The Trustees Of Princeton University
Div Office Of Research And Project
Administration
CAGE Code: 4B486
NCAGE Code: 4B486
Status: Active
Type: Commercial Supplier
Dun & Bradstreet (DUNS): 002484665
Summary
The Trustees Of Princeton University, Div Office Of Research And Project, Administration is an Active Commercial Supplier with the Cage Code 4B486 and is tracked by Dun & Bradstreet under DUNS Number 002484665..
Address
1 Nassau Hall
Princeton NJ 08544-2001
United States
Points of Contact
Related Information
People who viewed this 'CAGE Code' also viewed...
Custom Mfg Services Inc Axiom Digital Inc Topps Electronic Services Inc Crossley Machine Co All Star Fire Protection Premier Concrete Inc Prairie Restorations Inc Alfa Systems Bracco Diagnostics Inc. Quarks Advantage Corp Book Sellers Inc Permevo Consulting Inc Premier Fastener Co Hamner Electronics Co Inc Anomaly Detection Systems Parsons Brinkerhoff Princeton Braillists Northington-Doviak Inc Advent Imaging Inc Key-Note Music Inc
Frequently Asked Questions (FAQ) for CAGE 4B486
- What is CAGE Code 4B486?
- 4B486 is the unique identifier used by NATO Organizations to reference the physical entity known as The Trustees Of Princeton University Div Office Of Research And Project Administration located at 1 Nassau Hall, Princeton NJ 08544-2001, United States.
- Who is CAGE Code 4B486?
- 4B486 refers to The Trustees Of Princeton University Div Office Of Research And Project Administration located at 1 Nassau Hall, Princeton NJ 08544-2001, United States.
- Where is CAGE Code 4B486 Located?
- CAGE Code 4B486 is located in Princeton, NJ, USA.
Contracting History for CAGE 4B486 Most Recent 25 Records
- 75F40122C00186
- An Integrated Platform For Continuous Rna Nanoparticle Formulation And Drying
- 29 Sep 2022
- An Integrated Platform For Continuous Rna Nanoparticle Formulation And Drying
- Fda Office Of Acq Grant Svcs
- Department Of Health And Human Services (Hhs)
- $2,692,771.30
- Department Of Health And Human Services (Hhs)
- 75F40122C00186
- The Purpose Of This Modification Is To Change The Cs And Co To Ian Weiss For Invoicing Purposes. All Other Terms And Conditions Remain Unchanged.
- 15 Nov 2023
- The Purpose Of This Modification Is To Change The Cs And Co To Ian Weiss For Invoicing Purposes. All Other Terms And Conditions Remain Unchanged.
- Fda Office Of Acq Grant Svcs
- Department Of Health And Human Services (Hhs)
- $2,692,771.30
- Department Of Health And Human Services (Hhs)
- 7200AA21C00087
- This Purpose Of This Reqm Is To 1) Request A Three-Month, No Cost Extension From September 30, 2022 To December 30, 2022, And (2) Change Deadlines For Milestones Under Objective #2.
- 27 Sep 2022
- This Purpose Of This Reqm Is To 1) Request A Three-Month, No Cost Extension From September 30, 2022 To December 30, 2022, And (2) Change Deadlines For Milestones Under Objective #2.
- Usaid M/Oaa
- Agency For International Development (Usaid)
- $750,000.00
- Agency For International Development (Usaid)
- 7200AA21C00087
- This Activity Will Increase Understanding Within And Across Communities To Combat Sectarianism And Intolerance And Collect Information On Racial Diversity And Equity In The Middle East And North African (Mena) Through Surveying.
- 24 Sep 2021
- This Activity Will Increase Understanding Within And Across Communities To Combat Sectarianism And Intolerance And Collect Information On Racial Diversity And Equity In The Middle East And North African (Mena) Through Surveying.
- Usaid M/Oaa
- Agency For International Development (Usaid)
- $750,000.00
- Agency For International Development (Usaid)
- 75N94021P00624
- Niddk - Equipment Transfer
- 2 Aug 2021
- Niddk - Equipment Transfer
- National Institutes Of Health Nichd
- Department Of Health And Human Services (Hhs)
- $186,298.41
- Department Of Health And Human Services (Hhs)
- W912HQ22P0055
- New Start Er20-1219 Title: Insights Into The Defluorination Mechanism Of Pfaas By Acidimicrobium Sp. Strain A6 And An Evaluation Of The Defluorination Potential Under Field-Relevant Conditions
- 7 Jun 2022
- New Start Er20-1219 Title: Insights Into The Defluorination Mechanism Of Pfaas By Acidimicrobium Sp. Strain A6 And An Evaluation Of The Defluorination Potential Under Field-Relevant Conditions
- Us Army Humphreys Engineer Ctr Spt
- Department Of Defense (Dod)
- $250,000.00
- Department Of Defense (Dod)
- N3239819P0023
- Contract To Execute,
- 13 May 2021
- Contract To Execute,
- Naval Medical Research Center
- Department Of Defense (Dod)
- $125,000.00
- Department Of Defense (Dod)
- N3239819P0023
- Malaria Study Of The P. Vivax Parasite @ Princeton University.
