Journal articles:

 

Darvas Gy. (1978) Egy topologikus tudományrendszerezési modell körvonalai, Magyar Filozófiai Szemle, 3, 337-359.

Darvas G., Vas-Zoltán P. (1978) Recent trends in national science and technology policies in the European region, Komunikaty Politechnika Wroclawska, Nr. 139, 5-12.

Darvas Gy., Haraszthy Á. (1978) Kutatóegységek interdiszciplináris szervezettségének rendszerszemléletű vizsgálata egy nemzetközi összehasonlító tudományszociológiai program alapján, Tudománytani Szemelvények, 9, 73-87.

Darvas Gy. (1979) Néhány gondolat az interdiszciplináris kutatások szervezeti feltételeiről, Magyar Tudomány, 12, 937-943.

Darvas Gy. (1980) A tudományirányítás mechanizmusáról, Magyar Tudomány, 6, 466-475.

Darvas, G., Haraszthy, Á. (1980) Some aspects of interdisciplinary organisation of research teams (Systems approach on empirical basis of an international study of sociology of science), Science of Science, An International Journal of Studies on Scientific Reasoning and Scientific Enterprise (Ossolineum-Reidel), 1, 1, 93-106.

Darvas, G., Haraszthy, Á. (1980) Some new aspects of interdisciplinary organisation of research teams (Systems approach on empirical basis of an international study of sociology of science), 2nd report, Science of Science, An International Journal of studies on Scientific Reasoning and Scientific Enterprise (Ossolineum-Reidel), 1, 3, 263-267.

Darvas Gy. (1981) Interdiszciplináris kutatási területek összehasonlító vizsgálata Lengyelországban és Magyarországon, Tudományszervezési Tájékoztató, 2, 178-181.

Darvas Gy. (1982) Interdiszciplináris kutatások vizsgálata, Tudományszervezési Tájékoztató, 3-4, 245-249.

Darvas Gy. (1982) Helyzetkép az interdiszciplináris kutatások szervezeti és irányítási feltételeire vonatkozó vizsgálatokról, Tudományszervezési Tájékoztató, 6, 447-460.

Darvas Gy. (1983) Kutatóközpontok a nemzetközi tudományos életben és Magyarországon, Kutatás-Fejlesztés, 6. 547-554.

Darvas Gy. (1985) Az anyag szerkezetéről alkotott felfogás szerepe a tudományos világképben és az általános kultúrában, Acta Philosophica, Tomus 12, 185-192.

Darvas Gy. (1986) Az amerikai kormány K&F költségvetés tervezete az 1986. évre, Kutatás-Fejlesztés, 2, 139-154.

Darvas, G. (1986) Some conceptual and operational contradictions of S+T policy in the mid-eighties, Science of Science, An International Journal of Studies on Scientific Reasoning and Scientific Enterprise (Ossolineum), 2, 151-165.

Darvas Gy. (1987) A tudomány és a műszaki fejlesztés a nyolcvanas évek közepén - A politika kihívása, Magyar Tudomány, 3, 180-189.

Darvas Gy., Mosoniné Fried, J. (1987) Új fejlemények az alapkutatások értelmezésében, irányításában, hasznosításában, Kutatás-Fejlesztés, 6, 536-548.

Darvas Gy. (1988) Tudománypolitika Jugoszláviában, Kutatás-Fejlesztés, 1, 46-55.

Darvas Gy. (1988) A tudomány: a társadalmi termelés "haszontalan'' ? kölyke, INFO-Társadalomtudomány, 4, 41-48.

Nagy, D.,  Darvas, G. (1990) Manifesto on (dis)symmetry: with some preliminary symmetries, Symmetry: Culture and Science, 1, 1, 3-26.

Darvas, G. (1990) Strategies for science and technology development in the CMEA member-states in the eighties, Science of Science, An International Journal of Studies on Scientific Reasoning and Scientific Enterprise (Ossolineum), 1-2, 43-56.

