#: locale=en-GB ## Action ### URL LinkBehaviour_0A9482EA_2D0C_F240_41BE_C168BF3C5E9E.source = https://alternance.sciencepro47.com LinkBehaviour_0D31062F_621B_0490_41D6_771CB52267F2.source = https://storage.net-fs.com/hosting/6174450/16/ LinkBehaviour_D23F5995_621D_0FB3_41B1_841898F8C8A8.source = https://thevirtualproject.fr LinkBehaviour_0A9552EA_2D0C_F240_4185_37F4BD21C019.source = https://www.u-bordeaux.fr/universite/organisation-et-fonctionnement/composantes-de-formation/college-sciences-et-technologies/dusa ## Habillage ### Bouton Button_7C57EA08_5B07_B5C8_41D4_B8B628D36DFE.label = 1 Button_71E10C02_3293_A17D_41C8_5486E074052A.label = 20 T and 6 T magnets Button_48B808F2_660D_0D70_41C8_61890A25D537.label = 20 T and 6 T magnets Button_448072F6_6020_D11B_41CA_722A040F16DA.label = 20 T and 6 T magnets Button_00186BCF_2D04_F240_41B9_03B7D6E8397B.label = 20 T and 6 T magnets Button_71E6DBF7_3293_A683_4191_1A505F4015F0.label = 30 MW power supplies Button_48BEF8E5_660D_0D90_41D2_D13A194AA321.label = 30 MW power supplies Button_449EB2E5_6020_D139_41C9_88EBBABF954D.label = 30 MW power supplies Button_48BA7566_2DC0_418B_41C6_1E8C433EB325.label = 30 MW power supplies Button_71E43BF2_3293_A69D_41A5_2FC32D11986C.label = Amphithéâtre ? Button_5EB0F256_6607_3CB0_41AD_38AE749040D8.label = Audio (On) Button_9B4D6772_36C0_418B_41BD_E35ACB503BA0.label = Audio (On) Button_4CF9FC1A_6157_F77F_41D8_38B61C00D9D8.label = Audio (On) Button_9B4D6772_36C0_418B_41BD_E35ACB503BA0.pressedLabel = Audio Mute Button_4CF9FC1A_6157_F77F_41D8_38B61C00D9D8.pressedLabel = Audio Mute Button_5EB0F256_6607_3CB0_41AD_38AE749040D8.pressedLabel = Audio Mute Button_44833307_6020_D0F9_41AF_87EFEC1DBA00.label = BIBLOTHÈQUE M. SERRES Button_44833307_6020_D0F9_41AF_87EFEC1DBA00.pressedLabel = BIBLOTHÈQUE M. SERRES Button_71ED6C14_3293_A185_41AD_56219303CC3D.pressedLabel = BIBLOTHÈQUE M. SERRES Button_71ED6C14_3293_A185_41AD_56219303CC3D.label = BIBLOTHÈQUE M. SERRES Button_00180BCF_2D04_F240_41BC_58661A2C6A02.pressedLabel = BIBLOTHÈQUE M. SERRES Button_00180BCF_2D04_F240_41BC_58661A2C6A02.label = BIBLOTHÈQUE M. 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Maps
HTMLText_0BE491A1_37EA_E090_41B1_3B396081391F.html =
MAPS
HTMLText_0BB70800_3735_AF90_41BC_04E8BB1F4510.html =


HTMLText_887DAEB8_D1F8_D124_41E4_23507357E70F.html =
Central control unit
of the electric installations


(2x33 kA at maximum power of 30 MW)
HTMLText_88872866_D1EB_D12C_41D6_86AE20D81E1A.html =
Central control unit
of the hydraulic installations


steerage of internal water cooling circuit (demineralized water) and external water cooling circuit (remote pumping station)
HTMLText_9E25E30A_D01F_50E4_41D5_D9B0632374AB.html =
Centrifugal hydraulic pump


with a maximum flow rate of
150 l/s placed on its anti-vibration socket
HTMLText_96F5AC03_D027_B0E4_41E6_33CBBDF579BC.html =
Distribution circuits


for 80 m3 de-ionized cooling water for the electromagnets
HTMLText_FD02EE4A_D282_EC2B_41B7_3AB4B7FA16A2.html =
Helix for high magnetic fields


produced by metal additive
manufacturing
HTMLText_80BFB7D7_D01F_5F6C_41DA_CD485E8847BD.html =
Plate heat exchanger for
36 MW


at the interface between the internal magnet cooling circuit and the external cooling circuit
HTMLText_FD5BFF7F_D282_6CE9_41E8_9483D252A3E2.html =
Polyhelix insert


for intense magnetic fields (33 kA, 400V)
HTMLText_8356A5AD_D019_733C_41DF_2D13BDF2851E.html =
Stainless steel magnet housing


containing the electromagnets powered by maximum currents of
2 x 33000 A and cooling water at flow rates of 2 x 150 l/s.