- 6 Jun 2019
- Malaria Study Of The P. Vivax Parasite @ Princeton University.
- Naval Medical Research Center
- Department Of Defense (Dod)
- $125,000.00
- Department Of Defense (Dod)
- W912HQ19P0108
- Er20-1219
- 23 Sep 2019
- Er20-1219
- Us Army Humphreys Engineer Ctr Spt
- Department Of Defense (Dod)
- $200,000.00
- Department Of Defense (Dod)
- N6264518C4010
- Research Periods 1-3
- 12 Jan 2023
- Research Periods 1-3
- Naval Medical Logistics Command
- Department Of Defense (Dod)
- $899,894.32
- Department Of Defense (Dod)
- N6264518C4010
- Research Periods 1-3
- 24 Sep 2021
- Research Periods 1-3
- Naval Medical Logistics Command
- Department Of Defense (Dod)
- $899,894.32
- Department Of Defense (Dod)
- DEAC0209CH11466
- Management And Operating Contract For The Management And Operation Of The Princeton Plasma Physics Laboratory (Pppl).
- 24 May 2022
- Management And Operating Contract For The Management And Operation Of The Princeton Plasma Physics Laboratory (Pppl).
- Sc Chicago Service Center
- Department Of Energy (Doe)
- $1,408,162,148.48
- Department Of Energy (Doe)
- DEAC0209CH11466
- Management And Operating Contract For The Management And Operation Of The Princeton Plasma Physics Laboratory (Pppl).
- 5 Jul 2023
- Management And Operating Contract For The Management And Operation Of The Princeton Plasma Physics Laboratory (Pppl).
- Sc Chicago Service Center
- Department Of Energy (Doe)
- $1,587,904,282.82
- Department Of Energy (Doe)
- DEAC0209CH11466
- Management And Operating Contract For The Management And Operation Of The Princeton Plasma Physics Laboratory (Pppl).
- 26 Apr 2023
- Management And Operating Contract For The Management And Operation Of The Princeton Plasma Physics Laboratory (Pppl).
- Sc Chicago Service Center
- Department Of Energy (Doe)
- $1,585,644,651.22
- Department Of Energy (Doe)
- 80GSFC19C0027
- Interstellar Mapping And Acceleration Probe (Imap) Is A Watershed Mission That Simultaneously Investigates The Acceleration Of Energetic Particles And Interaction Of The Solar Wind With The Local Interstellar Medium. Imap Will 1) Advance The Understanding Of The Temporal And Spatial Evolution Of The Boundary Region In Which The Solar Wind And Interstellar Medium Interact, 2) Identify And Advance The Understanding Of Processes Related To The Interactions Of The Magnetic Field Of The Sun And The Local Interstellar Medium, 3) Improve The Understanding Of The Composition And Properties Of The Local Interstellar Medium, And 4) Identify And Advance The Understanding Of Particle Injection And Acceleration Processes Near The Sun, In The Heliosphere And Heliosheath. Imap Is Based On A Complete And Synergistic Set Of Observations. In Situ At 1Au, This Requires Detailed Observations Of The Solar Wind Electrons And Ions Suprathermal, Pickup, And Energetic Ion Populations And Magnetic Field. For The Outer Heliosphere Interaction, It Requires Advanced Global Observations Of The Remote Plasma And Energetic Ions Over A Broad Energy Range Via Energetic Neutral Atom (Ena) Imaging, As Well As Precise Observation Of The Neutral Interstellar Atoms Penetrating The Heliosphere. Complementary Observations Of Interstellar Dust And The Uv Glow Of Interstellar Neutrals, While Not Required For The Threshold Mission, Add Important Context And Insights To Deepen Physical Understanding Of The Baseline Mission. These Observational Needs Will Require An Integrated And Coordinated Suite Of 10 Instruments That Span Both The In Situ And Remote Imaging Aspects Of The Investigation. As The Pi Institution Princeton University Oversees The Development Of Imap To Ensure Cost, Risk, And Science Objectives Are Met In The Context Of An Overall Plan To Develop, Integrate, Test, Launch, Commission, And Operate The Imap Mission. Princeton Will Develop The Solar Wind And Pickup Ion (Swapi) Instrument, Manage The Mission Science Team, Develop The Interstellar Dust Experiment (Idex) Instrument Data Pipeline, Initiate The Future Leaders Program, And Oversee The Mission Student Collaboration.