Darvas Gy., Füzeséri A., Mosoniné Fried J., Tolnai M. (1991) A tudományos teljesítmény elérésének feltételei - értékelésének lehetőségei, Magyar Tudomány, 7, 794-852.

Darvas, G. (1992) Lessons in the institutional system of S+T policy in Europe - with special regard to the Eastern Central-European countries - in the 80's, General aspects of research management systems in the European countries, IGW-report über Wissenschaft und Technologie in den neuen Bundesländern sowie mittel und osteuropäischen Ländern (Analysen, Berichte, Kommentare, Dokumente), Erlangen: Institute für Gesellschaft und Wissenschaft, 6. Jahrgang, Heft 3, 83-110.

Darvas, G., Nagy, D. (1992) Symmetry of patterns and patterns of symmetry, Symmetry: Culture and Science, Special issue: Symmetry of Patterns, Extended abstracts of the 2nd Interdisciplinary Symmetry Symposium and Exhibition, August 17-23, 1992, Hiroshima, 1, 6-8.

Darvas, G., et al. (1995), Transformation of the science systemscase-study: The Institute for Solid State Physics of the Hungarian Academy of Sciences, Teorie vedy,  IV (XVII) 2-3, Prague, 87-132.

Darvas, G. (1995) ISIS-Symmetry: Looking for truth and beauty, Symmetry: Culture and Science, Special issue: Symmetry: Natural and Artificial, 1, 9-17.

Darvas, G. (1998) Laws of symmetry breaking, Symmetry: Culture and Science, 9, 2-4, 119-127

Darvas Gy. (1999) Szimmetria a tudományban és a művészetben, Magyar Tudomány, 3, 257-265.

Darvas Gy. (1999) Disszimmetria, Élet és Tudomány, 30, 935-937.

Darvas Gy. (1999) Tudomány a művészetben, művészet a tudományban, Disszimmetria, Élet és Tudomány,
http://www.sulinet.hu/eletestudomany/archiv/1999/9930/disszim/disszimm.htm

Darvas, G. (1999) Science in the Arts - Art in the Sciences, Dissymmetric Editorial, Visual Mathematics: http://members.tripod.com/vismath/info/tudm.htm

Darvas, G. (1999) History of symmetry in the sciences and the arts, Introduction, Symmetry: Culture and Science, 10, 1-2, 5-6.

Darvas, G. (2001) What is symmetry? http://symmetry.hu/definition.html

Darvas, G. (2002) Generalisation of the concept of symmetry and its classification in physics,
http://quantum.ttk.pte.hu/~wigner/proceedings/papers/w48.htm; also to appear in the  Heavy Ion Physics, 15.

Darvas Gy. (2002) "Csodálatos dolog tudni, hogy igazából fizikus vagy" Wigner Jenő születésének századik évfordulóján, Természet Világa, 133, 12, 537-539.

Darvas, G. (2003) Perspective as a symmetry transformationNexus Network Journal, Architecture and Mathematics,  5, 1 (Spring), 9-21.

Darvas, G. (2003) Perspective as a symmetry transformation, http://www.nexusjournal.com/Darvas.html

Darvas, G.,  Farkas, F. T. (2003) Animated graphic illustration of Quantum ChromoDynamics (QCD), Ponticulus Hungaricus, http://www.iif.hu/~visontay/ponticulus/hidveres/QCD-symmetry-01.htm, http://members.iif.hu/visontay/ponticulus, November, 18 p.

Darvas, G., Farkas, F. T. (2003) The pleasure of quarks, A graphic illustration of QCD, Ponticulus Hungaricus, VII, 11, November. http://members.iif.hu/visontay/ponticulus/rovatok/hidverok/QCD-symmetry.html

Darvas Gy. (2003) Állandóság és változás szintézise: Szimmetria a tudományban és a művészetben, MADI Art Periodical,  5, 5-14 .

