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A
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SECTION A — HUMAN NECESSITIES
B
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SECTION B — PERFORMING OPERATIONSTRANSPORTING
C
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SECTION C — CHEMISTRYMETALLURGY
D
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SECTION D — TEXTILESPAPER
E
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SECTION E — FIXED CONSTRUCTIONS
F
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SECTION F — MECHANICAL ENGINEERINGLIGHTINGHEATINGWEAPONSBLASTING
G
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SECTION G — PHYSICS
H
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SECTION H — ELECTRICITY
H01
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BASIC ELECTRIC ELEMENTS
H01B
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CABLESCONDUCTORSINSULATORSSELECTION OF MATERIALS FOR THEIR CONDUCTIVE, INSULATING, OR DIELECTRIC PROPERTIES (selection for magnetic properties H01F 1/00; waveguides H01P; installation of cables or lines, or of combined optical and electric, cables or lines H02G)
H01C
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RESISTORS
H01F
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MAGNETSINDUCTANCESTRANSFORMERSSELECTION OF MATERIALS FOR THEIR MAGNETIC PROPERTIES (ceramics based on ferrites C04B 35/26; alloys C22C; thermomagnetic devices H01L 37/00; loudspeakers, microphones, gramophone pick-ups or like acoustic electromechanical transducers H04R) [2]
H01G
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CAPACITORSCAPACITORS, RECTIFIERS, DETECTORS, SWITCHING DEVICES, LIGHT-SENSITIVE OR TEMPERATURE-SENSITIVE DEVICES OF THE ELECTROLYTIC TYPE (selection of specified materials as dielectric H01B 3/00; capacitors with potential-jump or surface barrier H01L 29/00)
H01H
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ELECTRIC SWITCHESRELAYSSELECTORSEMERGENCY PROTECTIVE DEVICES (contact cables H01B 7/10; overvoltage protection resistors, resistive arresters H01C 7/12, H01C 8/04; electrolytic self-interrupters H01G 9/18; switching devices of the waveguide type H01P; devices for interrupted current collection H01R 39/00; overvoltage arresters using spark gaps H01T 4/00; emergency protective circuit arrangements H02H; switching by electronic means without contact-making H03K 17/00)
H01J
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ELECTRIC DISCHARGE TUBES OR DISCHARGE LAMPS (spark-gaps H01T; arc lamps with consumable electrodes H05B; particle accelerators H05H)
H01J 1/00
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Details of electrodes, of magnetic control means, of screens, or of the mounting or spacing thereof, common to two or more basic types of discharge tubes or lamps (details of electron-optical arrangements or of ion traps H01J 3/00)
H01J 3/00
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Details of electron-optical or ion-optical arrangements or of ion traps common to two or more basic types of discharge tubes or lamps
H01J 5/00
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Details relating to vessels or to leading-in conductors common to two or more basic types of discharge tubes or lamps
H01J 7/00
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Details not provided for in groups H01J 1/00-H01J 5/00 and common to two or more basic types of discharge tubes or lamps
H01J 9/00
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Apparatus or processes specially adapted for the manufacture of electric discharge tubes, discharge lamps, or parts thereof (manufacture of vessels or containers from metal B21, e.g. B21D 51/00, from glass C03B)Recovery of material from discharge tubes or lamps [1, 7]
H01J 11/00
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Gas-filled discharge tubes without any main electrode inside the vesselGas-filled discharge tubes with at least one main electrode outside the vessel (lamps H01J 65/00)
H01J 13/00
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Discharge tubes with liquid-pool cathodes, e.g. metal-vapour rectifying tubes (lamps H01J 61/00)
H01J 15/00
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Gas-filled discharge tubes with gaseous cathodes, e.g. plasma cathode (lamps H01J 61/62)
H01J 17/00
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Gas-filled discharge tubes with solid cathode (H01J 25/00, H01J 27/00, H01J 31/00-H01J 41/00 take precedence; gas or vapour discharge lamps H01J 61/00; gas filled spark gaps H01T; Marx converters H02M 7/26; tubes for generating potential differences by charges carried in a gas stream H02N)
H01J 19/00
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Details of vacuum tubes of the types covered by group H01J 21/00
H01J 21/00
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Vacuum tubes (H01J 25/00, H01J 31/00-H01J 40/00, H01J 43/00, H01J 47/00, H01J 49/00 take precedence; details of vacuum tubes H01J 19/00; cathode-ray or electron-stream lamps H01J 63/00)
H01J 23/00
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Details of transit-time tubes of the types covered by group H01J 25/00
H01J 25/00