- 14 Nov 2019
- Interstellar Mapping And Acceleration Probe (Imap) Is A Watershed Mission That Simultaneously Investigates The Acceleration Of Energetic Particles And Interaction Of The Solar Wind With The Local Interstellar Medium. Imap Will 1) Advance The Understanding Of The Temporal And Spatial Evolution Of The Boundary Region In Which The Solar Wind And Interstellar Medium Interact, 2) Identify And Advance The Understanding Of Processes Related To The Interactions Of The Magnetic Field Of The Sun And The Local Interstellar Medium, 3) Improve The Understanding Of The Composition And Properties Of The Local Interstellar Medium, And 4) Identify And Advance The Understanding Of Particle Injection And Acceleration Processes Near The Sun, In The Heliosphere And Heliosheath. Imap Is Based On A Complete And Synergistic Set Of Observations. In Situ At 1Au, This Requires Detailed Observations Of The Solar Wind Electrons And Ions Suprathermal, Pickup, And Energetic Ion Populations And Magnetic Field. For The Outer Heliosphere Interaction, It Requires Advanced Global Observations Of The Remote Plasma And Energetic Ions Over A Broad Energy Range Via Energetic Neutral Atom (Ena) Imaging, As Well As Precise Observation Of The Neutral Interstellar Atoms Penetrating The Heliosphere. Complementary Observations Of Interstellar Dust And The Uv Glow Of Interstellar Neutrals, While Not Required For The Threshold Mission, Add Important Context And Insights To Deepen Physical Understanding Of The Baseline Mission. These Observational Needs Will Require An Integrated And Coordinated Suite Of 10 Instruments That Span Both The In Situ And Remote Imaging Aspects Of The Investigation. As The Pi Institution Princeton University Oversees The Development Of Imap To Ensure Cost, Risk, And Science Objectives Are Met In The Context Of An Overall Plan To Develop, Integrate, Test, Launch, Commission, And Operate The Imap Mission. Princeton Will Develop The Solar Wind And Pickup Ion (Swapi) Instrument, Manage The Mission Science Team, Develop The Interstellar Dust Experiment (Idex) Instrument Data Pipeline, Initiate The Future Leaders Program, And Oversee The Mission Student Collaboration.
- Nasa Goddard Space Flight Center
- National Aeronautics And Space Administration (Nasa)
- $16,830,450.30
- National Aeronautics And Space Administration (Nasa)
- 80GSFC19C0027
- Interstellar Mapping And Acceleration Probe (Imap) Is A Watershed Mission That Simultaneously Investigates The Acceleration Of Energetic Particles And Interaction Of The Solar Wind With The Local Interstellar Medium. Imap Will 1) Advance The Understanding Of The Temporal And Spatial Evolution Of The Boundary Region In Which The Solar Wind And Interstellar Medium Interact, 2) Identify And Advance The Understanding Of Processes Related To The Interactions Of The Magnetic Field Of The Sun And The Local Interstellar Medium, 3) Improve The Understanding Of The Composition And Properties Of The Local Interstellar Medium, And 4) Identify And Advance The Understanding Of Particle Injection And Acceleration Processes Near The Sun, In The Heliosphere And Heliosheath. Imap Is Based On A Complete And Synergistic Set Of Observations. In Situ At 1Au, This Requires Detailed Observations Of The Solar Wind Electrons And Ions Suprathermal, Pickup, And Energetic Ion Populations And Magnetic Field. For The Outer Heliosphere Interaction, It Requires Advanced Global Observations Of The Remote Plasma And Energetic Ions Over A Broad Energy Range Via Energetic Neutral Atom (Ena) Imaging, As Well As Precise Observation Of The Neutral Interstellar Atoms Penetrating The Heliosphere. Complementary Observations Of Interstellar Dust And The Uv Glow Of Interstellar Neutrals, While Not Required For The Threshold Mission, Add Important Context And Insights To Deepen Physical Understanding Of The Baseline Mission. These Observational Needs Will Require An Integrated And Coordinated Suite Of 10 Instruments That Span Both The In Situ And Remote Imaging Aspects Of The Investigation. As The Pi Institution Princeton University Oversees The Development Of Imap To Ensure Cost, Risk, And Science Objectives Are Met In The Context Of An Overall Plan To Develop, Integrate, Test, Launch, Commission, And Operate The Imap Mission. Princeton Will Develop The Solar Wind And Pickup Ion (Swapi) Instrument, Manage The Mission Science Team, Develop The Interstellar Dust Experiment (Idex) Instrument Data Pipeline, Initiate The Future Leaders Program, And Oversee The Mission Student Collaboration.