Darvas, G. (2003) Symmetry-antisymmetry, quasiperiodicity and a classification of gauge invariances, Symmetry: Culture and Science, 14-15, 21-35. https://doi.org/10.26830/symmetry_2003_1-4_021

Darvas, G. (2004) Generalisation of the concept of symmetry and its classification in physics,  
Acta Physica Hungarica A) Heavy Ion Physics 19, 3-4  373 – 379; also
http://quantum.ttk.pte.hu/~wigner/proceedings/papers/w48.htm.

Darvas, G. (2004) Self-organizing Systems in the Light of the Arrows of Orderedness, Symmetry, and Entropy, TripleC (Cognition, Communication, Co-operation), http://triplec.uti.at/articles, Thematic issue: "Foundations of Self-Organisation", 2, 2, 63-73.

Darvas, G. (2004) Definition(s) of order/disorder? FIS Session on Entropy and information, http://fis.iguw.tuwien.ac.at/mailings/1524.html, http://fis.iguw.tuwien.ac.at/fisspecials/index.html.

Darvas, G. (2005) Order, entropy and Symmetry, Symmetry: Culture and Science, 16, 91-108. https://doi.org/10.26830/symmetry_2005_1_098

Darvas, G., Farkas, F.T. (2006) An artist’s works through the eyes of a physicist: graphic illustration of particle symmetries. Leonardo 39(1), 51–57. https://doi.org/10.1162/002409406775452195

Darvas, G. (2006) Obobscsenie geometricseskih simmetrij v nauke i iskusstve 20-ogo veka, MADI Art Periodical, 8, 38.

Darvas, G. (2006) Generalization of geometric symmetries in science and art of the 20th century, MADI Art Periodical, 8, 39.

Darvas, G. (2006Symmetry and thought: The heuristic role of symmetry principles in creative spirit and in the process of scientific discoveryTechnoetic Arts - Journal of Speculative Research, 2.

Darvas, G. (2006) Symmetry in Art and Science Education, Symmetry: Culture and Science, 17, 5-6. https://doi.org/10.26830/symmetry_2006_1-2_005

Darvas, G. (2006) Invariance, identity, equivalence, Symmetry: Culture and Science, 17, 175-192. https://doi.org/10.26830/symmetry_2006_1-2_175

Darvas, G. (2008) Preface to the Symmetries of the Möbius strip issue, Symmetry: Culture and Science, 19, 1, 9-12. https://doi.org/10.26830/symmetry_2008_1_009

Darvas G., Farkas, F. T.  (2008) Quantum Scent Dynamics (QSD): A new composite model of physical particles https://arXiv:0803.2497v1  [hep-ph]  21 p.

Darvas, G. (2009) Conserved Noether currents, Utiyama's theory of invariant variation, and velocity dependence in local gauge invariance, Concepts of Physics, VI,  1, 3-16;
http://arxiv.org/abs/0811.3189v1

Darvas, G. (2009) Can the causal paradoxes of QM be explained in the framework of QED?,  Foundations of Science, 14, 4, 273-280; DOI 10.1007/s10699-009-9159-x, http://www.springerlink.com/content/k272555u06q2074w/?p=14dd4c9c5b5e4c1396b3e4855a87e9e2&pi=1 .

Darvas, G. (2009) The  unreasonable effectiveness of symmetry in the sciencesBiological Theory, (under publication), 92 p.

Darvas, G. (2009) Foreword to the Symmetry Festival 2009, Symmetry: Culture and Science, 20, 1-4, 5-9. https://doi.org/10.26830/symmetry_2009_1-4_005

Darvas, G.  (under publication) Simmetria v formlenii mirovozrenia, Moscow: Faculty of Philosophy, Lomonosov Moscow State University.

Darvas G. (2010) Some approaches to  intercultural  aspects of creativity; "Intellectual challenge of  understanding the worldthe human self, and the Universe",  Mediterranean Journal for Research in Mathematics Education, 9, 2, 119-134.

