Andrzej Radosław Trzęsowski
Associate Professor of Applied Sciences
e-mails: atrzes@ippt.gov.pl, artrzes@gmail.com


Scientific activities:   Theoretical Physics, Applied Mechanics of Solids

Selected papers:

  • Geometrical theory of continuous distributions of dislocations in Bravais crystals based on the notion of principal congruences of Volterra-type effective dislocation lines in continuized (Bravais) crystals with secondary point defects:

    1. A. Trzęsowski, Geometrical and physical gauging in the theory of dislocations, Reports on Mathematical Physics, 32, 71-98, 1993 (abstract).

    2. A. Trzęsowski, On the geometric origin of Orowan-type kinematic relations and the Schmid yield criterion, Acta Mechanica, 141, 173-192, 2000 (abstract).

    3. A. Trzęsowski, Self-balance equations and Bianchi-type distortions in the theory of dislocations, International Journal of Theoretical Physics, 42, 711-723, 2003 (abstract).

    4. A. Trzęsowski, Effective dislocation lines in continuously dislocated crystals, published online, 2007:


  • Thermomechanical properties of bulk nanostructured isolated clusters of ultrasmall size (not more than 100 nm):

    1. A. Trzęsowski, Nanomaterial clusters as macroscopically small size-effect bodies. Part I (abstract) and II (abstract), Archives of Mechanics, 52, 159-197, 2000.

    2. A. Trzęsowski, On the quasi-solid state of solid nanoclusters, Journal of Technical Physics, 44, 339-350, 2003.

    3. A. Trzęsowski, Tensility and compressibility of axially symmetric nanoclusters:

    4. A. Trzęsowski, Nanothermomechanics, Journal of Technical Physics, 50, 151-172, 2009; arXiv.org:0801.2049 (abs, pdf).

  • Thermodynamical description of Markov-type systems:

    1. A. Trzęsowski and S. Piekarski, Markovian description of irreversible processes and the time randomization, Il Nuovo Cimento, 14 D, no. 8, 767-787, 1992 (corrected version).

    2. A. Trzęsowski, On the dynamics and thermodynamics of small Markov-type material systems, arXiv.org:0805.0944 (abs, pdf).

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