Autori: Popovic Marko E
Naslov | Like a summer storm: Biothermodynamic analysis of Rotavirus A - Empirical formula, biosynthesis reaction and driving force of virus multiplication and antigen-receptor binding (Article) |
Autori | Popovic Marko E ![]() ![]() |
Info | MICROBIAL RISK ANALYSIS, (2024), vol. 26 br. , str. - |
Projekat | Ministry of Science, Technological Development and Innovation of the Republic of Serbia [451- 03-47/2023-01/200026] |
Ispravka | Web of Science Članak Elečas Rang časopisa Citati: |
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Naslov | The wind of change: Gibbs energy of binding and infectivity evolution of Omicron BA.2.86 Pirola, EG.5.1, XBB.1.16 Arcturus, CH.1.1 and BN.1 variants of SARS-CoV-2 (Article) |
Autori | Popovic Marko E ![]() |
Info | MICROBIAL RISK ANALYSIS, (2024), vol. 26 br. , str. - |
Projekat | Ministry of Science, Technological Development and Innovation of the Republic of Serbia [451-03-47/2023-01/200026] |
Ispravka | Web of Science Članak Elečas Rang časopisa |
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Naslov | Thermodynamics of microbial consortia: Enthalpies and Gibbs energies of microorganism live matter and macromolecules of E. coli, G. oxydans, P. fluorescens, S. thermophilus and P. chrysogenum (Article) |
Autori | Popovic Marko E ![]() |
Info | JOURNAL OF BIOTECHNOLOGY, (2024), vol. 379 br. , str. 6-17 |
Projekat | Ministry of Science, Technological Development and Innovation of the Republic of Serbia [451- 03-47/2023-01/200026] |
Ispravka | Web of Science Članak Elečas Rang časopisa |
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Naslov | Chemical and Thermodynamic Properties Of Bombyx Mori - Domestic Silk Moth Empirical Formula, Driving Force, and Biosynthesis, Catabolism and Metabolism Reactions (Article) |
Autori | Popovic Marko E ![]() ![]() |
Info | THERMAL SCIENCE, (2023), vol. 27 br. 6B, str. 4893-4910 |
Projekat | Ministry of Science, Technological Development and Innovation of the Republic of Serbia [451-03-47/2023-01/200026] |
Ispravka | Web of Science Članak Elečas Rang časopisa |
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Naslov | Death from the Nile: Empirical formula, molar mass, biosynthesis reaction and Gibbs energy of biosynthesis of the West Nile virus (Article) |
Autori | Popovic Marko E ![]() |
Info | MICROBIAL RISK ANALYSIS, (2023), vol. 25 br. , str. - |
Projekat | Ministry of Science, Technological Development and Innovation of the Republic of Serbia [451-03-47/2023-01/200026] |
Ispravka | Web of Science Članak Elečas Rang časopisa |
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Naslov | Eris - another brick in the wall: Empirical formulas, molar masses, biosynthesis reactions, enthalpy, entropy and Gibbs energy of Omicron EG.5 Eris and EG.5.1 variants of SARS-CoV-2 (Article) |
Autori | Popovic Marko E ![]() ![]() |
Info | MICROBIAL RISK ANALYSIS, (2023), vol. 25 br. , str. - |
Projekat | Ministry of Science, Technological Development and Innovation of the Republic of Serbia [451-03-47/2023-01/200026] |
Ispravka | Web of Science Članak Elečas Rang časopisa |
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Naslov | From genotype to phenotype with biothermodynamics: empirical formulas, biosynthesis reactions and thermodynamic properties of preproinsulin, proinsulin and insulin molecules (Article; Early Access) |
Autori | Popovic Marko E ![]() ![]() ![]() |
Info | JOURNAL OF BIOMOLECULAR STRUCTURE & DYNAMICS, (2023), vol. br. , str. - |
Projekat | Ministry of Science, Technological Development and Innovation of the Republic of Serbia; [451- 03-47/2023-01/200026] |
Ispravka | Web of Science Članak Elečas Rang časopisa Citati: |
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Naslov | SARS-CoV-2 strain wars continues: Chemical and thermodynamic characterization of live matter and biosynthesis of Omicron BN.1, CH.1.1 and XBC variants (Article) |
Autori | Popovic Marko E ![]() |
Info | MICROBIAL RISK ANALYSIS, (2023), vol. 24 br. , str. - |
Ispravka | Web of Science Članak Elečas Rang časopisa Citati: Web of Science |
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Naslov | Upcoming epidemic storm: Empirical formulas, biosynthesis reactions, thermodynamic properties and driving forces of multiplication of the omicron XBB.1.9.1, XBF and XBB.1.16 (Arcturus) variants of SARS-CoV-2 (Article) |
Autori | Popovic Marko E ![]() ![]() ![]() |
Info | MICROBIAL RISK ANALYSIS, (2023), vol. 25 br. , str. - |
Projekat | Ministry of Science, Technological Development and Innovation of the Republic of Serbia [451-03-47/2023-01/200026] |
Ispravka | Web of Science Članak Elečas Rang časopisa |
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Naslov | COVID infection in 4 steps: Thermodynamic considerations reveal how viral mucosal diffusion, target receptor affinity and furin cleavage act in concert to drive the nature and degree of infection in human COVID-19 disease (Article) |
Autori | Popovic Marko E ![]() |
Info | HELIYON, (2023), vol. 9 br. 6, str. - |
Projekat | Ministry of Science, Technological Development and Innovation of the Republic of Serbia [451-03-47/2023-01/200026] |
Ispravka | Web of Science Članak Elečas Rang časopisa |
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