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2. New method for the design of high perveance guns.
3. Space charge waves in finite magnetic fields.
4. Magnetron injection guns derived from theorectical space-charge flow solutions.
5. New numerical methods in electron dynamics.
6. The redaction of noise temperature in electron beams.
7. Coherent Cerenkov radiation produced by a bunched electron beam traversing a plasma and ferrite medium.
8. Normal mode theory for electron-beam plasma amplification.
9. Non-degenerate electron-beam parametric amplifiers.
10. Backward-wave tube feedback oscillators.
11. The travelling-wave amplification as a parametric process.
12. Resonant circuit oscillations in travelling-wave tubes.
13. A high-power travelling-wave tube for the frequency range:5,9 to 6,7 KMC/S.
14. Multipactor motions in Microwave tubes.
15. Scanning electron microscope studies of thermionic emission from dispenser cathodes.
16. The series resistance and emission from several types of dispenser cathodes.
17. Mechanisms in high power windows.
18. Basic and applied studies of field emission at microwave frequencies.
19. Acoustic detection of electron impact in electron tubes.
20. New types of severed circuits to increase the gain and bandwidth of magnetron amplifiers.
21. The generation of submillimeter waves.
22. Development of Miniaturized travelling wave tubes.
23. Dielectric tuning of klystron cavities.
24. Wave types in vortical and in irrotational electron beams.
25. The current and velozity distributions in a velocity modulated, brillouin-focused electron beam.
26. Efficiency enhancement by phase focusing and collector depression.
27. A thick beam analysis of transverse-wave propagation on electron beams.
28. The use of a staggered meander line in an electrostatically focused forward-wave amplifier.
29. On the effect of thermal velozities in two-dimensional and axially symmetric beams.
30. A mathematical model which describes the high-perveance instabilities of long drifting electron beams.
31. Non-uniformities in a P. P.M. focusing circuit.
32. An experimental study of magnetron electron guns.
33. The numerical analysis of curvilinear electrode systems with an emitting surface.
34. Design criteria for high-density hollow-beam electron guns.
35. Analysis of non-laminar space-charge flow.
36. Noise figure calculation and measurement for low-power crossed-field amplifiers.
37. Crossed-field noise in the low-velocity region.
38. The backward-wave converter.
39. Photon noise.
40. Artificial high temperature sources for noise modeling studies.
41. Noise in the saturation region of a travelling-wave amplifier.
42. A method of noise reduction for linear beam microwave devices of medium power.
43. Analysis of the noise spectra of a drifting multi-velocity beam.
44. A new type Cerenkov generator theory and experiment.
45. Noise in Backward-wave amplifiers, a large QC theory and a proposed experiment for the measurement of noise parameters using a moving gun technique.
46. Electron beam-plasma interaction.
47. Non-linear theory of the propagation of signal and noise along an electron beam.
48. Progress in low-noise travelling-wave tube development.
49. Transient processes in beam masers.
50. An efficient optical maser modulation scheme.
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