Detonation

Results: 170



#Item
11Explosives engineering / Explosives / Combustion / Detonation / Explosive material / Thermodynamics / Shock wave

EXP ENG 6212 Theory of High Explosives This is an advanced course that explores the physics and chemistry behind high explosive detonations. Participants will study in depth the practical theory behind explosives propert

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Source URL: explosives.mst.edu

Language: English - Date: 2015-02-27 13:02:39
12Experimental and Computational Study of Water Blast Mitigation Associated with Different Water Configurations Andrew J. Zakrajsek, Eric J. Miklaszewski, and Steven F. Son Purdue University, , sson@purd

Experimental and Computational Study of Water Blast Mitigation Associated with Different Water Configurations Andrew J. Zakrajsek, Eric J. Miklaszewski, and Steven F. Son Purdue University, , sson@purd

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Source URL: www.northeastern.edu

Language: English - Date: 2012-07-09 15:40:50
13D-TriboTM Nanodiamond-based Nanoengineered Oil Additive Detonation Nanodiamond (DND) Detonation nanodiamonds are

D-TriboTM Nanodiamond-based Nanoengineered Oil Additive Detonation Nanodiamond (DND) Detonation nanodiamonds are

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Source URL: 50.116.68.28

Language: English - Date: 2016-03-29 11:32:51
14Validation of Detailed Reaction Mechanisms for Detonation Simulation E. Schultz, J. Shepherd Graduate Aeronautical Laboratories California Institute of Technology

Validation of Detailed Reaction Mechanisms for Detonation Simulation E. Schultz, J. Shepherd Graduate Aeronautical Laboratories California Institute of Technology

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Source URL: shepherd.caltech.edu

Language: English - Date: 2014-07-08 17:59:46
15CHRONOLOGICAL DEVELOPMENT OF AIR BURST  Figure 2.51a. Chronological development of an air burst; 0.5 second after 20-kiloton detonation; 1.8 seconds after 1-megaton detonation. Immediately following the detonation of a n

CHRONOLOGICAL DEVELOPMENT OF AIR BURST Figure 2.51a. Chronological development of an air burst; 0.5 second after 20-kiloton detonation; 1.8 seconds after 1-megaton detonation. Immediately following the detonation of a n

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Source URL: www.ciar.org

Language: English - Date: 2001-03-23 14:22:59
    16THREE-DIMENSIONAL PRINTING IS BLOWING UP. From the obvious—hand tools and chess pieces—to the less obvious—body parts and shelf-stable food—just about every item imaginable is being subjected to the two-step proc

    THREE-DIMENSIONAL PRINTING IS BLOWING UP. From the obvious—hand tools and chess pieces—to the less obvious—body parts and shelf-stable food—just about every item imaginable is being subjected to the two-step proc

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    Source URL: www.lanl.gov

    Language: English - Date: 2016-04-21 10:50:56
    17Tangential Impulse Detonation Engine Ionut Porumbel, Ph.D.  Aerodays 2015 – , London, UK

    Tangential Impulse Detonation Engine Ionut Porumbel, Ph.D. Aerodays 2015 – , London, UK

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    Source URL: www.aerodays2015.com

    Language: English - Date: 2015-11-03 04:16:07
    18CINT 2015A Accepted Proposals Active Transport by Molecular Motors; Steve Granick, University of Illinois at Urbana Champaign: George Bachand Analysis of Detonation Soot for Carbon Composition Via Transmission Electron M

    CINT 2015A Accepted Proposals Active Transport by Molecular Motors; Steve Granick, University of Illinois at Urbana Champaign: George Bachand Analysis of Detonation Soot for Carbon Composition Via Transmission Electron M

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    Source URL: cint.lanl.gov

    Language: English - Date: 2016-04-11 18:20:11
    19Combustion, Explosion, and Shock Waves, Vol. 37, No. 2, pp. 206–213, 2001  Simulation of Convective Detonation Waves in a Porous Medium by the Lattice Gas Method A. P. Ershov,1 A. L. Kupershtokh,1 and D. A. Medvedev1

    Combustion, Explosion, and Shock Waves, Vol. 37, No. 2, pp. 206–213, 2001 Simulation of Convective Detonation Waves in a Porous Medium by the Lattice Gas Method A. P. Ershov,1 A. L. Kupershtokh,1 and D. A. Medvedev1

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    Source URL: ancient.hydro.nsc.ru

    Language: English - Date: 2001-09-04 09:04:04
      20Detonation chemistry of a CHNO explosive: catalytic assembling of carbon nanotubes at low pressure and temperature state Yi Lu, Zhenping Zhu,* Weize Wu and Zhenyu Liu State Key Laboratory of Coal Conversion, Institute of

      Detonation chemistry of a CHNO explosive: catalytic assembling of carbon nanotubes at low pressure and temperature state Yi Lu, Zhenping Zhu,* Weize Wu and Zhenyu Liu State Key Laboratory of Coal Conversion, Institute of

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      Source URL: zpzhu.sxicc.ac.cn

      Language: English - Date: 2013-11-01 03:55:21