FR2257996A1 - Detector for locating divergent beams of ionising radiation - with field creating electrodes forming a sector of a body of revolution and separate plane charge locating assembly
- Google Patents
Detector for locating divergent beams of ionising radiation - with field creating electrodes forming a sector of a body of revolution and separate plane charge locating assembly
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Commissariat a lEnergie Atomique et aux Energies Alternatives CEA
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Commissariat a lEnergie Atomique CEA
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Priority to FR7401115ApriorityCriticalpatent/FR2257996A1/fr
Priority to JP50006971Aprioritypatent/JPS50122294A/ja
Publication of FR2257996A1publicationCriticalpatent/FR2257996A1/fr
Application grantedgrantedCritical
Publication of FR2257996B1publicationCriticalpatent/FR2257996B1/fr
H01J47/00—Tubes for determining the presence, intensity, density or energy of radiation or particles
H01J47/06—Proportional counter tubes
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Measurement Of Length, Angles, Or The Like Using Electric Or Magnetic Means
(AREA)
Analysing Materials By The Use Of Radiation
(AREA)
FR7401115A1974-01-141974-01-14Detector for locating divergent beams of ionising radiation - with field creating electrodes forming a sector of a body of revolution and separate plane charge locating assembly
GrantedFR2257996A1
(en)
Detector for locating divergent beams of ionising radiation - with field creating electrodes forming a sector of a body of revolution and separate plane charge locating assembly
Detector for locating divergent beams of ionising radiation - with field creating electrodes forming a sector of a body of revolution and separate plane charge locating assembly
Detector for locating divergent beams of ionising radiation - with field creating electrodes forming a sector of a body of revolution and separate plane charge locating assembly
Detector for locating divergent beams of ionising radiation - with field creating electrodes forming a sector of a body of revolution and separate plane charge locating assembly
Equations describing a quasineutral heavy ion plasma confined in a magnetic field. Application to ion sources(Magnetohydrodynamic equations for heavy ion plasma confined in magnetic field and ion source discharges)
Gyroresonance interactions in the magnetosphere for a propagation which is not strictly longitudinal(Wave propagation during gyroresonance interaction, noting nonlongitudinal characteristics of waves generated in magnetosphere between beams of charged particles)
Preliminary results of an investigation of corpuscles by means of the Elektron 1 satellite(Distribution of trapped particles along orbit of Elektron I satellite)
Method of calculating the energy spectrum characteristics of albedo electrons by means of data from shielded gas-discharge counters(Energy spectrum analysis of albedo electrons by measuring cosmic ray intensity)
Perturbation theory for calculating vertical ionization energies and electron affinities of free molecules(Perturbation theoretical and graphical representation of vertical ionization energies and electron affinities of free molecules)[Ph. D. Thesis]