LEADER 01807oam 2200505Kn 450 001 9910712904303321 005 20180924045031.6 024 8 $aGOVPUB-C13-1bde7fa766804459708d3dd74867d8bb 035 $a(CKB)5470000002499155 035 $a(OCoLC)980600622$z(OCoLC)927169388 035 $a(OCoLC)995470000002499155 035 $a(EXLCZ)995470000002499155 100 $a20170331d1968 uy 0 101 0 $aeng 135 $aurbn||||||abp 135 $aurbn||||||ada 181 $ctxt$2rdacontent 182 $cc$2rdamedia 183 $acr$2rdacarrier 200 10$aInvestigations of the exploding wire process as a source for high temperature studies /$fEsther C. Cassidy, Stanley Abramowitz, and Charles W. Beckett 210 1$a[Washington] :$cU.S. Dept. of Commerce, National Bureau of Standards; for sale by the Supt. of Docs., U.S. Govt. Print. Off.,$d1968. 215 $a1 online resource (iv, 50 pages) $cillustrations 225 1 $aNBS monograph ;$v109 320 $aIncludes bibliographical references (pages 49-50). 606 $aExploding wire phenomena 606 $aPyrometry 606 $aExploding wire phenomena$2fast 606 $aPyrometry$2fast 615 0$aExploding wire phenomena. 615 0$aPyrometry. 615 7$aExploding wire phenomena. 615 7$aPyrometry. 676 $a536/.5 700 $aCassidy$b Esther C.$f1933-$01415984 702 $aAbramowitz$b Stanley$f1936- 702 $aBeckett$b Charles W.$f1907- 712 02$aUnited States.$bNational Bureau of Standards. 801 0$bOCLCE 801 1$bOCLCE 801 2$bNBS 801 2$bOCLCQ 906 $aBOOK 912 $a9910712904303321 996 $aInvestigations of the exploding wire process as a source for high temperature studies$93528619 997 $aUNINA LEADER 03687nam 22005053 450 001 9911007278703321 005 20230808080254.0 010 $a9783036413631 010 $a3036413634 035 $a(CKB)27731715800041 035 $a(MiAaPQ)EBC30676358 035 $a(Au-PeEL)EBL30676358 035 $a(Exl-AI)30676358 035 $a(OCoLC)1393304215 035 $a(EXLCZ)9927731715800041 100 $a20230808d2023 uy 0 101 0 $aeng 135 $aurcnu|||||||| 181 $ctxt$2rdacontent 182 $cc$2rdamedia 183 $acr$2rdacarrier 200 10$aComposites and Functional Materials 205 $a1st ed. 210 1$aZurich :$cTrans Tech Publications, Limited,$d2023. 210 4$dİ2023. 215 $a1 online resource (148 pages) 311 08$a9783036403632 311 08$a3036403639 327 $aIntro -- Composites and Functional Materials -- Preface -- Table of Contents -- Chapter 1: Composite Materials -- A Machine Learning Model for Flaw Identification in Fibre-Reinforced Composites -- Mechanical and Thermal Analysis of Nito Fiber Reinforced Composites -- Asymmetric Four Point Bend Test Method for Interlaminar Shear Strength in Ceramic Matrix Composites -- Effects of Irradiation Dose of Sheet-Like Electron Beam and its Cathode Voltage on Impact Strength of Carbon Fiber Reinforced Thermoplastic Polyamide just before Shipping -- Microscopic Formation Mechanism and Physical Properties of Mo/Cu Composites with High Densification -- Handling Composites at Aircraft Accident Sites: An Evaluation of the Fracture Features in Burnt CFRP after the Application of a Fixant Solution -- A Review of Biodegradable Polymer Blends and Polymer Composite for Flexible Food Packaging Application -- Chapter 2: Zirconia and Zirconia-Based Composites -- The Effect of Zirconia Content on Physical and Mechanical Properties of Al2O3/ZrO2 Composites -- Temperature and Molarity Effects on the Synthesized Zircon Crystal Cells -- The Conductivity of PANI/Zirconia Composites: Effect of Amorphous and Crystalline Fillers -- Structural and Thermal Analysis of CaCO3/ZrO2 Composites -- Chapter 3: Carbon-Based Materials -- Interaction of Hydrogen with Reduced Graphene Oxide Probed by Muon-Spin Relaxation Technique -- Disorder - Induced Characteristics Based on Optical Absorption of SiO2/rGO-Like Carbon Films -- Mechanical-Thermal Stability of Micro Composite Based Porous Carbon from Coconut Shell (Cocoa nucifera) Charcoal -- Optical Absorbance of Graphenic Carbon from Coconut Shells in Different Solvents for Film Preparation -- N-Doped Graphenic Carbon Derived from Coconut Shell as n-Type Semiconducting Layer. 327 $aStudy on Optical Energy Gap and the Thickness of Boron Doped Graphenic Carbon (B-GC) Film Prepared by Nanospray Method -- Probing the Magnetic Properties of Boron-Doped Graphenic-Based Carbon Materials -- Chapter 4: Functional Materials and Semiconductor Structures -- Measuring the Capacity of a Proposed Vibration Isolator Using Auxectics Sheets -- Comparison of Carrier Deflection between MAG-TFET and MAG-FinFET -- Keyword Index -- Author Index. 330 $aSpecial topic volume with invited peer-reviewed papers only. 606 $aComposite materials$7Generated by AI 606 $aMaterials science$7Generated by AI 615 0$aComposite materials 615 0$aMaterials science 676 $a620.118 700 $aNugroho$b Agustinus Agung$01823358 701 $aUmemura$b Kazuo$01792922 801 0$bMiAaPQ 801 1$bMiAaPQ 801 2$bMiAaPQ 906 $aBOOK 912 $a9911007278703321 996 $aComposites and Functional Materials$94392705 997 $aUNINA