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Transit-time tubes, e.g. klystrons, travelling-wave tubes, magnetrons (details of transit-time tubes H01J 23/00; particle accelerators H05H)
H01J 25/02
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Tubes with electron stream modulated in velocity or density in a modulator zone and thereafter giving-up energy in an inducing zone, the zones being associated with one or more resonators (tubes in which a travelling wave is simulated at spaced gaps H01J 25/34)
H01J 25/04
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. . Tubes having one or more resonators, without reflection of the electron stream, and in which the modulation produced in the modulator zone is mainly density modulation, e.g. Haeff tube
H01J 25/06
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. . Tubes having only one resonator, without reflection of the electron stream, and in which the modulation produced in the modulator zone is mainly velocity modulation, e.g. Lüdi klystron
H01J 25/08
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. . . with electron stream perpendicular to the axis of the resonator
H01J 25/10
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. . Klystrons, i.e. tubes having two or more resonators, without reflection of the electron stream, and in which the stream is modulated mainly by velocity in the zone of the input resonator
H01J 25/11
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. . . Extended interaction klystrons [2]
H01J 25/12
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. . . with pencil-like electron stream in the axis of the resonators
H01J 25/14
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. . . with tube-like electron stream coaxial with the axis of the resonators
H01J 25/16
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. . . with pencil-like electron stream perpendicular to the axis of the resonators
H01J 25/18
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. . . with radial or disc-like electron stream perpendicular to the axis of the resonators
H01J 25/20
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. . . having special arrangements in the space between resonators, e.g. resistive-wall amplifier tube, space-charge amplifier tube, velocity-jump tube
H01J 25/22
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. . Reflex klystrons, i.e. tubes having one or more resonators, with a single reflection of the electron stream, and in which the stream is modulated mainly by velocity in the modulator zone
H01J 25/24
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. . . in which the electron stream is in the axis of the resonator or resonators and is pencil-like before reflection
H01J 25/26
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. . . in which the electron stream is coaxial with the axis of the resonator or resonators and is tube-like before reflection
H01J 25/28
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. . . in which the electron stream is perpendicular to the axis of the resonator or resonators and is pencil-like before reflection
H01J 25/30
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. . . in which the electron stream is perpendicular to the axis of the resonator or resonators and is radial or disc-like before reflection
H01J 25/32
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. . Tubes with plural reflection, e.g. Coeterier tube
H01J 25/34
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Travelling-wave tubesTubes in which a travelling wave is simulated at spaced gaps
H01J 25/36
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. . Tubes in which an electron stream interacts with a wave travelling along a delay line or equivalent sequence of impedance elements, and without magnet system producing an H-field crossing the E-field
H01J 25/38
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. . . the forward-travelling wave being utilised
H01J 25/40
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. . . the backward-travelling wave being utilised
H01J 25/42
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. . Tubes in which an electron stream interacts with a wave travelling along a delay line or equivalent sequence of impedance elements, and with a magnet system producing an H-field crossing the E-field (with travelling wave moving completely around the electron space H01J 25/50)
H01J 25/44
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. . . the forward-travelling wave being utilised
H01J 25/46
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. . . the backward-travelling wave being utilised
H01J 25/48
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. . Tubes in which two electron streams of different velocities interact with one another, e.g. electron-wave tube
H01J 25/49
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. . Tubes using the parametric principle, e.g. for parametric amplification
H01J 25/50
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Magnetrons, i.e. tubes with a magnet system producing an H-field crossing the E-field (with travelling wave not moving completely around the electron space H01J 25/42; functioning with plural reflection or with reversed cyclotron action H01J 25/62, H01J 25/64)