Maximum field: 37 T
HTMLText_FD75E028_D28F_D417_41DB_6751501BC526.html =
Wire electrical discharge machine


dedicated to cutting helices for
intense magnetic fields
HTMLText_C4DB0A7A_8B22_238F_41E1_EDDBB81841BC.html =
15/17 T superconducting field-sweepable NMR magnet
HTMLText_E782F604_D019_70EC_41E1_2E2EA90EDA53.html =
Central control and clocking unit
HTMLText_E31E5020_D079_D124_41A6_2C9220D1E70F.html =
Central surveillance unit
HTMLText_D744BD1B_8F62_218D_4196_572D89854D74.html =
Compressor for the liquefier
HTMLText_E7026195_D019_D3EC_41B7_B017AF85841C.html =
Control room of the 30 MW installation
HTMLText_D87F1688_8FE2_208B_41CB_3449D2F15D96.html =
Cryogenic satellite dewar
HTMLText_98510CE1_D03B_7124_41E6_CF43EA5FBCE1.html =
Current transport
HTMLText_94959B4B_D0EB_B764_41C1_91911F3C3CFF.html =
Direct current current transformer (DCCT)
HTMLText_E7044AAF_D039_B13C_41D9_C9C6A7AD7192.html =
Direct current current transformer (DCCT)
HTMLText_96789223_D028_B124_41C6_7713B8AE73AF.html =
Distribution substation for 15 kV
HTMLText_A36CF0A3_8FE6_20BD_4144_9821AC2B40FB.html =
Helium liquefier with internal cryogenic epurator
HTMLText_99209812_D039_F0E4_41E0_4AE62DA0296D.html =
High pressure filter
HTMLText_EDFC49E7_D018_D32C_41DF_8BC0F51CCBB8.html =
Hydraulic control
HTMLText_DCA2D1C5_8FE2_2085_41DE_7AE2E19377D5.html =
Liquid helium strorage dewar
HTMLText_DD97CA8F_8FE2_2085_41A8_F17309AEBB48.html =
Magnet Safety System (MSS)
HTMLText_DA49DB6C_8F22_E18B_41DD_17C4D3302935.html =
Multigas analyser
HTMLText_E762AEFD_D028_B11C_41E7_0F9C123605F7.html =
Power supply no. 2
HTMLText_EAE4A3E8_D019_D724_41E6_DB2F28B8E5AB.html =
Power supply no. 3
HTMLText_EA5BCB14_D01B_B0EC_41E2_7FA994848BCA.html =
Power supply no. 4
HTMLText_D2A739D1_89E7_E09C_41BD_EEF1B1FDD32D.html =
Recovery balloon
HTMLText_D0024C77_8F26_6785_41D7_F4B6974B70AF.html =
Recovery compressor
HTMLText_978E126E_D039_D13C_41E5_9937CEE44852.html =
Separation switch
HTMLText_95DA0757_D019_DF6C_41D8_36B61E57D19F.html =
Transformer 15 kV/550 V
HTMLText_98764517_82DC_D0BD_41D8_202D8EFECA9F.html =
Users office
HTMLText_98507CE3_D03B_712B_41CD_A0B847C8AF74.html =
(4 x 16500 A) to the magnets by aluminum bars
HTMLText_D5D9B301_8F22_217D_41E2_106B3DB24F54.html =
1.8 K pumping station
5000 m3/h at 10 mbar
HTMLText_51BF19C5_1E12_FD81_4197_ABA99065FBEA.html =
