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author Samis, M. A.
Speck, C. E.
Lidsky, Lawrence M.
Robertson, E. A.
Lubin, M. D.
Moir, R. W.
Lieberman, M. A.
Clarke, J. F.
Offenberger, A. A.
Musha, T.
Bers, Abraham
author_facet Samis, M. A.
Speck, C. E.
Lidsky, Lawrence M.
Robertson, E. A.
Lubin, M. D.
Moir, R. W.
Lieberman, M. A.
Clarke, J. F.
Offenberger, A. A.
Musha, T.
Bers, Abraham
author_sort Samis, M. A.
collection MIT
description Contains reports on twelve research projects.
first_indexed 2024-09-23T10:27:14Z
format Technical Report
id mit-1721.1/54147
institution Massachusetts Institute of Technology
language English
last_indexed 2024-09-23T10:27:14Z
publishDate 2010
publisher Research Laboratory of Electronics (RLE) at the Massachusetts Institute of Technology (MIT)
record_format dspace
spelling mit-1721.1/541472019-04-10T16:02:43Z Plasma Electronics Samis, M. A. Speck, C. E. Lidsky, Lawrence M. Robertson, E. A. Lubin, M. D. Moir, R. W. Lieberman, M. A. Clarke, J. F. Offenberger, A. A. Musha, T. Bers, Abraham Incoherent Scattering of Light from a Plasma. II. Active Solid-State Plasmas Instabilities in Transverse Waves along Bₒ Plasma Electronics Nonadiabatic Diffusion in Toroidal Geometry Instabilities in Quasi-static Waves across Bₒ Quasi-linear Interaction of a Filamentary Electron Beam with a Plasma-Filled Waveguide Interaction of Particles with Circularly Polarized Waves in Plasmas Instabilities of Waves across the Magnetic Field Dispersion Diagrams for Hot-Electron Plasmas Laser Radiation Thomson-Scattered by an Electron Beam Nonadiabatic Magnetic Traps Measurement of Optical Gain of the Hollow-Cathode Discharge Contains reports on twelve research projects. U. S. Atomic Energy Commission under Contract AT(30-1)-3285 National Science Foundation (Grant GK-524) 2010-04-24T21:45:25Z 2010-04-24T21:45:25Z 1965-10-15 Technical Report RLE_QPR_079_XI http://hdl.handle.net/1721.1/54147 en Plasma Dynamics Plasma Electronics Massachusetts Institute of Technology, Research Laboratory of Electronics, Quarterly Progress Report, October 15, 1965 Massachusetts Institute of Technology. Research Laboratory of Electronics. Quarterly Progress Report, no. 79 Copyright (c) 2008 by the Massachusetts Institute of Technology. All rights reserved. application/pdf Research Laboratory of Electronics (RLE) at the Massachusetts Institute of Technology (MIT)
spellingShingle Incoherent Scattering of Light from a Plasma. II.
Active Solid-State Plasmas
Instabilities in Transverse Waves along Bₒ
Plasma Electronics
Nonadiabatic Diffusion in Toroidal Geometry
Instabilities in Quasi-static Waves across Bₒ
Quasi-linear Interaction of a Filamentary Electron Beam with a Plasma-Filled Waveguide
Interaction of Particles with Circularly Polarized Waves in Plasmas
Instabilities of Waves across the Magnetic Field
Dispersion Diagrams for Hot-Electron Plasmas
Laser Radiation Thomson-Scattered by an Electron Beam
Nonadiabatic Magnetic Traps
Measurement of Optical Gain of the Hollow-Cathode Discharge
Samis, M. A.
Speck, C. E.
Lidsky, Lawrence M.
Robertson, E. A.
Lubin, M. D.
Moir, R. W.
Lieberman, M. A.
Clarke, J. F.
Offenberger, A. A.
Musha, T.
Bers, Abraham
Plasma Electronics
title Plasma Electronics
title_full Plasma Electronics
title_fullStr Plasma Electronics
title_full_unstemmed Plasma Electronics
title_short Plasma Electronics
title_sort plasma electronics
topic Incoherent Scattering of Light from a Plasma. II.
Active Solid-State Plasmas
Instabilities in Transverse Waves along Bₒ
Plasma Electronics
Nonadiabatic Diffusion in Toroidal Geometry
Instabilities in Quasi-static Waves across Bₒ
Quasi-linear Interaction of a Filamentary Electron Beam with a Plasma-Filled Waveguide
Interaction of Particles with Circularly Polarized Waves in Plasmas
Instabilities of Waves across the Magnetic Field
Dispersion Diagrams for Hot-Electron Plasmas
Laser Radiation Thomson-Scattered by an Electron Beam
Nonadiabatic Magnetic Traps
Measurement of Optical Gain of the Hollow-Cathode Discharge
url http://hdl.handle.net/1721.1/54147
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