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> > | Some of our former FEPP students were mentioned in the Princeton Plasma Physics Laboratory Weekly Highlights Newsletter (NSTX section) One of our former FEPP undergraduate students, Pierre Avila, who joined the Physics graduate program at the University of Houston - Clear Lake was featured in the American Physical Society Bridge Program | |||||||
Summer 2015, a FEPP graduate student will graduate with a Ph.D. in Physics
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< < | Our collaborator Marco Cecconnello is the first author on a paper in Plasma Phys. Control. Fusion: | |||||||
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< < | Between April and August of 2014, FEPP undergraduate students have graduated with a B.S. in Physics
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Our collaborator Scott Allan is featured during a synopis of a CCFE tour: http://rooksheathscience.wordpress.com/2014/01/31/visit-to-culham-centre-for-fusion-energy-2/ Our undergraduate student researchers speak about their summer research experience at the CCFE during the PD installation and data collection: http://news.fiu.edu/2013/09/mcnair-students-study-protons-hidden-language-of-train-conductors-in-uk/66638 |
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Our collaborator Scott Allan is featured during a synopis of a CCFE tour: http://rooksheathscience.wordpress.com/2014/01/31/visit-to-culham-centre-for-fusion-energy-2/ Our undergraduate student researchers speak about their summer research experience at the CCFE during the PD installation and data collection: http://news.fiu.edu/2013/09/mcnair-students-study-protons-hidden-language-of-train-conductors-in-uk/66638 | ||||||||
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Energetic ion behaviour in MAST
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Our collaborator Scott Allan is featured during a synopis of a CCFE tour: http://rooksheathscience.wordpress.com/2014/01/31/visit-to-culham-centre-for-fusion-energy-2/ Our undergraduate student researchers speak about their summer research experience at the CCFE during the PD installation and data collection: http://news.fiu.edu/2013/09/mcnair-students-study-protons-hidden-language-of-train-conductors-in-uk/66638 | ||||||||
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< < | Call CCFE from the US
Transportation from Abingdon town centre to the lab | |||||||
> > | If you are not renting a car and need to plan ahead regarding working late hours at the CCFE, see CCFE Useful Travel Information for Visiting Collaborators Find the country code for calling CCFE colleagues, links for troubleshooting remote access, and information on obtaining collaborator data from XPAD. See CCFE Useful Links and Information | |||||||
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Proton Detector: Charged Fusion Products DiagnosticPlease note that though Florida International Univeristy (FIU) is collaborating with the Princeton Plasma Physics Laboratory (PPPL) and the Culham Centre for Fusion Energy (CCFE), this TWiki page is maintained by FIU collaborators (FEPP) and the page is hosted by FIU. Please see the CCFE Information section for the address of the Wiki page maintained and hosted by the CCFE. | ||||||||
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The Proton Detector is a charged fusion products diagnostic developed to study MHD instabilities. Using similar techniques that were implemented to directly measure these fast ions in conventional tokamaks, the PD is the first diagnostic to directly measure 3MeV protons from deuterium-deuterium (DD) fusion reactions in a spherical tokamak. Advantages to this system design include the size (rough estimate: smaller than a 2L soda bottle), cost, and energy resolution. | ||||||||
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Log onto CCFE Citrix network
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Proton Detector: Charged Fusion Products DiagnosticPlease note that though Florida International Univeristy (FIU) is collaborating with the Princeton Plasma Physics Laboratory (PPPL) and the Culham Centre for Fusion Energy (CCFE), this TWiki page is maintained by FIU collaborators (FEPP) and the page is hosted by FIU. Please see the CCFE Information section for the address of the Wiki page maintained and hosted by the CCFE. |
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Please note that though Florida International Univeristy (FIU) is collaborating with the Princeton Plasma Physics Laboratory (PPPL) and the Culham Centre for Fusion Energy (CCFE), this TWiki page is maintained by FIU collaborators (FEPP) and the page is hosted by FIU. Please see the CCFE Information section for the address of the Wiki page maintained and hosted by the CCFE.