H01J 25/52
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. . with an electron space having a shape that does not prevent any electron from moving completely around the cathode or guide electrode
H01J 25/54
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. . . having only one cavity or other resonator, e.g. neutrode tube (having a composite resonator H01J 25/58)
H01J 25/55
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. . . . Coaxial-cavity magnetrons [2]
H01J 25/56
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. . . . with interdigital arrangement of anodes, e.g. turbator tube
H01J 25/58
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. . . having a number of resonatorshaving a composite resonator, e.g. a helix
H01J 25/587
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. . . . Multi-cavity magnetrons [2]
H01J 25/593
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. . . . . Rising-sun magnetrons [2]
H01J 25/60
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. . with an electron space having a shape that prevents any electron from moving completely around the cathode or guide electrodeLinear magnetrons
H01J 25/61
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Hybrid tubes, i.e. tubes comprising a klystron section and a travelling-wave section [2]
H01J 25/62
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Strophotrons, i.e. tubes with H-field crossing the E-field and functioning with plural reflection
H01J 25/64
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Turbine tubes, i.e. tubes with H-field crossing the E-field and functioning with reversed cyclotron action
H01J 25/66
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Tubes with electron stream crossing itself and thereby interrupting, or interfering with, itself
H01J 25/68
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Tubes specially designed to act as oscillator with positive grid and retarding field, e.g. for Barkhausen-Kurz oscillators (with secondary emission H01J 25/76)
H01J 25/70
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. . with resonator having distributed inductance and capacitance, e.g. Pintsch tube
H01J 25/72
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. . in which a standing wave or a considerable part thereof is produced along an electrode, e.g. Clavier tube (with resonator having distributed inductance and capacitance H01J 25/70)
H01J 25/74
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Tubes specially designed to act as transit-time diode oscillators, e.g. monotron (with secondary emission H01J 25/76)
H01J 25/76
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Dynamic electron-multiplier tubes, e.g. Farnsworth multiplier tube, multipactor
H01J 25/78
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Tubes with electron stream modulated by deflection in a resonator
H01J 27/00
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Ion beam tubes (H01J 25/00, H01J 33/00, H01J 37/00 take precedence; particle accelerators H05H)
H01J 29/00
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Details of cathode-ray tubes or of electron-beam tubes of the types covered by group H01J 31/00
H01J 31/00
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Cathode-ray tubesElectron-beam tubes (H01J 25/00, H01J 33/00, H01J 35/00, H01J 37/00 take precedence; details of cathode-ray tubes or of electron-beam tubes H01J 29/00; cathode-ray or electron-stream lamps H01J 63/00)
H01J 33/00
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Discharge tubes with provision for emergence of electrons or ions from the vessel (particle accelerators H05H)Lenard tubes
H01J 35/00
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X-ray tubes (X-ray lasers H01S 4/00; X-ray technique in general H05G)
H01J 37/00
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Discharge tubes with provision for introducing objects or material to be exposed to the discharge, e.g. for the purpose of examination or processing thereof (H01J 33/00, H01J 40/00, H01J 41/00, H01J 47/00, H01J 49/00 take precedence; investigating or analysing surface structures in atomic ranges using scanning-probe techniques G01N 13/10; contactless testing of electronic circuits using electron beams G01R 31/305; details of scanning-probe apparatus, in general G12B 21/00) [2, 5]
H01J 40/00
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Photoelectric discharge tubes not involving the ionisation of a gas (H01J 49/00 takes precedence; cathode-ray or image-pick-up tubes H01J 31/26) [3]
H01J 41/00
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Discharge tubes and means integral therewith for measuring gas pressure (vacuum gauge systems using such tubes G01L 21/30)Discharge tubes for evacuation by diffusion of ions
H01J 43/00
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Secondary-emission tubesElectron-multiplier tubes (dynamic electron-multiplier tubes H01J 25/76; secondary-emission detectors for measurement of nuclear or X-radiation G01T 1/28)
H01J 45/00
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Discharge tubes functioning as thermionic generators