14/16 T superconducting magnet with 50mm bore and 4 Kelvin
cryostat
HTMLText_A36C70A5_8FE6_2085_41B5_FABA36C961FC.html =
150 litres / hour liquid helium at 1.3 bar ; 4.5 K
HTMLText_30B7A22F_15C2_DF41_41B2_E9BFFD9CE34C.html =
16-18T magnet with
variable temperature insert
HTMLText_C20C0CB9_833D_71F5_41B6_34676D009837.html =
2T fast sweeping magnet (0.04-1.5 Hz) with 4-290 K VTI for Magneto-Chiral Dichroism measurements
HTMLText_23A32E4B_1EEE_5681_41B2_B58CC5E2867C.html =
300 liters liquid nitrogen storage vessel
HTMLText_D2A799D3_89E7_E09D_419F_A535FFBC29B6.html =
35 m3 at atmospheric pressure + 10 mbar
HTMLText_9BEE5169_D3FF_2B3E_41E0_23FC59962C96.html =
3He insert
HTMLText_9CCDEBDA_D3E3_1F12_41D8_8085C2AEDA5C.html =
3He pumping group and valve panel
HTMLText_22D7D49B_1E11_EB81_41B3_7BF56AC862A0.html =
3He/4He dilution refrigerator:
pumping group
gas handling system
temperature controller
reservoir of 3He/4He mixture
HTMLText_22BCD4A7_1E11_AB81_41BB_ED943FE54D5C.html =
3He/4He topload dilution refrigerator on cryostat lift.


Base temperature: 20 mK
HTMLText_A14369A8_8FFE_608B_41B5_179525205289.html =
43 T Hybrid Magnet of
52 tons in total including:
24 tons at 1.8 K
3 tons at 40 K
1 ton at 100 K
24 tons at room temperature
HTMLText_DCA251C7_8FE2_2085_41B3_A8EA4BA09810.html =
4500 litres at 1.3 bar ; 4.5 K
HTMLText_9D2220F1_D3E3_292E_41C5_359A9487F838.html =
4He pumping group
HTMLText_2C261D64_1A77_BA87_4189_D495A9D86D7B.html =
4He recovery and bath pumping
(1.2 – 4 K)
HTMLText_237872C4_1E12_EF87_419F_DB0CA1B60B1D.html =
4He recovery
HTMLText_5A098CAD_1E3F_DB81_419E_2CC3D0936976.html =
4He variable temperature insert
(1.2 K - 300 K).
3He insert
(250 mK - 40 K).
HTMLText_2CF295F0_1A71_D59F_4195_95F721F104C6.html =
5 mT magnetic field limit
HTMLText_BA5EC5CC_832B_3393_41E0_0E4F86077927.html =
6 T room temperature bore horizontal magnet with 90° horizontal and vertical access
HTMLText_3180A1A4_15C2_5D47_41B4_93CCA0C2A440.html =
9T magnet with
dilution refrigerator
HTMLText_CBBCBE3E_8325_F0EF_41DA_94CC8C559699.html =
A remarkable tool supported by LANEF, the 19-20 Tesla superconducting magnet features a variable temperature insert.


This equipment is instrumental in facilitating research for scientists from Institut Néel, CEA, and LNCMI, enabling investigations of quantum materials.
