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  • Part # P103535VAR = $50 portable bottle of 65% Ar 35% Ethane (10 day lead time) ...put one lead from the HV power supply onto the DVM and then the other DVM lead onto the GEM foil). Set the DVM to mV scale and don't set it to measure cu
    2 KB (296 words) - 03:18, 8 December 2012
  • ...ept for right below the source, where there was small pin hole through the lead. Placed directly above the source is a finger detector that is in hardware
    721 bytes (111 words) - 00:14, 20 May 2016
  • ...the both sides, front layer was 20.4 cm and bottom one 5 cm. There was not lead on top of HpGe detector<br>
    878 bytes (132 words) - 01:10, 24 June 2007
  • ==Neutron and Photon Flux Through Lead== ...sults illustrate how much of the initial beam actually made it through the lead.
    4 KB (566 words) - 15:42, 11 July 2012
  • |Layers of lead
    300 bytes (42 words) - 06:22, 5 February 2009
  • Made lead brick tube 6/4/2021 ...le:PAS_Lead_Tunnel_2.jpg|300px|thumb|center|Looking down the center of the lead tunnel. Detector will be mounted at the far end ]]
    1 KB (172 words) - 03:15, 5 June 2021
  • A 30 cm radius lead collimator is position within the wall. Lead Collimator is 15 cm in radius with a 1/4" diameter hole.
    2 KB (381 words) - 22:44, 1 July 2014
  • ...et, poly, and stand,Installed 3rd collimator wall, D30 has one 1/16" thick lead curtain [[File:Rate2nC_5302.png|40px]][[File:Run5302_ToF_Histograms.png|40p ...r magnet, poly, and stand,Installed 3rd collimator wall, D30 has '''NO''' lead curtain [[File:Rate2nC_5303.png|40px]][[File:Run5303_ToF_Histograms.png|40p
    13 KB (1,995 words) - 20:58, 27 September 2016
  • The lead in front of the neutron detectors was removed. Run 1930 shows the results ...collimation hole was blocked on the accelerator hall side with 8 inches of lead. Run 1923 is with a no physics target.
    3 KB (577 words) - 21:39, 27 April 2011
  • Black lead shot collimator increased neutron flux by factor 2? Black lead shot collimator increased neutron flux by factor 2?
    4 KB (566 words) - 06:29, 5 February 2009
  • 3: Replaced steel wall with 5 cm thick lead shielding brick 4: Replaced lead brick with 6.7 cm thick paraffin block ( Paraffin N.F. , Household wax made
    8 KB (1,249 words) - 18:49, 29 June 2007
  • Definition of Lead Bismuth
    306 bytes (44 words) - 16:37, 11 February 2016
  • ...width , 1.3 A Peak , 180.4 Hz , small Scint at .725 m and 1.45 m, added 2" lead on beam right side of magnet || ||[[File:R6275-R6276Overlay.png|200px]] | ...width , 1.3 A Peak , 180.4 Hz , small Scint at .725 m and 1.45 m, added 2" lead on beam right side of magnet || ||[[File:R6275-R6276Overlay.png|200px]] |
    4 KB (603 words) - 00:12, 16 June 2017
  • ...nd the beam line. Scattered photons may produce background neutrons in the lead shielding of neutron detectors. ...ot have many photons which are energetic enough to produce neutrons in the lead.
    3 KB (564 words) - 15:12, 11 April 2011
  • [[Neutron scattering in lead shielding]]
    365 bytes (45 words) - 00:01, 13 October 2016
  • * Red - Lead brick ='''Lead'''=
    2 KB (299 words) - 16:38, 19 July 2021
  • ==Neutron and Photon Flux Through Lead== ...sults illustrate how much of the initial beam actually made it through the lead.
    6 KB (851 words) - 20:51, 2 October 2012
  • * Lead: Detector surrounded on 4 sides by 1" lead. Front end up to 4" of lead. Back end exposed. * Poly: Up to 40cm of green poly between lead and source (line-of-sight). No poly elsewhere.
    5 KB (674 words) - 18:47, 11 May 2021
  • ...mV, All detectors at -1500 V except D30 which is at HV =-1450, r'''eplaced lead beam dump with Aluminum, 8" center + 4" radially out (ie double brick near ...30 mV, All detectors at -1500 V except D30 which is at HV =-1450, replaced lead beam dump with Aluminum, 8" center + 4" radially out (ie double brick near
    5 KB (731 words) - 16:16, 11 November 2016
  • There was 2" of lead in front of the Det G. Det G was placed on the floor.
    662 bytes (104 words) - 23:12, 7 December 2012

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