H01J 47/00
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Tubes for determining the presence, intensity, density or energy of radiation or particles (photoelectric discharge tubes not involving the ionisation of a gas H01J 40/00) [3]
H01J 49/00
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Particle spectrometers or separator tubes (for measuring gas pressure H01J 41/10) [3]
H01J 61/00
Discharge lamps
H01J 61/00
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Gas- or vapour-discharge lamps (use for sterilising milk products A23C; use for medical purposes A61N 5/00; use for disinfecting water C02F; use for lighting F21; circuits therefor H05B; arc lamps with consumable electrodes H05B; electroluminescent lamps H05B)
H01J 63/00
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Cathode-ray or electron-stream lamps (flying-spot tubes H01J 31/10; magic-eye tuning indicators H01J 31/14; lamps with incandescent body heated by the ray or stream H01K)
H01J 65/00
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Lamps without any electrode inside the vesselLamps with at least one main electrode outside the vessel
H01J 99/00

H01J 99/00
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Subject matter not provided for in other groups of this subclass [2006.01]
H01K
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ELECTRIC INCANDESCENT LAMPS (details or apparatus or processes for manufacture applicable to both discharge devices and incandescent lamps H01J; light sources using a combination of incandescent and other types of light generation H01J 61/96, H05B 35/00; circuits therefor H05B)
H01L
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SEMICONDUCTOR DEVICESELECTRIC SOLID STATE DEVICES NOT OTHERWISE PROVIDED FOR (conveying systems for semiconductor wafers B65G 49/07; use of semiconductor devices for measuring G01; details of scanning-probe apparatus, in general G12B 21/00; resistors in general H01C; magnets, inductors, transformers H01F; capacitors in general H01G; electrolytic devices H01G 9/00; batteries, accumulators H01M; waveguides, resonators, or lines of the waveguide type H01P; line connectors, current collectors H01R; stimulated-emission devices H01S; electromechanical resonators H03H; loudspeakers, microphones, gramophone pick-ups or like acoustic electromechanical transducers H04R; electric light sources in general H05B; printed circuits, hybrid circuits, casings or constructional details of electrical apparatus, manufacture of assemblages of electrical components H05K; use of semiconductor devices in circuits having a particular application, see the subclass for the application) [2]
H01M
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PROCESSES OR MEANS, e.g. BATTERIES, FOR THE DIRECT CONVERSION OF CHEMICAL ENERGY INTO ELECTRICAL ENERGY (electrochemical processes or apparatus in general C25; semiconductor or other solid state devices for converting light or heat into electrical energy H01L, e.g. H01L 31/00, H01L 35/00, H01L 37/00) [2]
H01P
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WAVEGUIDESRESONATORS, LINES, OR OTHER DEVICES OF THE WAVEGUIDE TYPE (operating at optical frequencies G02B; aerials H01Q; networks comprising lumped impedance elements H03H)
H01Q
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AERIALS (microwave radiators for near-field therapeutic treatment A61N 5/04; apparatus for testing aerials or for measuring aerial characteristics G01R; waveguides H01P; radiators or aerials for microwave heating H05B 6/72)
H01R
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ELECTRICALLY-CONDUCTIVE CONNECTIONSSTRUCTURAL ASSOCIATIONS OF A PLURALITY OF MUTUALLY-INSULATED ELECTRICAL CONNECTING ELEMENTSCOUPLING DEVICESCURRENT COLLECTORS (switches, fuses H01H; coupling devices of the waveguide type H01P 5/00; switching arrangements for the supply or distribution of electric power H02B; installations of electric cables or lines, or of combined optical and electric cables or lines, or of auxiliary apparatus H02G; printed means for providing electric connections to or between printed circuits H05K)
H01S
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DEVICES USING STIMULATED EMISSION
H01T
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SPARK GAPSOVERVOLTAGE ARRESTERS USING SPARK GAPSSPARKING PLUGSCORONA DEVICESGENERATING IONS TO BE INTRODUCED INTO NON-ENCLOSED GASES (working of metal by the action of a high concentration of electric current B23H; welding, e.g. arc welding, electron beam welding or electrolytic welding, B23K; gas-filled discharge tubes with solid cathode H01J 17/00; electric arc lamps H05B 31/00)
H02
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GENERATION, CONVERSION, OR DISTRIBUTION OF ELECTRIC POWER
H03
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BASIC ELECTRONIC CIRCUITRY
H04
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ELECTRIC COMMUNICATION TECHNIQUE
H05
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ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
H99
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SUBJECT MATTER NOT OTHERWISE PROVIDED FOR IN THIS SECTION [2006.01]

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