HTMLText_EB9C7882_D019_51E4_41AC_3BDFA85D49D0.html =
All thyristor bridge rectifier
HTMLText_C17DC54B_8AE3_E18D_41C3_B409F79783D4.html =
Broad-band NMR spectrometer
HTMLText_3D947DE6_19F2_7583_41B7_1EB2471A1E2A.html =
Broad-band NMR spectrometer
HTMLText_EF6E11A7_D0E7_B32C_41E1_FBDF82490A51.html =
Capacitor of the LC filter for smoothing of the rectified current
HTMLText_DA492B6E_8F22_E187_41CD_87D3011955F1.html =
Controls helium purity
N2, O2, H2O and CnHm are detected and measured in the ppm range
HTMLText_D87E8689_8FE2_208D_41D0_08102546E2F9.html =
Converts normal liquid helium at
1.2 bar ; 4.4 K into superfluid pressurized liquid helium at
1,2 bar ; 1.8 K
HTMLText_9DBA86D0_D3FD_296E_41C8_BDE98F054A2B.html =
Cryostat et superconducting magnet 12/14T
HTMLText_2F4C1759_1A72_F681_41B3_336140C21252.html =
Cryostat lift
HTMLText_922CDCEB_D0F8_B124_41BE_0475AC045CE3.html =
Current leads (16500 A) towards magnets made of aluminium bars.
HTMLText_94697082_D01B_F1E4_41E9_FABC08A10DA0.html =
Current leads at 15 kV
from high voltage cells
HTMLText_978833D0_D018_D764_41DF_7003550B2E36.html =
Current leads at 550 V
to power supply 4
HTMLText_C58A927B_8B26_638D_41D7_F54361E53EE7.html =
Data analysis; probe testing and development
HTMLText_C7BC4DF5_8B26_2085_41C6_995135E8E2DC.html =
Desiccator for the samples
HTMLText_E3E17AA3_D286_7419_4186_99A1E1AE5EC4.html =
Die-sinking electrical discharge machine
HTMLText_EF2BFB4D_D01F_577C_41DB_36C42D0CEC92.html =
Digital control and automates
HTMLText_3A142CCF_19F2_BB81_41B6_B1C7C276126F.html =
Dilution refrigerator for NMR measurements down to 0.04 K
HTMLText_3DB20368_19F2_6E8F_41B2_50016E0A5C94.html =
Dilution refrigerator pumping group
HTMLText_DDC11B1E_8FE1_E187_41CC_A78BED32AB02.html =
Dump resistors to discharge in two different modes, the current of the superconducting coil up to 7500 A
Slow discharge, with time constant of 86 s,
Fast discharge, with time constant of 43 s.
HTMLText_DD989A91_8FE2_209D_41E0_DF32A4A31CD1.html =
Electronic analogue system ensuring the safety of the superconducting coil in case of a quench from careful monitoring of voltage and temperature measurements of the overall superconducting circuit; in case a threshold is reached the MSS sends the order to discharge the current into dump resistors to avoid damaging the coil.
HTMLText_3A6A00A8_19DE_5D38_415C_46835C3F423C.html =
FTIR spectrometer (Bruker Vertex 80v) coupled to the superconducting coil for magneto-optical experiments in the THz and infrared spectra ranges (reflectivity and transmission measurements in the Faraday or Voigt configurations; Faraday rotation…)
HTMLText_FC8CB322_D028_B724_41E5_92F99D9776A3.html =
Gazeous helium storage capacities to be
liquefied : 3000 m3 at 200 bars
(+ 3000 other m3 stored elsewhere)
HTMLText_FE2E4C43_D02B_5164_41D9_01C003D4813B.html =
Gazeous pure helium
buffer tank for the liquefier
180 m3 at 12 bars
HTMLText_3ADD6D2D_15C2_2541_41B1_BC98020F8355.html =
He vessel
HTMLText_23001DA7_1E13_F581_41BB_E958B2E05D48.html =
High vacuum pumping group
HTMLText_5AB89318_1E32_6E8F_4184_DA99AB8732AA.html =
High vacuum pumping groups.
