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  1. SYS0295246
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    20250715091318.1
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    $a 0010-4655 $b print
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    $2 DOI
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    $a eng
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    $a Computer Physics Communications
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    $a Amsterdam $c Elsevier B.V. $d 1969-
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    $3 umb_un_auth*0272043 $a časopisy $X journals
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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
  2. SYS0261899
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    20240527125756.6
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    $a 000438652800002 $2 WOS CC. ESCI
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    $a 10.24040/politickevedy.2018.21.2.26-55 $2 DOI
    035
      
    $a biblio/85632 $2 CREPC2
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    $a 20180830d2018 m y slo 03 ba
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    $a eng
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    $a SK
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    $a European External Action Service as the European Union´s diplomatic service and representation of individual member states within its staff. The cases of Slovakia, Czechia, Hungary and Poland $d Európska služba pre vonkajšiu činnosť ako diplomatická služba Európskej únie a zastúpenie jednotlivých členských štátov v rámci jej personálu. Prípad Slovenska, Česka, Maďarska a Poľska $f Erik Pajtinka $z slo
    330
    0-
    $a The study analytically evaluates the status quo and the development of the representation of Slovakia and the other Visegrad Group countries - Czechia, Hungary and Poland - in the staff of the European External Action Service in the period from 20122016. Within this evaluation, we focus on the representation of these countries in the EEAS AD Staff, AST Staff and Contract Agents as the three most important categories of the EEAS Staff. The study aims especially to find an answer to the question of the extent to which the representation of the individual states in the EEAS is adequate, with the basic method of evaluation being a comparison of the given states percentage of the EUs overall population versus its percentage of the overall number of EEAS officials in any particular category. The evaluation leads to the conclusion that Czechia and Hungary have the relatively best representation from among the Visegrad Group states within the EEAS Staff. On the contrary, Slovakia and Poland have the relatively worst representation within the EEAS Staff from among the Visegrad Group states
    463
    -1
    $1 001 umb_un_cat*0290374 $1 200 1 $a Politické vedy $d Political Sciences $e časopis pre politológiu, najnovšie dejiny, medzinárodné vzťahy, bezpečnostné štúdiá $e journal for political science, modern history, international relations, security studies $v Roč. 21, č. 2 (2018), s. 26-55 $1 210 $a Banská Bystrica $c Vydavateľstvo Univerzity Mateja Bela - Belianum $d 2018 $1 011 $a 1335-2741 $1 011 $a 1338-5623
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    $3 umb_un_auth*0282994 $a Vyšehradská štvorka $X Visegrad Group
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    $3 umb_un_auth*0237672 $a diplomacy of European Union
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    $3 umb_un_auth*0237671 $a European external action service
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    -1
    $3 umb_un_auth*0036119 $a Slovensko $X Slovakia $X Slovak Republic
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    $3 umb_un_auth*0036672 $a Česko $X Czechia $X Czech Republic
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    -1
    $3 umb_un_auth*0039114 $a Maďarsko $X Hungary
    607
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    $3 umb_un_auth*0040826 $a Poľsko $X Poland
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    $n 327 $a Medzinárodné vzťahy
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    $3 umb_un_auth*0101051 $a Pajtinka $b Erik $f 1981- $9 100 $4 070 $p UMBPO03 $T Katedra medzinárodných vzťahov a diplomacie
    801
      
    $a SK $b BB301 $g AACR2 $9 unimarc sk
    856
      
    $u http://www.politickevedy.fpvmv.umb.sk/archiv-vydani/2018/2-2018/erik-pajtinka.html $a Link na plný text
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  3. SYS0292751
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    $a 20191017d2021łłłłm y-slo-03 ----ba
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    $a eng
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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
    608
      
    $3 umb_un_auth*0038655 $a zborníky konferencií
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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
    801
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    $a SK $b BB301 $g AACR2 $9 unimarc sk
    856
      
    $u https://www.shs-conferences.org/articles/shsconf/abs/2021/03/contents/contents.html $a Link na zdrojový dokument
  4. SYS0283393
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    $a Christl $b Marcus
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    -0
    $a SK $b BB301
  5. SYS0293198
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    20250714094939.4
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    $a 0375-6742 $b print
    011
      
    $a 1879-1689 $b online
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    70
    $2 DOI
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    $a 20210225d1972 m--y0sloc0103----ba
    101
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    $a eng
    102
      
    $a NL
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    $a aaa
    200
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    $a Journal of Geochemical Exploration
    210
      
    $a Amsterdam $c Elsevier B.V. $d 1972-
    608
      
    $3 umb_un_auth*0272043 $a časopisy $X journals
    608
      
    $3 umb_un_auth*0275517 $a elektronické časopisy $X electronic journals
    801
    -0
    $a SK $b BB301 $g AACR2 $9 unimarc sk
    856
      
    $u https://www.journals.elsevier.com/journal-of-geochemical-exploration/#description $a Link na zdrojový dokument
    856
      
    $u https://www.sciencedirect.com/journal/journal-of-geochemical-exploration $a Link na zdrojový dokument
  6. SYS0267048
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    20240416082815.5
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    $a 000663793800001 $2 WOS CC. ESCI
    014
      
    $a BCI202100689119 $2 BIOSIS Citation Index
    014
      
    $a 2-s2.0-85061481276 $2 SCOPUS
    017
    70
    $a 10.2478/foecol-2018-0007 $2 DOI
    035
      
