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Haan, S.W.1
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Production of Hollow Microspheres for Inertial Confinement Fusion Experiments
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D. L. Wilcox et al., Eds. (Materials Research Society, Pittsburgh, PA)
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R. Cook, "Production of Hollow Microspheres for Inertial Confinement Fusion Experiments," in Hollow and Solid Spheres and Microspheres-Science and Technology Associated with Their Fabrication and Application, D. L. Wilcox et al., Eds. (Materials Research Society, Pittsburgh, PA), pp. 101-112 (1995).
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Hollow and Solid Spheres and Microspheres-Science and Technology Associated with Their Fabrication and Application
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Cook, R.1
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3
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Preparation of Hollow Shell ICF Targets Using a Depolymerizing Mandrel
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D. L. Wilcox et al., Eds. (Materials Research Society, Pittsburgh, PA)
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S. A. Letts, et al., "Preparation of Hollow Shell ICF Targets Using a Depolymerizing Mandrel," in Hollow and Solid Spheres and Microspheres-Science and Technology Associated with Their Fabrication and Application, D. L. Wilcox et al., Eds. (Materials Research Society, Pittsburgh, PA), pp. 125-130 (1995).
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Letts, S.A.1
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4
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Fabrication of Special Inertial Confinement Fusion Targets Using a Depolymerizable Mandrel Technique
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S. A. Letts, et al., "Fabrication of Special Inertial Confinement Fusion Targets Using a Depolymerizable Mandrel Technique," J. Vac. Sci. Technol. A 14, 1015 (1996).
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Letts, S.A.1
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Fabrication of Polymer Shells Using a Depolymerizable Mandrel
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Letts, S.A.1
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Development of Deuterated Polystyrene Shells for Laser Fusion by Means of a Density-matched Emulsion Method
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M. Takagi, T. Norimatsu, T. Yamanaka, and S. Nakai, "Development of Deuterated Polystyrene Shells for Laser Fusion by Means of a Density-matched Emulsion Method," J. Vac. Sci. Technol. A, 9(4), 2145 (1991).
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Takagi, M.1
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Prediction of Phase Separation during the Drying of Polymer Shells
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Wilemski, G.1
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Modeling of Microencapsulated Polymer Shell Solidification
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D. L. Wilcox et al., Eds. (Materials Research Society, Pittsburgh, PA)
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T. Boone, et al., "Modeling of Microencapsulated Polymer Shell Solidification," in Hollow and Solid Spheres and Microspheres-Science and Technology Associated with Their Fabrication and Application, D. L. Wilcox et al., Eds. (Materials Research Society, Pittsburgh, PA), pp. 193-198 (1995).
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Boone, T.1
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9
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0029222914
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Study of Production and Quality of Large (1-2 mm) Polystyrene Hollow Microspheres
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D. L. Wilcox et al., Eds. (Materials Research Society, Pittsburgh, PA)
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Y. A. Merkuliev, et al., "Study of Production and Quality of Large (1-2 mm) Polystyrene Hollow Microspheres," in Hollow and Solid Spheres and Microspheres-Science and Technology Associated with Their Fabrication and Application, D. L. Wilcox et al., Eds. (Materials Research Society, Pittsburgh, PA), pp. 119-124 (1995).
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Hollow and Solid Spheres and Microspheres-Science and Technology Associated with Their Fabrication and Application
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Merkuliev, Y.A.1
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10
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The Design of the Ballistic Furnace and Initial Microshell Formation
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Tolkonnikov, S.M.2
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11
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Development of Foam Shell with Plastic Ablator for Cryogenic Laser Fusion Target
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Preparation in Microspheres and Microcapsules by Interfacial Polycondensation Techniques
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Compositional Analysis of Multicomponent Acrylic Resins by Pryolysis - Capillary Gas Chromatography
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S. Mao, H. Ohtani, and S. Tsuge, "Compositional Analysis of Multicomponent Acrylic Resins by Pryolysis - Capillary Gas Chromatography", J. Anal. Appl. Pyrol., 33, 181, (1995).
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Ohtani, H.2
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Compositional and Sequential Analysis of Poly(ethylene-tetraethylene) by Pyrolysis-Gas Chromatography
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T. Isemura, Y. Jitsugiri, and S. Yonemori, "Compositional and Sequential Analysis of Poly(ethylene-tetraethylene) by Pyrolysis-Gas Chromatography", J. Anal. Appl. Pyrol. 103, 109. (1995).
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Thermal Behavior and Degradation Mechnamism of Brominated Polystyrenes
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F. Bertini, G. Audisio, and J. Kiji, "Thermal Behavior and Degradation Mechnamism of Brominated Polystyrenes," J. Anal. Appl. Pyrol., 33, 213, (1995).
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M. Balooch, A.J. Lundkvist, J. Kinney, S.J. Marshall, and W.J. Siekhaus, "Viscoelastic Properties of Decalcified Human Dentine Measured in Water by an AFM-Based Indentation Technique," to be published.
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Viscoelastic Properties of Decalcified Human Dentine Measured in Water by An AFM-Based Indentation Technique
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Balooch, M.1
Lundkvist, A.J.2
Kinney, J.3
Marshall, S.J.4
Siekhaus, W.J.5
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22
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Effect of Particle Size on the Mechanism Controlling n-hexane Sorption in Glassy Polystyrene
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D.J. Ensore, H.B. Hoppenberg, V.T. Stannett, "Effect of Particle Size on the Mechanism Controlling n-hexane Sorption in Glassy Polystyrene," Polymer, 18, 793, (1977).
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Diffusion and Relaxation in Glassy Polymer Powders: 2. Separation of Diffusion and Relaxation Parameters
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Mobility-Sensitive Fluorescence Probes for Quantative Monitoring of Water Sorption and Diffusion in Polymer Coatings
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K.E. Miller, R.H. Krueger, and J.M. Torkelson, "Mobility-Sensitive Fluorescence Probes for Quantative Monitoring of Water Sorption and Diffusion in Polymer Coatings," Journal of Polymer Science: Part B: Polymer Physics, 33, 2343 (1995).
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