Darvas, G.(2011) On Symmetries and the Language of Information, Information, 2 (3), 455-459; https://10.3390/info2030455 http://www.mdpi.com/2078-2489/2/3/455/, http://www.mdpi.com/2078-2489/2/3/455/pdf.

Darvas, G. (2011) The Isotopic Field Charge Spin Assumption, International Journal of Theoretical Physics, 50, 10, 2961-2991.HTTPS:// 10.1007/s10773-011-0796-9 http://www.springerlink.com/content/g28q43v2112721r1/ http://www.springerlink.com/openurl.asp?genre=article&id=https://10.1007/s10773-011-0796-9

Darvas, G, (2011) On field theories based on Finsler space (Symmetries with Finsler metric), Symmetry: Culture and Science, 23, 2, 101-104. https://doi.org/10.26830/symmetry_2011_2_023 

Darvas, G., Koblyakov, A.A., Petoukhov, S.V., Stepanian, I.V. (2011) Symmetries in molecular-genetic systems and musical harmony, Symmetry: Culture and Science, 23, 3-4, 343-375. http://symmetry.hu/scs_online/SCS_23_3-4.pdf

Darvas, G, (2012) Finsler geometry in GTR in the presence of a velocity dependent gauge field, Bulletin of the Transilvania University of Brasov, Series III: Mathematics, Informatics, Physics, 5 (54), 2, 23-34.

Darvas, G, (2012) GTR and the Isotopic Field Charge Spin Assumption, Hypercomplex Numbers in Geometry and Physics, 1 (17), 9, 50-59.

Darvas, G, (2012) Finslerian approach to the electromagnetic interaction in the presence of isotopic field-charges and a kinetic field, Hypercomplex Numbers in Geometry and Physics, 2 (18) 9, 1-19.

Darvas, G, (2013) A symmetric adventure beyond the Standard Model - Isotopic field-charge spin conservation in the electromagnetic interaction, Symmetry: Culture and Science, 24, 1-4, 17-40.

Darvas, G, (2013) The isotopic field-charge assumption applied to the electromagnetic interaction, Int J Theor Phys, (2013) 52:3853–3869, DOI 10.1007/s10773-013-1693-1, http://www.springerlink.com/openurl.asp?genre=article&id=https://10.1007/s10773-013-1693-1, (online); 52, 11 (2013), 3853–3869 (printed).

Darvas, G. (2014) Electromagnetic Interaction in the Presence of Isotopic Field-Charges and a Kinetic Field, Int J Theor Phys, https://doi.org/10.1007/s10773-013-1781-2  , 13 p. http://www.springerlink.com/openurl.asp?genre=article&id=https://10.1007/s10773-013-1781-2 (online, October 2013); 53, 1 (2014), 39-51 (printed).

Darvas, G, (2015) Semi-jubilee of Symmetry: Culture and Science, Editorial, Symmetry: Culture and Science, 26, 1, 3-4. https://doi.org/10.26830/symmetry_2015_1_003

Darvas, G, (2015) Symmetries in Origami, Editorial, Symmetry: Culture and Science, 26, 2, 133. https://doi.org/10.26830/symmetry_2015_2_133

Darvas, G, (2015) Symmetries in Music, Editorial, Symmetry: Culture and Science, 26, 3, 260. https://doi.org/10.26830/symmetry_2015_3_260

Darvas, G, (2015) Editorial, Symmetry: Culture and Science, 26, 4, 403-404. https://doi.org/10.26830/symmetry_2015_4_403

Darvas, G. (2015) The unreasonable effectiveness of symmetry in the sciences, Symmetry: Culture and Science, 26, 1, 039-082. https://doi.org/10.26830/symmetry_2015_1_039

Darvas, G. (2015) Quaternion-vector dual space algebras applied to the Dirac equation and its extensions, paper submitted to the X-th International Conference on Finsler Extensions of Relativity Theory, August18-24, 2014, Braşov, Romania, Bulletin of the Transilvania University of Brasov, Series III: Mathematics, Informatics, Physics . 2015, Vol. 8 Issue 57-1, pp.27-42. https://www.researchgate.net/publication/283745150_Quaternionvector_dual_space_algebras_applied_to_the_dirac_equation_and_its_extensions .