Helium leak detectors.
HTMLText_C36F13DD_8AE2_6085_41CB_3AB4044C6323.html =
High-stability power supply for the magnet
HTMLText_ED1BADF6_D019_532C_41E0_74DFEF62E8C4.html =
Inductor of the LC filter for smoothing of the rectified current
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Instrumentation
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Lathe dedicated to machining
of helices for intense magnetic fields.
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Liquid helium feeding line from the dewar
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Liquid helium tank
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Liquid nitrogen
storage tank at 80 K
27 000 litres at 1.5 bar
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Magnetic field control and supervision rack
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Magnetic field control and supervision rack
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Magneto-Chiral Dichroism measurements probes
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Measurement and control rack
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NMR spectrometer control interface
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Oil removal system < 5 ppb and liquefier process pressure regulation
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Optical fibers
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Polarity invertor
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Preparation of samples and
experiment set-ups
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Pumping line to the 1.8 K pumping station
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Quasi-Optical table, bolometer and frequency source (propagation, detection and generation of mm-waves)
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Room T 316
Building T, 2nd floor
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Rotary evaporator
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Rough pump for the vacuum of the cryogenic satellite
80 m3/h at 10-3 mbar
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Sample preparation under microscope.
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Sample preparation
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Spectroline® CM UV-viewing cabinet
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Superconducting coil 16/18T
(Oxford Instruments)
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Superconducting magnet
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Temperature controllers
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The chemical and solvent storage.
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This was the world-record magnet back in 1992 and it is still widely used. Here, it is fitted with the standard temperature controller covering the range from 300 K down to 1.3 K, and can receive a dilution refrigerator extending this range down to 0.04 K.
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Top part of the cryogenic satellite showing
Cryogenic valves
Instrumentation wires
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Triple stage spectrometer for Raman scattering
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Turbomolecular pumping station for cryogenic equipment
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Up to 120 m3/h of gaseous helium can be compressed from atmospheric pressure + 10 mbar to 250 bars
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Up to 2000 m3/h gaseous helium is compressed from 1.05 to 14.5 bars
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Upper wooden mezzanine floor for user access to the magnet in its various configurations :
43 T in 34 mm dia.
40 T in 50 mm dia.
27 T in 170 mm dia.
17.5 T in 375 mm dia.
9 T in 800 mm dia.
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User access to magnetic field:
31 T in 50 mm diameter
20 T in 170 mm diameter
10 T in 376 mm diameter
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User access to magnetic field:
37 T in 34 mm diameter
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User experiment rack for thermometry.
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Visual control of cryostat insertion
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Visual control of cryostat insertion
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Workbench for introductory sessions on electromagnetism for the “general public”
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Workspace for sample and probe preparation
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between the busbar and one of the electromagnet sites for intense magnetic fields
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cooled by oil-water heat exchanger visible in the foreground.
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for all the processes
linked to the production of intense magnetic fields
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for current control and regulation up to 16500 A.
It ensures the operation of the high field magnets with a precision of 10 ppm.
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for current control and regulation up to 16500 A.
It ensures the operation of the high field magnets with a precision of 10 ppm.
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made up of 16 circuit breakers and
5 MVAr of capacitive compensation.
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of cooling circuit of power supplies.
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of the signals from the magnet and the power supplies.
