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  1. SYS0295246
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    $3 umb_un_auth*0275517 $a elektronické časopisy $X electronic journals
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    $a SK $b BB301 $g AACR2 $9 unimarc sk
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    $u https://www.journals.elsevier.com/computer-physics-communications/#description $a Link na zdrojový dokument
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    $u https://www.sciencedirect.com/journal/computer-physics-communications $a Link na zdrojový dokument
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    $a Globalization and its socio-economic consequences 2020 $e 20th international scientific conference $h 92 $i Volume
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    $a 1. vyd.
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    $a Žilina $c Žilinská univerzita $d 2021
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    $3 umb_un_auth*0285059 $a Globalization and its socio-economic consequences $b medzinárodná vedecká konferencia $d 20. $e Žilina $f 21.-22.10.2020
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    $u https://www.shs-conferences.org/articles/shsconf/abs/2021/03/contents/contents.html $a Link na zdrojový dokument
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    $a Journal of Geochemical Exploration
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    $u https://www.journals.elsevier.com/journal-of-geochemical-exploration/#description $a Link na zdrojový dokument
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    $u https://www.sciencedirect.com/journal/journal-of-geochemical-exploration $a Link na zdrojový dokument
  5. SYS0267048
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    $a 10.2478/foecol-2018-0007 $2 DOI
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    $a Non-equilibrium thermodynamics and development cycles of temperate natural forest ecosystems $f Peter Urban, Peter Sabo, Jan Plesník
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    $a The presented contribution in its first part summarizes several important theoretical findings of the system ecology supporting non-equilibrium paradigm of complex adaptive systems. We emphasise the concept of non-equilibrium thermodynamics of living systems and the Holling’s adaptive cycle of a social-ecological system. In natural forests, the phases of an adaptive cycle fit to a substantial extent also to stages and phases of a large and a small forest cycle, although there is a different terminology. Further, we have emphasised the natural role of disturbances and their explanation from the thermodynamic point of view – as an important component of an adaptive cycle, which supports conclusions that these natural phenomena not only participated in the evolution of the whole habitats, but from the long-term view, they may even increase the resilience and overall ecological stability of ecosystems. Finally, we have tried to apply the findings of the theories presented to derive or underlie several principles of the management of temperate deciduous and mixed natural forests, which we consider important
    463
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    $1 001 umb_un_cat*0290278 $1 200 1 $a Folia Oecologica $v Vol. 45, no. 2 (2018), pp. 61-71 $1 210 $a Zvolen $c Ústav ekológie lesa SAV $d 2018 $1 011 $a 1336-5266 $1 011 $a 1338-7014
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    $3 umb_un_auth*0273664 $a adaptívne cykly
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    $3 umb_un_auth*0199978 $a prírodné lesy
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    $3 umb_un_auth*0226579 $a nerovnovážna termodynamika
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    $3 umb_un_auth*0177035 $a psychická odolnosť $X psychic resistance $X resilience
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    $3 umb_un_auth*0273282 $a články $X journal articles
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    $3 umb_un_auth*0023401 $a Urban $b Peter $p UMBFP09 $4 070 $9 47 $f 1962- $T Katedra biológie a environmentálnych štúdií
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    $3 umb_un_auth*0004032 $a Sabo $b Peter $p UMBFP09 $4 070 $9 47 $f 1954- $T Katedra biológie a environmentálnych štúdií
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    $a 10.2478/v10155-010-0003-1 $2 DOI
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    $a Relativistic effects in atomic and molecular properties $d Relativistické efekty v atómových a molekulových vlastnostiach $f Miroslav Iliaš, Vladimir Kelloe, Miroslav Urban $z slo
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    $a Prehľad základných princípov a metód relativistickej kvantovej chémie. We present an overview of basic principles and methods of the relativistic quantum chemistry. Practical aspects of different methods will be discussed stressing their capability of providing accurate predictions of molecular properties, particularly in species containing a heavy metal element. We will present a series of examples showing the importance of relativistic effects in a variety of molecular properties including electron affinities, ionization potentials, reaction and dissociation energies, electric, spectroscopic and other properties. It is possible to recognize a link between these properties and behaviour of materials in some cases.
    463
    -1
    $1 001 umb_un_cat*0308022 $1 011 $a 0323-0465 $1 011 $a 1336-040X $1 200 1 $a Acta Physica Slovaca $v Vol. 60, no. 3 (2010), pp. 259-391 $1 210 $a Bratislava $c Slovak Academy of Sciences $d 2010
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    $3 umb_un_auth*0110208 $a electron correlation
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    $3 umb_un_auth*0177639 $a change of picture
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    $3 umb_un_auth*0177640 $a ionization potentials
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    $3 umb_un_auth*0177642 $a electron affinities
    606
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    $3 umb_un_auth*0177643 $a dipole moments and polarizabilities
    606
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    $3 umb_un_auth*0177644 $a nuclear quadrupole moments
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    $3 umb_un_auth*0177645 $a multiple bonds
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    $3 umb_un_auth*0177646 $a intermolecular interactions
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    $n 54 $a Chémia
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    $3 umb_un_auth*0175902 $a Kelloe $b Vladimir $4 070 $9 30
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    $3 umb_un_auth*0022360 $a Urban $b Miroslav $4 070 $9 30
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