- 19 Dec 2019
- Interstellar Mapping And Acceleration Probe (Imap) Is A Watershed Mission That Simultaneously Investigates The Acceleration Of Energetic Particles And Interaction Of The Solar Wind With The Local Interstellar Medium. Imap Will 1) Advance The Understanding Of The Temporal And Spatial Evolution Of The Boundary Region In Which The Solar Wind And Interstellar Medium Interact, 2) Identify And Advance The Understanding Of Processes Related To The Interactions Of The Magnetic Field Of The Sun And The Local Interstellar Medium, 3) Improve The Understanding Of The Composition And Properties Of The Local Interstellar Medium, And 4) Identify And Advance The Understanding Of Particle Injection And Acceleration Processes Near The Sun, In The Heliosphere And Heliosheath. Imap Is Based On A Complete And Synergistic Set Of Observations. In Situ At 1Au, This Requires Detailed Observations Of The Solar Wind Electrons And Ions Suprathermal, Pickup, And Energetic Ion Populations And Magnetic Field. For The Outer Heliosphere Interaction, It Requires Advanced Global Observations Of The Remote Plasma And Energetic Ions Over A Broad Energy Range Via Energetic Neutral Atom (Ena) Imaging, As Well As Precise Observation Of The Neutral Interstellar Atoms Penetrating The Heliosphere. Complementary Observations Of Interstellar Dust And The Uv Glow Of Interstellar Neutrals, While Not Required For The Threshold Mission, Add Important Context And Insights To Deepen Physical Understanding Of The Baseline Mission. These Observational Needs Will Require An Integrated And Coordinated Suite Of 10 Instruments That Span Both The In Situ And Remote Imaging Aspects Of The Investigation. As The Pi Institution Princeton University Oversees The Development Of Imap To Ensure Cost, Risk, And Science Objectives Are Met In The Context Of An Overall Plan To Develop, Integrate, Test, Launch, Commission, And Operate The Imap Mission. Princeton Will Develop The Solar Wind And Pickup Ion (Swapi) Instrument, Manage The Mission Science Team, Develop The Interstellar Dust Experiment (Idex) Instrument Data Pipeline, Initiate The Future Leaders Program, And Oversee The Mission Student Collaboration.
- Nasa Goddard Space Flight Center
- National Aeronautics And Space Administration (Nasa)
- $16,830,450.30
- National Aeronautics And Space Administration (Nasa)
- 80GSFC19C0027
- Interstellar Mapping And Acceleration Probe (Imap) Is A Watershed Mission That Simultaneously Investigates The Acceleration Of Energetic Particles And Interaction Of The Solar Wind With The Local Interstellar Medium. Imap Will 1) Advance The Understanding Of The Temporal And Spatial Evolution Of The Boundary Region In Which The Solar Wind And Interstellar Medium Interact, 2) Identify And Advance The Understanding Of Processes Related To The Interactions Of The Magnetic Field Of The Sun And The Local Interstellar Medium, 3) Improve The Understanding Of The Composition And Properties Of The Local Interstellar Medium, And 4) Identify And Advance The Understanding Of Particle Injection And Acceleration Processes Near The Sun, In The Heliosphere And Heliosheath. Imap Is Based On A Complete And Synergistic Set Of Observations. In Situ At 1Au, This Requires Detailed Observations Of The Solar Wind Electrons And Ions Suprathermal, Pickup, And Energetic Ion Populations And Magnetic Field. For The Outer Heliosphere Interaction, It Requires Advanced Global Observations Of The Remote Plasma And Energetic Ions Over A Broad Energy Range Via Energetic Neutral Atom (Ena) Imaging, As Well As Precise Observation Of The Neutral Interstellar Atoms Penetrating The Heliosphere. Complementary Observations Of Interstellar Dust And The Uv Glow Of Interstellar Neutrals, While Not Required For The Threshold Mission, Add Important Context And Insights To Deepen Physical Understanding Of The Baseline Mission. These Observational Needs Will Require An Integrated And Coordinated Suite Of 10 Instruments That Span Both The In Situ And Remote Imaging Aspects Of The Investigation. As The Pi Institution Princeton University Oversees The Development Of Imap To Ensure Cost, Risk, And Science Objectives Are Met In The Context Of An Overall Plan To Develop, Integrate, Test, Launch, Commission, And Operate The Imap Mission. Princeton Will Develop The Solar Wind And Pickup Ion (Swapi) Instrument, Manage The Mission Science Team, Develop The Interstellar Dust Experiment (Idex) Instrument Data Pipeline, Initiate The Future Leaders Program, And Oversee The Mission Student Collaboration.
