LEADER 00812nam0-22002891i-450- 001 990001832600403321 005 20021010 035 $a000183260 035 $aFED01000183260 035 $a(Aleph)000183260FED01 035 $a000183260 100 $a20021010d--------km-y0itay50------ba 101 0 $aita 200 1 $aProgramma$eanno 1907-1908$fRegio Istituto Tecnico Superiore di Milano. 210 $aMilano$cRegio Istituto Tecnico Superiore$d1907. 215 $a114 p.$d25 cm 610 0 $aIstruzione superiore 676 $a378 710 02$aIstituto tecnico superiore di Milano$0332418 801 0$aIT$bUNINA$gRICA$2UNIMARC 901 $aBK 912 $a990001832600403321 952 $a60 MISC. B 11/5$b33205$fFAGBC 959 $aFAGBC 996 $aProgramma$9371222 997 $aUNINA DB $aING01 LEADER 01101nam0-22003851i-450- 001 990001505430403321 005 20030527152600.0 010 $a0-8218-0994-6 035 $a000150543 035 $aFED01000150543 035 $a(Aleph)000150543FED01 035 $a000150543 100 $a20030527d--------km-y0itay50------ba 101 1 $aeng 102 $aUS 105 $aa---a---001yy 200 1 $a4-manifolds and Kirby calculus$fR. E. Gompf, A. I. Stipsicz 210 $aProvidence (RI)$cAmerican Mathematical Society$dc1999 215 $aix, 558 p.$dcm24 225 1 $aGraduate studies in mathematics$v20 610 0 $aTopologia delle 4-varietà 610 0 $aStrutture geometriche generali sulle varietà 676 $a515.3$v21 700 1$aGompf,$bRobert E.$067523 701 1$aStipsicz,$bAndras I.$067524 801 0$aIT$bUNINA$gRICA$2UNIMARC 901 $aBK 912 $a990001505430403321 952 $aC-68-(20$b19674$fMA1 959 $aMA1 962 $a57N13 962 $a53C15 962 $a57R65 996 $a4-manifolds and Kirby calculus$9376890 997 $aUNINA LEADER 03620nam 22006852 450 001 9910970777403321 005 20151005020622.0 010 $a1-139-09723-7 010 $a1-107-22593-0 010 $a1-283-34168-9 010 $a1-139-10303-2 010 $a9786613341686 010 $a1-139-10057-2 010 $a1-139-10123-4 010 $a1-139-09854-3 010 $a0-511-97731-X 010 $a1-139-09921-3 035 $a(CKB)2550000000055698 035 $a(EBL)803017 035 $a(OCoLC)769342104 035 $a(SSID)ssj0000536961 035 $a(PQKBManifestationID)11351352 035 $a(PQKBTitleCode)TC0000536961 035 $a(PQKBWorkID)10553067 035 $a(PQKB)10123188 035 $a(UkCbUP)CR9780511977312 035 $a(MiAaPQ)EBC803017 035 $a(Au-PeEL)EBL803017 035 $a(CaPaEBR)ebr10502835 035 $a(CaONFJC)MIL334168 035 $a(PPN)261278568 035 $a(EXLCZ)992550000000055698 100 $a20101013d2011|||| uy| 0 101 0 $aeng 135 $aur||||||||||| 181 $ctxt$2rdacontent 182 $cc$2rdamedia 183 $acr$2rdacarrier 200 10$aFundamentals of Polymer-Clay Nanocomposites /$fGary W. Beall and Clois E. Powell 205 $a1st ed. 210 1$aCambridge :$cCambridge University Press,$d2011. 215 $a1 online resource (vii, 185 pages) $cdigital, PDF file(s) 300 $aTitle from publisher's bibliographic system (viewed on 05 Oct 2015). 311 08$a0-521-87643-5 327 $a1. Introduction -- 2. Thermodynamics and kinetics of polymer-clay nanocomposites -- 3. Analytical methods in nanocomposites; 4. Gas diffusion characteristics of polymer-clay nanocomposites -- 5. Engineering properties of polymer-clay nanocomposites theory and theory validation -- 6. Variables associated with polymer-clay processing in relation to reinforcement theory -- 7. The effect of polymer type specificity to the production of polymer-clay nanocomposites -- 8. Flame retardancy. 330 $aWritten for graduate students, researchers, and practitioners, this book provides a complete introduction to the science, engineering, and commercial applications of polymer-clay nanocomposites. Starting with a discussion of general concepts, the authors define specific terms used in the field, providing newcomers with a strong foundation to the area. The physical and mechanical properties of polymer-clay nanocomposites are then described, with chapters on thermodynamics and kinetics, engineering properties, barrier properties, and flame retardancy. Mechanisms underpinning observed effects, such as UV resistance, solvent resistance, and hardness, are also explained. In-depth discussions of clay and clay surface treatment, fabrication, and characterization of nanocomposites are provided, and particular emphasis is placed on the proper use and interpretation of analytical techniques, helping readers to avoid artifacts in their own work. With commercial applications discussed throughout, and experimental results connected with theory, this is an ideal reference for those working in polymer science. 606 $aNanocomposites (Materials) 606 $aPolymer clay 615 0$aNanocomposites (Materials) 615 0$aPolymer clay. 676 $a620.1/92 686 $aTEC021000$2bisacsh 700 $aBeall$b G. W.$0283662 702 $aPowell$b Clois E$g(Clois Elbert),$f1944- 801 0$bUkCbUP 801 1$bUkCbUP 906 $aBOOK 912 $a9910970777403321 996 $aFundamentals of Polymer-Clay Nanocomposites$94476202 997 $aUNINA