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Journal Abstract Search


118 related items for PubMed ID: 15324052

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  • 3. Calorimetric and relaxation properties of xylitol-water mixtures.
    Elamin K, Sjöström J, Jansson H, Swenson J.
    J Chem Phys; 2012 Mar 14; 136(10):104508. PubMed ID: 22423849
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  • 5. Difference and similarity of dielectric relaxation processes among polyols.
    Minoguchi A, Kitai K, Nozaki R.
    Phys Rev E Stat Nonlin Soft Matter Phys; 2003 Sep 14; 68(3 Pt 1):031501. PubMed ID: 14524771
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  • 9. Dielectric relaxation processes in water mixtures of tripropylene glycol.
    Grzybowska K, Grzybowski A, Pawlus S, Hensel-Bielowka S, Paluch M.
    J Chem Phys; 2005 Nov 22; 123(20):204506. PubMed ID: 16351280
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  • 10. Does the arrhenius temperature dependence of the Johari-Goldstein relaxation persist above T(g)?
    Paluch M, Roland CM, Pawlus S, Zioło J, Ngai KL.
    Phys Rev Lett; 2003 Sep 12; 91(11):115701. PubMed ID: 14525441
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  • 12. Component dynamics in miscible mixtures of water and methanol.
    Sun M, Wang LM, Tian Y, Liu R, Ngai KL, Tan C.
    J Phys Chem B; 2011 Jun 30; 115(25):8242-8. PubMed ID: 21648447
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  • 15. Additive property of secondary relaxation processes in di-n-octyl and di-isooctyl phthalates: signature of non-Johari-Goldstein relaxation.
    Kaminska E, Kaminski K, Paluch M, Ziolo J, Ngai KL.
    J Chem Phys; 2007 May 07; 126(17):174501. PubMed ID: 17492868
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  • 17. Relation between the alpha-relaxation and Johari-Goldstein beta-relaxation of a component in binary miscible mixtures of glass-formers.
    Capaccioli S, Ngai KL.
    J Phys Chem B; 2005 May 19; 109(19):9727-35. PubMed ID: 16852172
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  • 19. Interpreting the nonlinear dielectric response of glass-formers in terms of the coupling model.
    Ngai KL.
    J Chem Phys; 2015 Mar 21; 142(11):114502. PubMed ID: 25796256
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