- 29 Dec 2020
- Interstellar Mapping And Acceleration Probe (Imap) Is A Watershed Mission That Simultaneously Investigates The Acceleration Of Energetic Particles And Interaction Of The Solar Wind With The Local Interstellar Medium. Imap Will 1) Advance The Understanding Of The Temporal And Spatial Evolution Of The Boundary Region In Which The Solar Wind And Interstellar Medium Interact, 2) Identify And Advance The Understanding Of Processes Related To The Interactions Of The Magnetic Field Of The Sun And The Local Interstellar Medium, 3) Improve The Understanding Of The Composition And Properties Of The Local Interstellar Medium, And 4) Identify And Advance The Understanding Of Particle Injection And Acceleration Processes Near The Sun, In The Heliosphere And Heliosheath. Imap Is Based On A Complete And Synergistic Set Of Observations. In Situ At 1Au, This Requires Detailed Observations Of The Solar Wind Electrons And Ions Suprathermal, Pickup, And Energetic Ion Populations And Magnetic Field. For The Outer Heliosphere Interaction, It Requires Advanced Global Observations Of The Remote Plasma And Energetic Ions Over A Broad Energy Range Via Energetic Neutral Atom (Ena) Imaging, As Well As Precise Observation Of The Neutral Interstellar Atoms Penetrating The Heliosphere. Complementary Observations Of Interstellar Dust And The Uv Glow Of Interstellar Neutrals, While Not Required For The Threshold Mission, Add Important Context And Insights To Deepen Physical Understanding Of The Baseline Mission. These Observational Needs Will Require An Integrated And Coordinated Suite Of 10 Instruments That Span Both The In Situ And Remote Imaging Aspects Of The Investigation. As The Pi Institution Princeton University Oversees The Development Of Imap To Ensure Cost, Risk, And Science Objectives Are Met In The Context Of An Overall Plan To Develop, Integrate, Test, Launch, Commission, And Operate The Imap Mission. Princeton Will Develop The Solar Wind And Pickup Ion (Swapi) Instrument, Manage The Mission Science Team, Develop The Interstellar Dust Experiment (Idex) Instrument Data Pipeline, Initiate The Future Leaders Program, And Oversee The Mission Student Collaboration.
- Nasa Goddard Space Flight Center
- National Aeronautics And Space Administration (Nasa)
- $16,830,450.30
- National Aeronautics And Space Administration (Nasa)
- NNG17FC93C
- Igf::Ot::Igf This Contract Is For Ibex Interstellar Boundary Explorer (Ibex) Support. This Contract Is A Result Of A Pi Transfer From Nng05ec85c. The Contractor Shall Be Responsible For The Conduct Of All Phases And Aspects Of The Ibex Mission Including: 1) Life-Cycle Project Management; 2) Design, Test, Development, And Operations (Payload, Spacecraft, Launch Vehicle, Spacecraft To Launch-Vehicle Interfaces, Launch And Flight Operations); And 3) Post-Operations Data Analysis And Archiving. In Performance Of This Effort, The Ibex Team Shall: A. Manage The Project, Provide Cost And Schedule Information To Nasa As Specified In 3.0 Management, Above. B. Provide Day-To-Day Management And Coordination Of The Project As Delegated By The Pi To The Project Manager (Pm), Including Monitoring And Reporting Technical Progress And Financial Status, Implementing The Risk Management Plan And Conducting Mission Level Reviews As Specified In Section 4.3, System Level Reviews. C. Conduct Reviews For All Payload Sensors, Payload Support Infrastructure And Associated Gse. D. Perform Scientific Analyses In Support Of The Mission Science Requirements. E. Perform Systems Engineering To Coordinate The Design Of The Instrument Complement And Spacecraft Bus Components; And To Ensure The Compatibility Of The Space-To-Ground And Network Communications. F. Perform Trade Studies To Eliminate And Mitigate Risks G. Deliver The Ibex Flight Segment To Vandenberg Air Force Base (Vafb), Support Integration With The Launch Vehicle, And Assist The Launch Operations; H. Establish The Mission Control Center (Mcc) And Ibex Science Operations And Data Analysis Center (Isoc) Including All Computers, Networks, And Operating Software, Instrument Databases And Procedures Necessary To Functionally Test And Later Control The Spacecraft; I. Hold Science Team Meetings As Well As Technical Interchange Meetings. J. Baseline The Science Requirements And Science Analysis Plan Into An Ibex Mission Definition Requirements Agreement (Mdra) And The Ibex Data Management Plan. K. Implement An Approved Mission Assurance Plan. L. Implement A Systems Engineering Function To Verify Performance Specification Compliance To The Mission Science Requirements. M. Design, Fabricate, Integrate And Test The Payload, Spacecraft, Solid Rocket Motor And Launch Vehicle Adapter, And Integrate The Ibex Flight Segment With The Launch Vehicle. N. Implement A Safety Program Including The Generation Of The Missile System Pre-Launch Safety Package (Mspsp). O. Support Launch, Perform On-Orbit Checkout, And Establish On-Orbit Data Acquisition Contact With The Payload. Within The First 30 Days After Launch, Initial Engineering And Science Checkout And Verification Of Spacecraft In-Flight Operation Will Be Performed. P. Provide The Services Of The Mcc And The Isoc. Q. Conduct The E/Po Program In Cooperation With The Identified Team Members.