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operating at 6 MW and comprising 4 all thyristor bridge rectifier and subsequent filters
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operating at 9 MW and comprising 4 all thyristor bridge rectifier and subsequent filters
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operating at 9 MW and comprising 4 all thyristor bridge rectifier and subsequent filters
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running in continuous mode and providing the power for the high field electromagnets
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upstream of the electromagnets
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X, Y, Z sample displacement
controller
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Excitation Lasers
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Free beam probe for magneto-optical measurements
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Speed control of hydraulic pumps by electric variators
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MAPS
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{{title}}
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imlevel_4CC30669_2B27_FCD0_40DE_F8C57BEA4D80.url = media/map_236EAF76_0B95_CE5F_41A5_64D7C666DAC7_en-GB_3.png imlevel_4CCF5695_2B27_FC70_41BF_0EF31714BA39.url = media/map_3421D134_14FB_F739_41AC_8698DE3CC175_en-GB_0.png imlevel_4CCF7695_2B27_FC70_41A4_8F9DB2B71D32.url = media/map_3421D134_14FB_F739_41AC_8698DE3CC175_en-GB_1.png imlevel_4CCF1695_2B27_FC70_4191_E23544BCC08C.url = media/map_3421D134_14FB_F739_41AC_8698DE3CC175_en-GB_2.png imlevel_4CCF2695_2B27_FC70_41C0_33A4648D9F73.url = media/map_3421D134_14FB_F739_41AC_8698DE3CC175_en-GB_3.png imlevel_4CCD667D_2B27_FCB0_41BC_D2180EC79961.url = media/map_3D91E600_19B1_E983_41B6_2C40D74A9CA4_en-GB_0.png imlevel_4CCD067D_2B27_FCB0_41C0_FA1C47797B03.url = media/map_3D91E600_19B1_E983_41B6_2C40D74A9CA4_en-GB_1.png imlevel_4CCD167E_2B27_FCB0_41B1_691821ECA54F.url = media/map_3D91E600_19B1_E983_41B6_2C40D74A9CA4_en-GB_2.png imlevel_4CCD367E_2B27_FCB0_41B5_566404D833F3.url = media/map_3D91E600_19B1_E983_41B6_2C40D74A9CA4_en-GB_3.png imlevel_4CC12654_2B27_FCF0_41C3_DF0AE8086102.url = media/map_82B736F3_B4B4_8AB9_41E2_050686856854_en-GB_0.jpg imlevel_4CC13654_2B27_FCF0_418C_EE515CF3D547.url = media/map_82B736F3_B4B4_8AB9_41E2_050686856854_en-GB_1.jpg imlevel_4CC1C654_2B27_FCF0_41BD_D753AE5CAD8C.url = media/map_82B736F3_B4B4_8AB9_41E2_050686856854_en-GB_2.jpg imlevel_4CC1D654_2B27_FCF0_41C3_318866430744.url = media/map_82B736F3_B4B4_8AB9_41E2_050686856854_en-GB_3.jpg ### Plan de masse ### Sous-titre panorama_6DB1EF7B_6019_3CFB_41D6_487AC9C321F6.subtitle = ALBIN panorama_2485A480_66A4_0C83_41C8_0F3F17C4E9D1.subtitle = Accueil Aimants résistifs Bât J RdC panorama_4E934CC4_6C34_2C6C_41DA_525727908C5F.subtitle = Accueil Général Bât T 2eme panorama_330BD96F_2C18_0E64_41B9_2874C7A7B93D.subtitle = BATS_1 panorama_DFA60E8F_C727_C401_41E5_92E1EC76C028.subtitle = ENTREE_T_RDC