    $a biblio/106020 $2 CREPC2
    100
      
    $a 20190201d2018 m y slo 03 ba
    101
    0-
    $a eng
    102
      
    $a SK
    200
    1-
    $a Non-equilibrium thermodynamics and development cycles of temperate natural forest ecosystems $f Peter Urban, Peter Sabo, Jan Plesník
    330
    0-
    $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
    -1
    $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
    606
    0-
    $3 umb_un_auth*0273664 $a adaptívne cykly
    606
    0-
    $3 umb_un_auth*0199978 $a prírodné lesy
    606
    0-
    $3 umb_un_auth*0226579 $a nerovnovážna termodynamika
    606
    0-
    $3 umb_un_auth*0177035 $a psychická odolnosť $X psychic resistance $X resilience
    608
      
    $3 umb_un_auth*0273282 $a články $X journal articles
    615
      
    $n 502.2 $a Životné prostredie
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    $a 502.2
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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
    701
    -0
    $3 umb_un_auth*0004032 $a Sabo $b Peter $p UMBFP09 $4 070 $9 47 $f 1954- $T Katedra biológie a environmentálnych štúdií
    701
    -1
    $3 umb_un_auth*0085536 $a Plesník $b Jan $4 070 $9 6
    801
      
    $a SK $b BB301 $g AACR2 $9 unimarc sk
    856
      
    $u http://ife.sk/wp-content/uploads/2016/10/foecol_2018_0001-10.pdf $a Link na plný text
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  7. SYS0210322
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    20231208113024.9
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    $a 20150209d2014 m y slo 03 ba
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    $a slo
    102
      
    $a SK
    200
    1-
    $a Od planetárnych hraníc a ekologickej komplexity k revízii koncepcie udržateľného rozvoja $d From planetary boundaries, through complexity and sociological system towards revision of the concept of sustainable development $f Peter Sabo $z eng
    330
      
    $a The aim of the contribution is to summarize ecological, social an ethical arguments, which together prove that the original concept of sustainability development presented in Brundtland report in 1987 has failed, but especially to redefine this concept towards „a strong sustainability“. This revision builds on a paradigm shift towards system approach, respecting and including ecological, but also social complexity and integrity as values, which should be inherently present in new solutions. This may help us to revert current unsustainable growth of high entropization of the biosphere and society and thus to avoid a path toward a collapse. We build also on the new concept of the non-equilibrium thermodynamics of living systems, and the model of social ecological system, which we have further developed. This complex approach allows us to derive new principles of sustainable society, which should be respected.
    463
    -1
    $1 001 umb_un_cat*0209502 $1 011 $a 1336-7072 $1 200 1 $a Geografická revue $e (geografické a geoekologické štúdie) $e časopis Katedry geografie a krajinnej ekológie Fakulty prírodných vied Univerzity Mateja Bela v Banskej Bystrici $v Roč. 10, supplement (2014), s. 182-203 $1 210 $a Banská Bystrica $c Univerzita Mateja Bela, Fakulta prírodných vied, Katedra geografie a krajinnej ekológie $d 2014
    606
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    $3 umb_un_auth*0052599 $a planetárna geografia $X planetary geography
    606
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    $3 umb_un_auth*0168942 $a ekologická komplexita
    606
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    $3 umb_un_auth*0214020 $a udržateľná spoločnosť
    606
    0-
    $3 umb_un_auth*0183608 $a planetary geography
    606
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    $3 umb_un_auth*0168944 $a ecological complexity
    606
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    $3 umb_un_auth*0223300 $a udržateľnosť $X sustainability
    615
      
    $n 502 $a Životné prostredie a jeho ochrana
    675
      
    $a 502
    700
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    $3 umb_un_auth*0004032 $a Sabo $b Peter $p UMBFP11 $4 070 $9 100 $f 1954- $T Inštitút výskumu krajiny a regiónov
    801
      
    $a SK $b BB301 $g AACR2 $9 unimarc sk
    T85
      
    $x existuji fulltexy
  8. SYS0175900
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    $a AACR2
    200
    -1
    $a Poláková $b Lucia
    801
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    $a SK $b BB301
  9. SYS0102113
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    20250403085118.8
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    $a 000279890200001 $2 CCC
    014
      
    $a 000279890200001 $2 WOS CC. SCIE
    014
      
    $a 2-s2.0-77955211825 $2 SCOPUS
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    $a 10.2478/v10155-010-0003-1 $2 DOI
    100
      
    $a 20101011d2010 m y slo 03 ba
    101
    0-
    $a eng
    102
      
    $a SK
    200
    1-
    $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
    330
    0-
    $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
    606
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    $3 umb_un_auth*0110208 $a electron correlation
    606
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    $3 umb_un_auth*0177639 $a change of picture
    606
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    $3 umb_un_auth*0177640 $a ionization potentials
    606
    0-
    $3 umb_un_auth*0177642 $a electron affinities
    606
    0-
    $3 umb_un_auth*0177643 $a dipole moments and polarizabilities
    606
    0-
    $3 umb_un_auth*0177644 $a nuclear quadrupole moments
    606
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    $3 umb_un_auth*0177645 $a multiple bonds
    606
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    $3 umb_un_auth*0177646 $a intermolecular interactions
    615
      
    $n 54 $a Chémia
    675
      
    $a 544.112
    700
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    $3 umb_un_auth*0173565 $a Iliaš $b Miroslav $f 1975- $p UMBFP08 $9 40 $4 070 $T Katedra chémie
    701
    -1
    $3 umb_un_auth*0175902 $a Kelloe $b Vladimir $4 070 $9 30
    701
    -0
    $3 umb_un_auth*0022360 $a Urban $b Miroslav $4 070 $9 30
    801
      
    $a SK $b BB301 $g AACR2 $9 unimarc sk
    856
      
    $u http://www.physics.sk/aps/pubs/2010/aps-10-03/aps-10-03.pdf $a Link na plný text
    T85
      
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  10. SYS0253351
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    20170814111811.2
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    $a classification accuracy
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