- 4 Aug 2017
- Igf::Ot::Igf This Contract Is For Ibex Interstellar Boundary Explorer (Ibex) Support. This Contract Is A Result Of A Pi Transfer From Nng05ec85c. The Contractor Shall Be Responsible For The Conduct Of All Phases And Aspects Of The Ibex Mission Including: 1) Life-Cycle Project Management; 2) Design, Test, Development, And Operations (Payload, Spacecraft, Launch Vehicle, Spacecraft To Launch-Vehicle Interfaces, Launch And Flight Operations); And 3) Post-Operations Data Analysis And Archiving. In Performance Of This Effort, The Ibex Team Shall: A. Manage The Project, Provide Cost And Schedule Information To Nasa As Specified In 3.0 Management, Above. B. Provide Day-To-Day Management And Coordination Of The Project As Delegated By The Pi To The Project Manager (Pm), Including Monitoring And Reporting Technical Progress And Financial Status, Implementing The Risk Management Plan And Conducting Mission Level Reviews As Specified In Section 4.3, System Level Reviews. C. Conduct Reviews For All Payload Sensors, Payload Support Infrastructure And Associated Gse. D. Perform Scientific Analyses In Support Of The Mission Science Requirements. E. Perform Systems Engineering To Coordinate The Design Of The Instrument Complement And Spacecraft Bus Components; And To Ensure The Compatibility Of The Space-To-Ground And Network Communications. F. Perform Trade Studies To Eliminate And Mitigate Risks G. Deliver The Ibex Flight Segment To Vandenberg Air Force Base (Vafb), Support Integration With The Launch Vehicle, And Assist The Launch Operations; H. Establish The Mission Control Center (Mcc) And Ibex Science Operations And Data Analysis Center (Isoc) Including All Computers, Networks, And Operating Software, Instrument Databases And Procedures Necessary To Functionally Test And Later Control The Spacecraft; I. Hold Science Team Meetings As Well As Technical Interchange Meetings. J. Baseline The Science Requirements And Science Analysis Plan Into An Ibex Mission Definition Requirements Agreement (Mdra) And The Ibex Data Management Plan. K. Implement An Approved Mission Assurance Plan. L. Implement A Systems Engineering Function To Verify Performance Specification Compliance To The Mission Science Requirements. M. Design, Fabricate, Integrate And Test The Payload, Spacecraft, Solid Rocket Motor And Launch Vehicle Adapter, And Integrate The Ibex Flight Segment With The Launch Vehicle. N. Implement A Safety Program Including The Generation Of The Missile System Pre-Launch Safety Package (Mspsp). O. Support Launch, Perform On-Orbit Checkout, And Establish On-Orbit Data Acquisition Contact With The Payload. Within The First 30 Days After Launch, Initial Engineering And Science Checkout And Verification Of Spacecraft In-Flight Operation Will Be Performed. P. Provide The Services Of The Mcc And The Isoc. Q. Conduct The E/Po Program In Cooperation With The Identified Team Members.
- Nasa Goddard Space Flight Center
- National Aeronautics And Space Administration (Nasa)
- $8,181,711.00
- National Aeronautics And Space Administration (Nasa)
- HHSN271201700107P
- Professional Services Of Dr. Niv And Associated Personnel For Experiments Will Employ State-Of-The-Art Computational Modeling
- 5 Jul 2022
- Professional Services Of Dr. Niv And Associated Personnel For Experiments Will Employ State-Of-The-Art Computational Modeling
- National Institutes Of Health Nida
- Department Of Health And Human Services (Hhs)
- $0.00
- Department Of Health And Human Services (Hhs)
- 80GSFC19C0027
- Interstellar Mapping And Acceleration Probe (Imap) Is A Watershed Mission That Simultaneously Investigates The Acceleration Of Energetic Particles And Interaction Of The Solar Wind With The Local Interstellar Medium. Imap Will 1) Advance The Understanding Of The Temporal And Spatial Evolution Of The Boundary Region In Which The Solar Wind And Interstellar Medium Interact, 2) Identify And Advance The Understanding Of Processes Related To The Interactions Of The Magnetic Field Of The Sun And The Local Interstellar Medium, 3) Improve The Understanding Of The Composition And Properties Of The Local Interstellar Medium, And 4) Identify And Advance The Understanding Of Particle Injection And Acceleration Processes Near The Sun, In The Heliosphere And Heliosheath. Imap Is Based On A Complete And Synergistic Set Of Observations. In Situ At 1Au, This Requires Detailed Observations Of The Solar Wind Electrons And Ions Suprathermal, Pickup, And Energetic Ion Populations And Magnetic Field. For The Outer Heliosphere Interaction, It Requires Advanced Global Observations Of The Remote Plasma And Energetic Ions Over A Broad Energy Range Via Energetic Neutral Atom (Ena) Imaging, As Well As Precise Observation Of The Neutral Interstellar Atoms Penetrating The Heliosphere. Complementary Observations Of Interstellar Dust And The Uv Glow Of Interstellar Neutrals, While Not Required For The Threshold Mission, Add Important Context And Insights To Deepen Physical Understanding Of The Baseline Mission. These Observational Needs Will Require An Integrated And Coordinated Suite Of 10 Instruments That Span Both The In Situ And Remote Imaging Aspects Of The Investigation. As The Pi Institution Princeton University Oversees The Development Of Imap To Ensure Cost, Risk, And Science Objectives Are Met In The Context Of An Overall Plan To Develop, Integrate, Test, Launch, Commission, And Operate The Imap Mission. Princeton Will Develop The Solar Wind And Pickup Ion (Swapi) Instrument, Manage The Mission Science Team, Develop The Interstellar Dust Experiment (Idex) Instrument Data Pipeline, Initiate The Future Leaders Program, And Oversee The Mission Student Collaboration.