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< < | The Proton Detector is a charged fusion products diagnostic created to study MHD instabilities. Most of it was designed, built, and tested at FIU. Testing also took place at the PPPL and CCFE. The PD was then installed in the Mega Amp Spherical Tokamak (MAST) to detect protons and tritons emitted from deuterium-deuterium fusion reactions in the plasma during neutral beam injection. The 4 solid-state detector array was mounted to a MAST probe arm so that the diagnostic could be inserted into the vessel at different radial positions (from the center of the tokamak). | |||||||
> > | The Proton Detector is a charged fusion products diagnostic developed to study MHD instabilities. Using similar techniques that were implemented to directly measure these fast ions in conventional tokamaks, the PD is the first diagnostic to directly measure 3MeV protons from deuterium-deuterium (DD) fusion reactions in a spherical tokamak. Advantages to this system design include the size (rough estimate: smaller than a 2L soda bottle), cost, and energy resolution. | |||||||
Changed: | ||||||||
< < | Analogue voltage signals, proportional to the energy deposited by the energetic ions, were continuously digitized at 60MHz during plasma discharges. Proton and triton pulses in these signals were identified to create pulse height spectra and particle rate plots. We are currently in the process of data analysis. We plan to help create proton and trition emission profiles of the plasma during sawtooth, fishbone, and ELM instabilities; this will include comparision to the MAST Neutron Camera data, Fission Chamber data, and TRANSP modeling. | |||||||
> > | Most of the PD was designed, built, and tested at FIU. Testing also took place at the PPPL and CCFE. It was then installed in the Mega Amp Spherical Tokamak (MAST) to detect charged products from beam-plasma fusion reactions during neutral beam injection. The 4 channel silicon surface barrier detector array was mounted to a mechanical probe arm so that the diagnostic could be inserted into the vessel at different radial positions to probe different regions in the plasma. Analogue voltage signals, directly proportional to the energy deposited by the energetic ions, were continuously digitized at 60MHz during plasma discharges. Proton and triton pulses in these signals were identified to create energy spectra and proton production rates (up to 300kHz). We are currently in the process of data analysis. We are developing techniques to fit our experimental data to create proton emission profiles of the plasma during sawtooth, fishbone, and ELM instabilities. Future work will also include a combined analysis with the MAST Neutron Camera data. Please see the FEPP group page for our research group's contact information. | |||||||
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High-Temperature Plasma Diagnostics (HTPD) 2014 | ||||||||
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Proton Detector: Charged Fusion Products Diagnostic | |||||||
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Proton Detector: Charged Fusion Products Diagnostic | |||||||
Please note that though Florida International Univeristy (FIU) is collaborating with the Princeton Plasma Physics Laboratory (PPPL) and the Culham Centre for Fusion Energy (CCFE), this TWiki page is maintained by FIU collaborators (FEPP) and the page is hosted by FIU. Please see the CCFE Information section for the address of the Wiki page maintained and hosted by the CCFE. | ||||||||
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> > | | |||||||
The Proton Detector is a charged fusion products diagnostic created to study MHD instabilities. Most of it was designed, built, and tested at FIU. Testing also took place at the PPPL and CCFE. The PD was then installed in the Mega Amp Spherical Tokamak (MAST) to detect protons and tritons emitted from deuterium-deuterium fusion reactions in the plasma during neutral beam injection. The 4 solid-state detector array was mounted to a MAST probe arm so that the diagnostic could be inserted into the vessel at different radial positions (from the center of the tokamak). Analogue voltage signals, proportional to the energy deposited by the energetic ions, were continuously digitized at 60MHz during plasma discharges. Proton and triton pulses in these signals were identified to create pulse height spectra and particle rate plots. We are currently in the process of data analysis. We plan to help create proton and trition emission profiles of the plasma during sawtooth, fishbone, and ELM instabilities; this will include comparision to the MAST Neutron Camera data, Fission Chamber data, and TRANSP modeling. | ||||||||
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Our collaborator Scott Allan is featured during a synopis of a CCFE tour: http://rooksheathscience.wordpress.com/2014/01/31/visit-to-culham-centre-for-fusion-energy-2/ Our undergraduate student researchers speak about their summer research experience at the CCFE during the PD installation and data collection: http://news.fiu.edu/2013/09/mcnair-students-study-protons-hidden-language-of-train-conductors-in-uk/66638 | ||||||||
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High-Temperature Plasma Diagnostics (HTPD) 2014
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Transportation from Abingdon town centre to the lab
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< < | ||||||||
Please note that though Florida International Univeristy (FIU) is collaborating with the Princeton Plasma Physics Laboratory (PPPL) and the Culham Centre for Fusion Energy (CCFE), this TWiki page is maintained by FIU collaborators (FEPP) and the page is hosted by FIU. Please see the CCFE Information section for the address of the Wiki page maintained and hosted by the CCFE.
