peer Reviewed verified by ORBi

MAREHALLI SRINIVAS, S. G., AVANZINI, F., & ESPOSITO, M. (June 2024). Thermodynamics of Growth in Open Chemical Reaction Networks. Physical Review Letters, 132 (26), 268001. doi:10.1103/PhysRevLett.132.268001
Peer Reviewed verified by ORBi

MAREHALLI SRINIVAS, S. G., POLETTINI, M., ESPOSITO, M., & AVANZINI, F. (May 2023). Deficiency, kinetic invertibility, and catalysis in stochastic chemical reaction networks. Journal of Chemical Physics, 158 (20). doi:10.1063/5.0147283
Peer Reviewed verified by ORBi

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