Darvas, G. (2015) Algebra of state transformations in strongly relativistic interactions, 13 p. https://www.researchgate.net/publication/295401749_Algebra_of_state_transformations_in_strongly_relativistic_interactions .

Beke, L., Darvas, G., Dárdai, Zs., SAXON-Szász, J. (2016) Preface [to Non-Euclidean Geometry, Curved Spaces, Gravitational Waves], Symmetry: Culture and Science, 27, 3, 195-204. https://doi.org/10.26830/symmetry_2016_3_195

Darvas, G. (2016) Isotopic field-charge (IFC) study project, https://www.researchgate.net/project/Isotopic-field-charge-IFC-study-project-G-Darvas .

Darvas, G. (2017)  A few questions related to information and symmetries in physics,  Eur. Phys. J. Special Topics, 226,  2, 197–205, https://doi.org/10.1140/epjst/e2016-60356-1  

Darvas, G. (2018) Introduction [to H. Lalvani: Morphological Universe – Genetics and Epigenetics in Form-making], Symmetry: Culture and Science, 29, 1, 5-6. https://doi.org/10.26830/symmetry_2018_1_005   

Darvas, G. (2018) Musical perception and antisymmetries of the hemispheres of human brain, Biomashsystemi, 2, 3 (iul’-sentyabr’), 333-365.

Darvas, G. (2018) Petoukhov’s rules on symmetries in long DNA-texts, Symmetry: Culture and Science, 29, 2, 318-320. https://doi.org/10.26830/symmetry_2018_21_318  

Darvas, G. (2018) Algebra of hypersymmetry (extended version) applied to state transformations in strongly relativistic interactions illustrated on an extended form of the Dirac equation, preprint, 19 p.,
https://arxiv.org/abs/1809.05396 
https://www.researchgate.net/publication/327232210_Algebra_of_hypersymmetry_extended_version_applied_to_state_transformations_in_strongly_relativistic_interactions_illustrated_on_an_extended_form_of_the_Dirac_equation ,
https://doi.org/10.13140/RG.2.2.11959.57766 

Darvas, G. (2018) Variation principles, invariance principles, symmetry principles, laws of nature, Symmetry: Culture and Science, 29, 4, 453-474, https://doi.org/10.26830/symmetry_2018_4_453

Darvas, G., Petoukhov, S.V. (2019) Algebra for transforming genetic codes based on matrices applied in quantum field theories; chapter 5 in: series Advances in Intelligent Systems and Computing, Vol. 902; Hu, Zhengbing, Petoukhov, Sergey, He, Matthew (Eds): Advances in Artificial Systems for Medicine and Education II, ISBN: 978-3-030-12081-8, Springer Nature, xv+793 p.

Darvas, G. (2020a) Giving mass to the mediating boson of HyperSymmetry by a field transformation applying Higgs mechanism beyond the Standard Model, J. Phys.: Conf. Ser. 1557 012002, 1-12. https://doi.org/10.1088/1742-6596/1557/1/012002 ;
Paper presented at the ХХI International ConferencePhysical Interpretations of Relativity Theory” – 2019, Bauman State Technical University, Moscow, 1–5 July 2019, abstract: pp. 32–33, in: Physical Interpretations of Relativity Theory, Moscow, 1–5 July, 2019, Abstracts, Moscow: Bauman M. State Technical University, 121 p.

Darvas, G. (2020b) Hypersymmetry field rotation angle, Chinese Journal of Physics, 66, 776-786. https://doi.org/10.1016/j.cjph.2020.05.013

Darvas, G. (2021) What is Hypersymmetry? Symmetry: Culture and Science, 32, 2, 117-120. https://doi.org/10.26830/symmetry_2021_2_117