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Please note that though Florida International Univeristy (FIU) is collaborating with the Princeton Plasma Physics Laboratory (PPPL) and the Culham Centre for Fusion Energy (CCFE), this TWiki page is maintained by FIU collaborators (FEPP) and the page is hosted by FIU. Please see the CCFE Information section for the address of the Wiki page maintained and hosted by the CCFE.
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Analogue voltage signals, proportional to the energy deposited by the energetic ions, were continuously digitized at 60MHz during plasma discharges. Proton and triton pulses in these signals were identified to create pulse height spectra and particle rate plots. We are currently in the process of data analysis. We plan to help create proton and trition emission profiles of the plasma during sawtooth, fishbone, and ELM instabilities; this will include comparision to the MAST Neutron Camera data, Fission Chamber data, and TRANSP modeling. | ||||||||
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Our collaborator Scott Allan is featured during a synopis of a CCFE tour: http://rooksheathscience.wordpress.com/2014/01/31/visit-to-culham-centre-for-fusion-energy-2/ | ||||||||
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< < | Staying at the lab past normal working hours? | |||||||
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Back to FEPP | ||||||||
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< < | FIU Graduate Student Scholarly Forum
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High-Temperature Plasma Diagnostics (HTPD) 2014
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The Proton Detector is a charged fusion products diagnostic created to study MHD instabilities. Most of it was designed, built, and tested at FIU. Testing also took place at the PPPL and CCFE. The PD was then installed in the Mega Amp Spherical Tokamak (MAST) to detect protons and tritons emitted from deuterium-deuterium fusion reactions in the plasma during neutral beam injection. The 4 solid-state detector array was mounted to a MAST probe arm so that the diagnostic could be inserted into the vessel at different radial positions (from the center of the tokamak). | ||||||||
Changed: | ||||||||
< < | Analogue voltage signals, proportional to the energy deposited by the energetic ions, were continuously digitized at 60MHz during plasma discharges. Proton and triton pulses in these signals were identified to create pulse height spectra and particle rate plots. We are currently in the process of data analysis. We plan to help create proton and trition emission profiles of the plasma during sawtooth, fishbone, and ELM instabilities; this will include comparision to the MAST Neutron Camera and Fission Chamber data. | |||||||
> > | Analogue voltage signals, proportional to the energy deposited by the energetic ions, were continuously digitized at 60MHz during plasma discharges. Proton and triton pulses in these signals were identified to create pulse height spectra and particle rate plots. We are currently in the process of data analysis. We plan to help create proton and trition emission profiles of the plasma during sawtooth, fishbone, and ELM instabilities; this will include comparision to the MAST Neutron Camera data, Fission Chamber data, and TRANSP modeling. | |||||||
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< < | MAST Friday Physics Seminar
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> > | Our collaborator Scott Allan is featured during a synopis of a CCFE tour: http://rooksheathscience.wordpress.com/2014/01/31/visit-to-culham-centre-for-fusion-energy-2/
Our undergraduate student researchers speak about their summer research experience at the CCFE during the PD installation and data collection: http://news.fiu.edu/2013/09/mcnair-students-study-protons-hidden-language-of-train-conductors-in-uk/66638
High-Temperature Plasma Diagnostics (HTPD) 2014 | |||||||
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< < | 55th Annual Meeting of the Division of Plasma Physics (DPP)
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Proton Detector: Charged Fusion Products Diagnostic | ||||||||
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< < | Please note that though Florida International Univeristy (FIU) is collaborating with the Princeton Plasma Physics Laboratory (PPPL) and the Culham Centre for Fusion Energy (CCFE), this TWiki page is maintained by FIU collaborators and the page is hosted by FIU. Please see the CCFE Information section for the address of the Wiki page maintained and hosted by the CCFE. | |||||||
> > | Please note that though Florida International Univeristy (FIU) is collaborating with the Princeton Plasma Physics Laboratory (PPPL) and the Culham Centre for Fusion Energy (CCFE), this TWiki page is maintained by FIU collaborators (FEPP) and the page is hosted by FIU. Please see the CCFE Information section for the address of the Wiki page maintained and hosted by the CCFE. | |||||||
