მაღალმოლეკულური ნაერთები (Georgian Wikipedia)

Analysis of information sources in references of the Wikipedia article "მაღალმოლეკულური ნაერთები" in Georgian language version.

refsWebsite
Global rank Georgian rank
2nd place
7th place
6th place
5th place
3rd place
6th place
1st place
1st place
124th place
651st place
2,161st place
4,099th place
18th place
39th place
low place
9,682nd place
low place
9,683rd place
40th place
22nd place

archive.org

bnf.fr

gallica.bnf.fr

  • Eug. Bamberger & Fred. Tschirner (1900) "Ueber die Einwirkung von Diazomethan auf β-Arylhydroxylamine" (On the effect of diazomethane on β-arylhydroxylamine), Berichte der Deutschen chemischen Gesellschaft zu Berlin, 33: 955–959. From page 956: "Eine theilweise — übrigens immer nur minimale — Umwandlung des Diazomethans in Stickstoff und Polymethylen vollzieht sich auch bei ganz andersartigen Reactionen; ... " (A partial — incidentally, always only minimal — conversion of diazomethane into nitrogen and polymethylene takes place also during quite different reactions; ... )

books.google.com

britannica.com

chemicalsafetyfacts.org

doi.org

doi.org

  • Giuliano Cecchin, Giampiero Morini, Fabrizio Piemontesi (2003). „Ziegler–Natta Catalysts“. Kirk-Othmer Encyclopedia of Chemical Technology. Wiley-VCH. doi:10.1002/0471238961.2609050703050303.a01.CS1-ის მხარდაჭერა: იყენებს ავტორის პარამეტრს (link) Wiley-VCH. doi:10.1002/0471238961.2609050703050303.a01.
  • Samuels, Robert J (1975). „Quantitative structural characterization of the melting behavior of isotactic polypropylene“. Journal of Polymer Science: Polymer Physics Edition. 13 (7): 1417–46. Bibcode:1975JPoSB..13.1417S. doi:10.1002/pol.1975.180130713.
  • Yadav, Y.S; Jain, P.C (1986). „Melting behaviour of isotactic polypropylene isothermally crystallized from the melt“. Polymer. 27 (5): 721–7. doi:10.1016/0032-3861(86)90130-8.
  • Cox, W. W; Duswalt, A. A (1967). „Morphological transformations of polypropylene related to its melting and recrystallization behavior“. Polymer Engineering and Science. 7 (4): 309–16. doi:10.1002/pen.760070412.
  • Bassett, D.C; Olley, R.H (1984). „On the lamellar morphology of isotactic polypropylene spherulites“. Polymer. 25 (7): 935–46. doi:10.1016/0032-3861(84)90076-4.
  • Derosa, C; Auriemma, F (2006). „Structure and physical properties of syndiotactic polypropylene: A highly crystalline thermoplastic elastomer“. Progress in Polymer Science. 31 (2): 145–237. doi:10.1016/j.progpolymsci.2005.11.002.
  • Rodriguez-Arnold, Jonahira; Zhang, Anqiu; Cheng, Stephen Z.D; Lovinger, Andrew J; Hsieh, Eric T; Chu, Peter; Johnson, Tim W; Honnell, Kevin G; Geerts, Rolf G; Palackal, Syriac J; Hawley, Gil R; Welch, M.Bruce (1994). „Crystallization, melting and morphology of syndiotactic polypropylene fractions: 1. Thermodynamic properties, overall crystallization and melting“. Polymer. 35 (9): 1884–95. doi:10.1016/0032-3861(94)90978-4.

dx.doi.org

  • Bai, Feng; Li, Fuming; Calhoun, Bret H; Quirk, Roderic P; Cheng, Stephen Z. D (2003) „Physical Constants of Poly(propylene)“, The Wiley Database of Polymer Properties. DOI:10.1002/0471532053.bra025. ISBN 978-0-471-53205-7. 
  • Galambos, Adam; Wolkowicz, Michael; Zeigler, Robert (1992) „Structure and Morphology of Highly Stereoregular Syndiotactic Polypropylene Produced by Homogeneous Catalysts“, Catalysis in Polymer Synthesis, ACS Symposium Series, გვ. 104–20. DOI:10.1021/bk-1992-0496.ch008. ISBN 978-0-8412-2456-8. 
  • Wolfgang Hesse "Phenolic Resins" in Ullmann's Encyclopedia of Industrial Chemistry, 2002, Wiley-VCH, Weinheim. doi:10.1002/14356007.a19_371.

epspackaging.org

harvard.edu

ui.adsabs.harvard.edu

slideshare.net

web.archive.org