- 28 Sep 2023
- Interstellar Mapping And Acceleration Probe (Imap) Is A Watershed Mission That Simultaneously Investigates The Acceleration Of Energetic Particles And Interaction Of The Solar Wind With The Local Interstellar Medium. Imap Will 1) Advance The Understanding Of The Temporal And Spatial Evolution Of The Boundary Region In Which The Solar Wind And Interstellar Medium Interact, 2) Identify And Advance The Understanding Of Processes Related To The Interactions Of The Magnetic Field Of The Sun And The Local Interstellar Medium, 3) Improve The Understanding Of The Composition And Properties Of The Local Interstellar Medium, And 4) Identify And Advance The Understanding Of Particle Injection And Acceleration Processes Near The Sun, In The Heliosphere And Heliosheath. Imap Is Based On A Complete And Synergistic Set Of Observations. In Situ At 1Au, This Requires Detailed Observations Of The Solar Wind Electrons And Ions Suprathermal, Pickup, And Energetic Ion Populations And Magnetic Field. For The Outer Heliosphere Interaction, It Requires Advanced Global Observations Of The Remote Plasma And Energetic Ions Over A Broad Energy Range Via Energetic Neutral Atom (Ena) Imaging, As Well As Precise Observation Of The Neutral Interstellar Atoms Penetrating The Heliosphere. Complementary Observations Of Interstellar Dust And The Uv Glow Of Interstellar Neutrals, While Not Required For The Threshold Mission, Add Important Context And Insights To Deepen Physical Understanding Of The Baseline Mission. These Observational Needs Will Require An Integrated And Coordinated Suite Of 10 Instruments That Span Both The In Situ And Remote Imaging Aspects Of The Investigation. As The Pi Institution Princeton University Oversees The Development Of Imap To Ensure Cost, Risk, And Science Objectives Are Met In The Context Of An Overall Plan To Develop, Integrate, Test, Launch, Commission, And Operate The Imap Mission. Princeton Will Develop The Solar Wind And Pickup Ion (Swapi) Instrument, Manage The Mission Science Team, Develop The Interstellar Dust Experiment (Idex) Instrument Data Pipeline, Initiate The Future Leaders Program, And Oversee The Mission Student Collaboration.
- Nasa Goddard Space Flight Center
- National Aeronautics And Space Administration (Nasa)
- $29,327,352.06
- National Aeronautics And Space Administration (Nasa)
- DEAC0209CH11466
- Management And Operating Contract For The Management And Operation Of The Princeton Plasma Physics Laboratory (Pppl).
- 27 Jun 2022
- Management And Operating Contract For The Management And Operation Of The Princeton Plasma Physics Laboratory (Pppl).
- Sc Chicago Service Center
- Department Of Energy (Doe)
- $1,424,699,997.09
- Department Of Energy (Doe)
- DEAC0209CH11466
- Management And Operating Contract For The Management And Operation Of The Princeton Plasma Physics Laboratory (Pppl).
- 27 Apr 2022
- Management And Operating Contract For The Management And Operation Of The Princeton Plasma Physics Laboratory (Pppl).
- Sc Chicago Service Center
- Department Of Energy (Doe)
- $1,408,162,148.48
- Department Of Energy (Doe)
- DEAC0209CH11466
- Management And Operating Contract For The Management And Operation Of The Princeton Plasma Physics Laboratory (Pppl).