The Proton Detector is a charged fusion products diagnostic created to study MHD instabilities. Most of it was designed, built, and tested at FIU. Testing also took place at the PPPL and CCFE. The PD was then installed in the Mega Amp Spherical Tokamak (MAST) to detect protons and tritons emitted from deuterium-deuterium fusion reactions in the plasma during neutral beam injection. The 4 solid-state detector array was mounted to a MAST probe arm so that the diagnostic could be inserted into the vessel at different radial positions (from the center of the tokamak). | ||||||||
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< < | Please note that though Florida International Univeristy (FIU) is collaborating with the Princeton Plasma Physics Laboratory and the Culham Centre for Fusion Energy (CCFE), this TWiki page is maintained by FIU collaborators and the page is hosted by FIU. Please see the CCFE Information section for the address of the Wiki page maintained and hosted by the CCFE. | ||||||||
> > | Please note that though Florida International Univeristy (FIU) is collaborating with the Princeton Plasma Physics Laboratory (PPPL) and the Culham Centre for Fusion Energy (CCFE), this TWiki page is maintained by FIU collaborators and the page is hosted by FIU. Please see the CCFE Information section for the address of the Wiki page maintained and hosted by the CCFE. | ||||||||
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< < | The Proton Detector’s (PD) data will yield pulse height spectra created by Protons and Tritons emitted from the plasma during Neutral Beam Injection. Validation of the subsequent PD fast ion emission plasma profile will involve MAST Neutron Camera data. Preliminary testing of PD electronics and data acquisition software occurred during neutral beam, toroidal field coil, poloidal field coil, and ELM coil testing in March 2013. Probe head manufacturing and software development will continue to prepare for a July 2013 installation in MAST. [Excerpt contributed to the Annual Report of the EURATOM/CCFE Fusion Programme 2012/13] | ||||||||
> > | The Proton Detector is a charged fusion products diagnostic created to study MHD instabilities. Most of it was designed, built, and tested at FIU. Testing also took place at the PPPL and CCFE. The PD was then installed in the Mega Amp Spherical Tokamak (MAST) to detect protons and tritons emitted from deuterium-deuterium fusion reactions in the plasma during neutral beam injection. The 4 solid-state detector array was mounted to a MAST probe arm so that the diagnostic could be inserted into the vessel at different radial positions (from the center of the tokamak). | ||||||||
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> > | Analogue voltage signals, proportional to the energy deposited by the energetic ions, were continuously digitized at 60MHz during plasma discharges. Proton and triton pulses in these signals were identified to create pulse height spectra and particle rate plots. We are currently in the process of data analysis. We plan to help create proton and trition emission profiles of the plasma during sawtooth, fishbone, and ELM instabilities; this will include comparision to the MAST Neutron Camera and Fission Chamber data. | ||||||||
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The Proton Detector’s (PD) data will yield pulse height spectra created by Protons and Tritons emitted from the plasma during Neutral Beam Injection. Validation of the subsequent PD fast ion emission plasma profile will involve MAST Neutron Camera data. Preliminary testing of PD electronics and data acquisition software occurred during neutral beam, toroidal field coil, poloidal field coil, and ELM coil testing in March 2013. Probe head manufacturing and software development will continue to prepare for a July 2013 installation in MAST. [Excerpt contributed to the Annual Report of the EURATOM/CCFE Fusion Programme 2012/13] | ||||||||
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The Proton Detector’s (PD) data will yield pulse height spectra created by Protons and Tritons emitted from the plasma during Neutral Beam Injection. Validation of the subsequent PD fast ion emission plasma profile will involve MAST Neutron Camera data. Preliminary testing of PD electronics and data acquisition software occurred during neutral beam, toroidal field coil, poloidal field coil, and ELM coil testing in March 2013. Probe head manufacturing and software development will continue to prepare for a July 2013 installation in MAST. [Excerpt contributed to the Annual Report of the EURATOM/CCFE Fusion Programme 2012/13] | ||||||||
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Current Mechanical Design June 2013
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Please note that though Florida International Univeristy (FIU) is collaborating with the Princeton Plasma Physics Laboratory and the Culham Centre for Fusion Energy (CCFE), this TWiki page is maintained by FIU collaborators and the page is hosted by FIU. Please see the CCFE Information section for the address of the Wiki page maintained and hosted by the CCFE.