panorama_239AFA84_02E9_806F_41A7_FBADB678707D.subtitle = Espace café Bât J 1er panorama_E667C47A_FE66_809B_41D3_FF3E231A4124.subtitle = J1_1_MILAN_P panorama_ADC919F3_85BD_3E51_41CE_2B107C377581.subtitle = J1_2_SALLE_CAFE panorama_AD43BDE9_82FC_F395_41AB_4F73620CA68E.subtitle = J1_2_SALLE_CONF_2_1 panorama_6352DF5B_790C_D657_41CA_BA9AB994EE61.subtitle = J1_BUREAU_VISITEURS_P1 panorama_6DB57359_6019_2407_41D1_368DA2614E30.subtitle = J1_SS_CELLULES panorama_6DB5A92E_6019_241D_4199_451C393B4BC6.subtitle = J1_SS_CENTRE_2 panorama_6DB5B606_6019_2C0D_41D3_F2D328B90297.subtitle = J1_SS_M9 panorama_6DB7AF07_6019_3C0B_41CC_F5FD0FBD733E.subtitle = J1_SS_POMPES Salle des pompes panorama_63348F70_2505_A402_41A8_E0CF8D9D064E.subtitle = RMN panorama_AB831C44_B41C_76B2_41A1_4083A1ED712F.subtitle = T_2_CAFET_P1 panorama_942BBFC1_8845_7161_41C8_12C857806987.subtitle = T_SS_RPE_1_P panorama_970E9D4C_884B_F167_41CB_06B54EF8053A.subtitle = Zone expériences Bât T RdC ### Titre panorama_6DB1D7F3_6019_6C0B_41C7_71A913E7FB59.label = 20 T and 6 T magnets panorama_0BC526CF_116A_CC58_41A7_CABD77C4AE24.label = 30 MW power supplies panorama_369BC13C_02FA_809F_419B_FF4EE26A0EBA.label = 30 MW power supplies album_0C033DD7_34C2_17B9_41C5_38BCA60F8584.label = Album Photo M8-basement-2 album_1154CB2C_3342_1CEF_41B2_45FA5332AC08.label = Album Photo accueil-aimant album_3B289FDA_1BDC_8ED8_41A0_0F93F903AEF3.label = Album Photo m9-basement-autre panorama_E7A31821_C6F7_81BB_41D2_477766CA1337.label = Bath room panorama_E746D780_C6FE_8F79_41CF_62B1F45420CA.label = Bath room panorama_6DB5A92E_6019_241D_4199_451C393B4BC6.label = Busbars panorama_AB831C44_B41C_76B2_41A1_4083A1ED712F.label = Cafeteria panorama_91BB7EBB_8886_1B10_41CD_9FD1E25E2854.label = Chemistry laboratory panorama_239AFA84_02E9_806F_41A7_FBADB678707D.label = Coffee corner panorama_6DB37841_6019_2407_41D5_840C1B6CEBDC.label = Conference room René Pauthenet panorama_D1F58463_C9AD_1CBF_41C3_F035EFC5B8FF.label = Conference room René Pauthenet panorama_ADC919F3_85BD_3E51_41CE_2B107C377581.label = Conference room lobby panorama_6D08AB5B_61F7_243B_4199_E2C2AC5CA150.label = Control room panorama_E730BA86_C68E_8179_4196_2B885009BF72.label = Double room panorama_942BBFC1_8845_7161_41C8_12C857806987.label = Electron paramagnetic resonance panorama_138F347D_3271_E187_41C0_297845440802.label = Experiment hall panorama_970E9D4C_884B_F167_41CB_06B54EF8053A.label = Experiment hall panorama_E17D500E_C6B3_8189_41E2_CD69C792B92D.label = Guest rooms panorama_9EEACEC2_8375_0AF0_41AE_7881DB4C094F.label = Heat exchangers panorama_8BA3E1E9_AD2C_EB3E_41DB_03FF42C7AEBC.label = Helium and nitrogen reservoirs panorama_6DB57359_6019_2407_41D1_368DA2614E30.label = High voltage cells panorama_6D07202C_61F9_241D_41CB_F24E3134A65D.label = Hybrid magnet compressor panorama_AE15B1D2_884D_1163_41E0_DB7FECC3E840.label = Hybrid magnet compressor panorama_6DB7AF07_6019_3C0B_41CC_F5FD0FBD733E.label = Hybrid magnet pumps panorama_330BD96F_2C18_0E64_41B9_2874C7A7B93D.label = Hybrid magnet site M8 