Gary Weisel
Pennsylvania State University
50 Papers
162 Citations
Gary Weisel is an academic researcher from Pennsylvania State University. The author has contributed to research in topics: Neutron & Neutron scattering. The author has an hindex of 11, co-authored 50 publications. Previous affiliations of Gary Weisel include Penn State Altoona & Duke University.
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Papers
Microwave absorption in percolating metal-insulator composites
Darin T. Zimmerman,Jeremy Cardellino,Kyle Cravener,Kelly Feather,Nicholas M. Miskovsky,Gary Weisel +5 more
TL;DR: In this paper, the authors measured several electromagnetic properties of tungsten-Teflon composites as a function of metal volume concentration and found that the electric and magnetic loss tangents at 2.45 GHz and dc conductivity each exhibit a percolation transition at a different critical value of the metal volume fraction.
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A new twist to the long-standing three-nucleon analyzing power puzzle
E. M. Neidel,E. M. Neidel,Werner Tornow,Werner Tornow,D. E. González Trotter,D. E. González Trotter,C. R. Howell,C. R. Howell,A. S. Crowell,A. S. Crowell,R.A. Macri,R.A. Macri,R. L. Walter,R. L. Walter,Gary Weisel,J.H. Esterline,Henryk Witała,B. J. Crowe,R.S. Pedroni,D. M. Markoff,D. M. Markoff +20 more
TL;DR: In this article, the authors compared the neutron-deuteron analyzing power A y ( θ ) at E n = 1.2 and 1.9 MeV and found that the power of three-nucleon scattering increases with decreasing center-of-mass energy.
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Analyzing power measurements for 209Bi(n,n) at 6 and 9 MeV and consistent dispersive optical-model analyses for n+209Bi and n+208Pb from -20 to +80 MeV.
Gary Weisel,Werner Tornow,C. R. Howell,P. D. Felsher,M. Alohali,Mark L. Roberts,R. K. Das,R. L. Walter,G. Mertens +8 more
TL;DR: A fully constrained model is presented in which the only differences between the n ${+}^{208}$Pb and the n${+]^{209}$Bi systems are the Fermi energy and the isospin dependence in the real volume potential.
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•Journal Article
Microwave Absorption in Percolating Metal-insulator Composites
Darin T. Zimmerman,Jeremy Cardellino,Kyle Cravener,Kelly Feather,Nicholas M. Miskovsky,Gary Weisel +5 more
TL;DR: In this article, the authors measured several electromagnetic properties of tungsten-Teflon composites as a function of metal volume concentration and found that the electric and magnetic loss tangents at 2.45 GHz and dc conductivity each exhibit a percolation transition at a different critical value of the metal volume fraction.