| ||||||||
Changed: | ||||||||
< < | The Proton Detector’s (PD) data will yield pulse height spectra created by Protons and Tritons emitted from the plasma during Neutral Beam Injection. Validation of the subsequent PD fast ion emission plasma profile will involve MAST Neutron Camera data. Preliminary testing of PD electronics and data acquisition software occurred during neutral beam, toroidal field coil, poloidal field coil, and ELM coil testing in March 2013. Probe head manufacturing and software development will continue to prepare for a July 2013 installation in MAST. Above excerpt contributed to the Annual Report of the EURATOM/CCFE Fusion Programme 2012/13 | |||||||
> > | The Proton Detector’s (PD) data will yield pulse height spectra created by Protons and Tritons emitted from the plasma during Neutral Beam Injection. Validation of the subsequent PD fast ion emission plasma profile will involve MAST Neutron Camera data. Preliminary testing of PD electronics and data acquisition software occurred during neutral beam, toroidal field coil, poloidal field coil, and ELM coil testing in March 2013. Probe head manufacturing and software development will continue to prepare for a July 2013 installation in MAST. [Excerpt contributed to the Annual Report of the EURATOM/CCFE Fusion Programme 2012/13] | |||||||
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Installation: January 2013 |
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Proton Detector: Charged Fusion Products Diagnostic | ||||||||
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< < | Please note that though Florida International Univeristy (FIU) is collaboarting with the Princeton Plasma Physics Laboratory and the Culham Centre for Fusion Energy (CCFE), this TWiki page is maintained by FIU collaborators and the page is hosted by FIU. Please see the more information section for the address of the Wiki page maintained and hosted by the CCFE. | |||||||
> > | Please note that though Florida International Univeristy (FIU) is collaborating with the Princeton Plasma Physics Laboratory and the Culham Centre for Fusion Energy (CCFE), this TWiki page is maintained by FIU collaborators and the page is hosted by FIU. Please see the CCFE Information section for the address of the Wiki page maintained and hosted by the CCFE.
The Proton Detector’s (PD) data will yield pulse height spectra created by Protons and Tritons emitted from the plasma during Neutral Beam Injection. Validation of the subsequent PD fast ion emission plasma profile will involve MAST Neutron Camera data. Preliminary testing of PD electronics and data acquisition software occurred during neutral beam, toroidal field coil, poloidal field coil, and ELM coil testing in March 2013. Probe head manufacturing and software development will continue to prepare for a July 2013 installation in MAST.
Above excerpt contributed to the Annual Report of the EURATOM/CCFE Fusion Programme 2012/13
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Proton Detector: Charged Fusion Products Diagnostic | |||||||||
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> > | Please note that though Florida International Univeristy (FIU) is collaboarting with the Princeton Plasma Physics Laboratory and the Culham Centre for Fusion Energy (CCFE), this TWiki page is maintained by FIU collaborators and the page is hosted by FIU. Please see the more information section for the address of the Wiki page maintained and hosted by the CCFE.
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Mechanical Design Overview after June 19 2012 Meeting with PPPL Colleagues | ||||||||
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-- RamonaValenzuelaPerez - 2012-06-21
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< < | MAST DiagnosticDesign Review Materials, September 9th 2012 | |||||||
> > | MAST Diagnostic: Proton DetectorNoise Testing, 2013Collaborators travelling to MAST:
Prototype, January 2013Machine Drawings:MAST Mechanical Design Review Materials, September 9th 2012 | |||||||
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| ||||||||
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< < | Design Overview after 6/26/12 MAST Colleagues Discussion | |||||||
> > | Mechanical Design Overview after June 26 2012 MAST Colleagues Discussion | |||||||
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Changed: | ||||||||
< < | Design Overview after 06/19/12 Meeting with PPPL Colleagues | |||||||
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MAST Diagnostic | |||||||||||||||
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< < | Updated Design Overview | ||||||||||||||
> > | Design Review Materials, September 9th 2012 | ||||||||||||||
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Design Overview after 6/26/12 MAST Colleagues Discussion
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Updated Design Overview
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