panorama_0CCF143C_2CE8_05E4_4199_433ED02733FE.label = Hybrid magnet site M8 panorama_364A24AD_2BF8_06E4_41B0_B93B7E694A76.label = Hybrid magnet site M8 panorama_365971F8_2BE8_1E6C_41B5_D594D3699DEA.label = Hybrid magnet site M8 panorama_3624B922_2BE8_0F9C_41B1_7DC18B57A11F.label = Hybrid magnet site M8 panorama_E667C47A_FE66_809B_41D3_FF3E231A4124.label = Infrared optics panorama_6DB59C49_6019_1C07_41D5_2616ABE86CF8.label = J1_SS_CENTRE_1 panorama_DFA60E8F_C727_C401_41E5_92E1EC76C028.label = LNCMI entry album_0C033DD7_34C2_17B9_41C5_38BCA60F8584_0.label = M8-basement-2 panorama_6DB5B606_6019_2C0D_41D3_F2D328B90297.label = Magnet M9 - basement panorama_2C2867CC_371E_6090_41B9_FA2728DC80E0.label = Mechanical workshop panorama_F2DB88A2_620D_0D90_41CB_B76289272632.label = Mechanical workshop panorama_11721FA8_39D6_342D_41A1_1F64597EF311.label = Mechanical workshop panorama_AD43BDE9_82FC_F395_41AB_4F73620CA68E.label = Meeting room panorama_AD53070A_82FD_5097_41D5_D50B2ACE507E.label = Meeting room panorama_67017C6B_2506_A406_41BA_C6B2F1CD0565.label = Nuclear magnetic resonance panorama_63348F70_2505_A402_41A8_E0CF8D9D064E.label = Nuclear magnetic resonance map_236EAF76_0B95_CE5F_41A5_64D7C666DAC7.label = PLAN-G-RDC-1 map_0A72CC0C_14E8_ACE9_41AD_A409B1E391F8.label = PLAN_G_BASEMENT map_3D91E600_19B1_E983_41B6_2C40D74A9CA4.label = PLAN_G_R1B map_3421D134_14FB_F739_41AC_8698DE3CC175.label = PLAN_G_R2 panorama_9D852896_85DB_7ED3_41DB_593D5B4CD8FC.label = Passage panorama_4E934CC4_6C34_2C6C_41DA_525727908C5F.label = Reception panorama_58E27D5F_4E04_A504_41B6_1456A7BD57FC.label = Resistive magnet assembly panorama_58E235E9_4E04_E50C_41A1_95E4989C899C.label = Resistive magnet assembly panorama_6DB12A52_6019_2405_41D9_055F09A78FD6.label = Resistive magnet site M10 panorama_0369F063_1823_C7C6_41B4_B39CB5D1126D.label = Resistive magnet site M9 panorama_2485A480_66A4_0C83_41C8_0F3F17C4E9D1.label = Resistive magnets hall panorama_E4FDC68E_C696_8E89_41E3_8AB319624A52.label = Single room panorama_6DB1EF7B_6019_3CFB_41D6_487AC9C321F6.label = Specific heat panorama_9B5F4AFD_85DF_7251_41D7_272A57062448.label = Transformer A4 panorama_AC660B6C_85B5_5277_41BB_7EB1C038A535.label = Transport and magnetization panorama_AD3A0487_8655_36B1_4192_7F362BD23C2A.label = Transport and magnetization panorama_5653F407_1790_75CE_41B2_154C670F61F0.label = Users preparation room panorama_6352DF5B_790C_D657_41CA_BA9AB994EE61.label = Users workspace panorama_3F8EC09B_227D_2CC9_41AC_81DB7B399B64.label = Visible optics panorama_6D0816FA_61F6_EC05_4167_8B4A40063598.label = Water pumps photo_1C08526F_3342_6D69_41B8_483AF3CA452D.label = accueil-aimant-c photo_1C08526F_3342_6D69_41B8_483AF3CA452D.label = accueil-aimant-c album_3B289FDA_1BDC_8ED8_41A0_0F93F903AEF3_0.label = m9-basement-autre map_82B736F3_B4B4_8AB9_41E2_050686856854.label = plan-2-rdc ## Visite ### Description tour.description = Here, you can explore our experiment rooms and workshops \ and discover more on the facilities used by our scientists. ### Titre tour.name = Virtual Tour LNCMI - Grenoble