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High-Energy Peripheral Injection into Mirror Machines
The following report proposes various methods in injecting and heating in mirror machines, using high-energy ion beams.
Date:
September 22, 1955
Creator:
Linlor, William I., 1915-
System:
The UNT Digital Library
Liquid-Sodium Instability Experiment : Part I
Abstract: "A magnetohydrodynamic model of a plasma-magnetic field instability, using liquid sodium, has been observed. The growth rate and wave length of the Taylor-type acceleration instability was observed to be in agreement with the theory of Kruskal and Schwarzschild."
Date:
September 30, 1955
Creator:
Colgate, Stirling A.
System:
The UNT Digital Library
Adiabatic Injection
From introduction comments: The present analysis is intended to examine the relations for "adiabatic" injection in general from a different point of view.
Date:
September 22, 1955
Creator:
Linlor, William I., 1915-
System:
The UNT Digital Library
Continuous injection processing
From introduction: "In this report we consider a few non-adiabatic processes. The types to be discussed will be limited because of two reasons: first, complete descriptions are available for some processes; second, as time goes on alternative injection methods undoubtedly will be discovered, so this list must necessarily be incomplete."
Date:
September 23, 1955
Creator:
Linlor, William I., 1915-
System:
The UNT Digital Library
Source Development Program
Introduction: This note describes briefly the current concept of the experimental program on source development for mirror machines. There are two major facilities involved: (1) A comparatively small machine whose code name is "Guppy", and, (2) A larger d.c. mirror geometry whose code name is "Waldo."
Date:
September 30, 1955
Creator:
Lamb, W. A. S.
System:
The UNT Digital Library
Liquid-Sodium Instability Experiment : Part II
Abstract: "A magnetohydrodynamic model of plasma-magnetic field instabilities, using liquid sodium, has been observed. The growth of flutes in the mirror geometry was observed for the case of [beta] = NKT/H²/8w = 1."
Date:
September 30, 1955
Creator:
Colgate, Stirling A.
System:
The UNT Digital Library
Concerning K Mixing in Bohr-Mottelson States of Spheroidal Nuclei
The following report covers mixing k-quantum numbers in Bohr-Mottelson states of spheroidal nuclei.
Date:
September 21, 1955
Creator:
Rasmussen, John O.
System:
The UNT Digital Library