dhr. dr. A.W.J. (Ton) Muller

  • Faculteit der Natuurwetenschappen, Wiskunde en Informatica
  • Bezoekadres
    De Boelelaan 1108  Amsterdam
  • Postadres:
    Postbus  66
    1000 AB  Amsterdam
  • A.W.J.Muller@uva.nl
    T: 0205257650


  • Muller, A. W. J. (2012). Life explained by heat engines. In J. Seckbach (Ed.), Genesis - in the beginning: precursors of life, chemical models and early biological evolution. (pp. 321-344). (Cellular origin, life in extreme habitats and astrobiology; No. 22). Dordrecht: Springer. DOI: 10.1007/978-94-007-2941-4_19 [details]


  • Muller, A. W. J. (2011). Let there be life: thermosynthesizers and Hoover's meteorites. CI1 carbonaceous meteorites should be tested for the presence of thermosynthesizers. Journal of Cosmology, [20]. [details] [PDF]


  • Muller, A. W. J. (2009). Emergence of animals from heat engines - part 1. Before the snowball earths. Entropy, 11(3), 463-512. DOI: 10.3390/e11030463 [details] [PDF]


  • Muller, A. W. J., & Schulze-Makuch, D. (2006). Sorption heat engines: simple inanimate negative entropy generators. PHYSICA A-STATISTICAL MECHANICS AND ITS APPLICATIONS, 362, 369-381. DOI: 10.1016/j.physa.2005.12.003 [details]
  • Muller, A. W. J., & Schulze-Makuch, D. (2006). Thermal energy and the origin of life. Origins of Life and Evolution of Biospheres, 36, 77-189. DOI: 10.1007/s11084-005-9003-4 [details]




  • Muller, A. W. J. (1996). The thermosynthesis model for the origin of life and the emergence of regulation by Ca2+. Essays in Biochemistry, 31, 103-119. [details]
  • Muller, A. W. J. (1996). Life on Mars? Nature, 380, 100-100. DOI: 10.1038/380100b0 [details]


  • Muller, A. W. J. (1995). Were the first organisms heat engines? A new model for biogenesis and the early evolution of biological energy conversion. Progress in Biophysics & Molecular Biology, 63, 193-231. DOI: 10.1016/0079-6107(95)00004-7 [details]


  • Muller, A. W. J. (1993). A mechanism for thermosynthesis based on a thermotropic phase transition in an asymmetric biomembrane. Physiological Chemistry and Physics and Medical NMR, 115, 193-231. [details]


  • Muller, A. W. J., Maessen, F. J. M. J., & Davidson, C. L. (1990). Determination of the corrosion rates of six dental NiCrMo alloys in an artificial saliva by chemical analysis of the medium using ICP-AES. Dental Materials, 6(1), 63-68. DOI: 10.1016/0109-5641(90)90048-J [details]
  • Muller, A. W. J., Maessen, F. J. M. J., & Davidson, C. L. (1990). The corrosion rates of five dental NiCrMo alloys determined by chemical analysis of the medium using ICP AES, and by potentiostatic deaeration. Corrosion Science, 30(6-7), 583-601. DOI: 10.1016/0010-938X(90)90025-Z [details]
  • Muller, A. W. J., van Loon, L. A. J., & Davidson, C. L. (1990). Electrical potentials of restorations in subjects without oral complaints. Journal of Oral Rehabilitation, 17, 419-424. DOI: 10.1111/j.1365-2842.1990.tb01413.x [details]


  • Muller, A. W. J., de Groot, D. A. J., & Davidson, C. L. (1989). The determination of the electrical potential of a metallic restoration in the oral cavity. Journal of Oral Rehabilitation, 16, 271-277. DOI: 10.1111/j.1365-2842.1989.tb01342.x [details]
  • Muller, A. W. J., & Davidson, C. L. (1989). Measurement of the small corrosion current of a NiCr alloy by the potentiostatic deaeration method. Journal of the Electrochemical Society, 136, 46-53. DOI: 10.1149/1.2096612 [details]


  • Muller, A. W. J. (1985). Thermosynthesis by biomembranes: energy gain from cyclic temperature changes. Journal of Theoretical Biology, 115(3), 429-453. DOI: 10.1016/S0022-5193(85)80195-8 [details]



  • Muller, A. W. J. (1998). Thermosynthesis: where biology meets thermodynamics. In W. Ługowski, & K. Matsuno (Eds.), Uroboros, or biology between mythology and philosophy. (pp. 139-167). Wrocław: Arboretum. [details] [PDF]


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