- 19 May 2023
- Management And Operating Contract For The Management And Operation Of The Princeton Plasma Physics Laboratory (Pppl).
- Sc Chicago Service Center
- Department Of Energy (Doe)
- $1,585,644,651.22
- Department Of Energy (Doe)
- DEAC0209CH11466
- Management And Operating Contract For The Management And Operation Of The Princeton Plasma Physics Laboratory (Pppl).
- 26 Sep 2023
- Management And Operating Contract For The Management And Operation Of The Princeton Plasma Physics Laboratory (Pppl).
- Sc Chicago Service Center
- Department Of Energy (Doe)
- $1,669,866,185.63
- Department Of Energy (Doe)
- NNG17FC93C
- This Contract Is For Ibex Interstellar Boundary Explorer (Ibex) Support. This Contract Is A Result Of A Pi Transfer From Nng05ec85c. The Contractor Shall Be Responsible For The Conduct Of All Phases And Aspects Of The Ibex Mission Including: 1) Life-Cycle Project Management 2) Design, Test, Development, And Operations (Payload, Spacecraft, Launch Vehicle, Spacecraft To Launch-Vehicle Interfaces, Launch And Flight Operations) And 3) Post-Operations Data Analysis And Archiving. In Performance Of This Effort, The Ibex Team Shall: A. Manage The Project, Provide Cost And Schedule Information To Nasa As Specified In 3.0 Management, Above. B. Provide Day-To-Day Management And Coordination Of The Project As Delegated By The Pi To The Project Manager (Pm), Including Monitoring And Reporting Technical Progress And Financial Status, Implementing The Risk Management Plan And Conducting Mission Level Reviews As Specified In Section 4.3, System Level Reviews. C. Conduct Reviews For All Payload Sensors, Payload Support Infrastructure And Associated Gse. D. Perform Scientific Analyses In Support Of The Mission Science Requirements. E. Perform Systems Engineering To Coordinate The Design Of The Instrument Complement And Spacecraft Bus Components And To Ensure The Compatibility Of The Space-To-Ground And Network Communications. F. Perform Trade Studies To Eliminate And Mitigate Risks G. Deliver The Ibex Flight Segment To Vandenberg Air Force Base (Vafb), Support Integration With The Launch Vehicle, And Assist The Launch Operations H. Establish The Mission Control Center (Mcc) And Ibex Science Operations And Data Analysis Center (Isoc) Including All Computers, Networks, And Operating Software, Instrument Databases And Procedures Necessary To Functionally Test And Later Control The Spacecraft I. Hold Science Team Meetings As Well As Technical Interchange Meetings. J. Baseline The Science Requirements And Science Analysis Plan Into An Ibex Mission Definition Requirements Agreement (Mdra) And The Ibex Data Management Plan. K. Implement An Approved Mission Assurance Plan. L. Implement A Systems Engineering Function To Verify Performance Specification Compliance To The Mission Science Requirements. M. Design, Fabricate, Integrate And Test The Payload, Spacecraft, Solid Rocket Motor And Launch Vehicle Adapter, And Integrate The Ibex Flight Segment With The Launch Vehicle. N. Implement A Safety Program Including The Generation Of The Missile System Pre-Launch Safety Package (Mspsp). O. Support Launch, Perform On-Orbit Checkout, And Establish On-Orbit Data Acquisition Contact With The Payload. Within The First 30 Days After Launch, Initial Engineering And Science Checkout And Verification Of Spacecraft In-Flight Operation Will Be Performed. P. Provide The Services Of The Mcc And The Isoc. Q. Conduct The E/Po Program In Cooperation With The Identified Team Members.
- 23 Sep 2022
- This Contract Is For Ibex Interstellar Boundary Explorer (Ibex) Support. This Contract Is A Result Of A Pi Transfer From Nng05ec85c. The Contractor Shall Be Responsible For The Conduct Of All Phases And Aspects Of The Ibex Mission Including: 1) Life-Cycle Project Management 2) Design, Test, Development, And Operations (Payload, Spacecraft, Launch Vehicle, Spacecraft To Launch-Vehicle Interfaces, Launch And Flight Operations) And 3) Post-Operations Data Analysis And Archiving. In Performance Of This Effort, The Ibex Team Shall: A. Manage The Project, Provide Cost And Schedule Information To Nasa As Specified In 3.0 Management, Above. B. Provide Day-To-Day Management And Coordination Of The Project As Delegated By The Pi To The Project Manager (Pm), Including Monitoring And Reporting Technical Progress And Financial Status, Implementing The Risk Management Plan And Conducting Mission Level Reviews As Specified In Section 4.3, System Level Reviews. C. Conduct Reviews For All Payload Sensors, Payload Support Infrastructure And Associated Gse. D. Perform Scientific Analyses In Support Of The Mission Science Requirements. E. