Electronic Paramagnetic Resonance Spectrometer for Nuclear Reactors

1,152,779. Electron paramagnetic resonance apparatus. COMMISSARIAT A L'ENERGIE ATOMIQUE. Aug.31, 1967 [Sept. 5, 1966], No. 39813/67. Addition to 1, 058, 562. Heading G1N. In an electron paramagnetic resonance spectrometer of the type described in Specification 1,058, 562 for studying samples be...

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Hauptverfasser: PIERRE SERVOZ-GAVIN, CHRISTIAN SANTIER, MICHEL SOUTIF, DANIEL GALLAND, JACQUES PERRIN
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CHRISTIAN SANTIER
MICHEL SOUTIF
DANIEL GALLAND
JACQUES PERRIN
description 1,152,779. Electron paramagnetic resonance apparatus. COMMISSARIAT A L'ENERGIE ATOMIQUE. Aug.31, 1967 [Sept. 5, 1966], No. 39813/67. Addition to 1, 058, 562. Heading G1N. In an electron paramagnetic resonance spectrometer of the type described in Specification 1,058, 562 for studying samples being irradiated in the vicinity of the core of a nuclear swimming pool reactor, the solenoid is cooled directly by the swimming pool water of the reactor which is caused to flow through the solenoid. The solenoid may comprise two concentric coaxial windings 30, 32 on insulating cylinders 34, 36 and connected in series or parallel and separated by an insulating screen 38. The wire forming these windings is made of anodic-oxidized aluminium, needing no insulator between turns, and is of rectangular cross-section. The wire is coiled with the shorter side of its cross-section parallel to the solenoid axis except for a central part of the outer layer of winding 32 where it is coiled with the longer side of its cross-section parallel to the solenoid axis to improve the homogeneity of the magnetic field. The longitudinal position of winding 30 is adjustable by screws 40.
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Electron paramagnetic resonance apparatus. COMMISSARIAT A L'ENERGIE ATOMIQUE. Aug.31, 1967 [Sept. 5, 1966], No. 39813/67. Addition to 1, 058, 562. Heading G1N. In an electron paramagnetic resonance spectrometer of the type described in Specification 1,058, 562 for studying samples being irradiated in the vicinity of the core of a nuclear swimming pool reactor, the solenoid is cooled directly by the swimming pool water of the reactor which is caused to flow through the solenoid. The solenoid may comprise two concentric coaxial windings 30, 32 on insulating cylinders 34, 36 and connected in series or parallel and separated by an insulating screen 38. The wire forming these windings is made of anodic-oxidized aluminium, needing no insulator between turns, and is of rectangular cross-section. The wire is coiled with the shorter side of its cross-section parallel to the solenoid axis except for a central part of the outer layer of winding 32 where it is coiled with the longer side of its cross-section parallel to the solenoid axis to improve the homogeneity of the magnetic field. 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Electron paramagnetic resonance apparatus. COMMISSARIAT A L'ENERGIE ATOMIQUE. Aug.31, 1967 [Sept. 5, 1966], No. 39813/67. Addition to 1, 058, 562. Heading G1N. In an electron paramagnetic resonance spectrometer of the type described in Specification 1,058, 562 for studying samples being irradiated in the vicinity of the core of a nuclear swimming pool reactor, the solenoid is cooled directly by the swimming pool water of the reactor which is caused to flow through the solenoid. The solenoid may comprise two concentric coaxial windings 30, 32 on insulating cylinders 34, 36 and connected in series or parallel and separated by an insulating screen 38. The wire forming these windings is made of anodic-oxidized aluminium, needing no insulator between turns, and is of rectangular cross-section. 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Electron paramagnetic resonance apparatus. COMMISSARIAT A L'ENERGIE ATOMIQUE. Aug.31, 1967 [Sept. 5, 1966], No. 39813/67. Addition to 1, 058, 562. Heading G1N. In an electron paramagnetic resonance spectrometer of the type described in Specification 1,058, 562 for studying samples being irradiated in the vicinity of the core of a nuclear swimming pool reactor, the solenoid is cooled directly by the swimming pool water of the reactor which is caused to flow through the solenoid. The solenoid may comprise two concentric coaxial windings 30, 32 on insulating cylinders 34, 36 and connected in series or parallel and separated by an insulating screen 38. The wire forming these windings is made of anodic-oxidized aluminium, needing no insulator between turns, and is of rectangular cross-section. The wire is coiled with the shorter side of its cross-section parallel to the solenoid axis except for a central part of the outer layer of winding 32 where it is coiled with the longer side of its cross-section parallel to the solenoid axis to improve the homogeneity of the magnetic field. The longitudinal position of winding 30 is adjustable by screws 40.</abstract><oa>free_for_read</oa></addata></record>
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subjects BASIC ELECTRIC ELEMENTS
ELECTRIC DISCHARGE TUBES OR DISCHARGE LAMPS
ELECTRICITY
GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS
INVESTIGATING OR ANALYSING MATERIALS BY DETERMINING THEIRCHEMICAL OR PHYSICAL PROPERTIES
MEASURING
MEASURING ELECTRIC VARIABLES
MEASURING MAGNETIC VARIABLES
NUCLEAR ENGINEERING
NUCLEAR PHYSICS
NUCLEAR REACTORS
PHYSICS
REDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGYGENERATION, TRANSMISSION OR DISTRIBUTION
TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINSTCLIMATE CHANGE
TESTING
title Electronic Paramagnetic Resonance Spectrometer for Nuclear Reactors
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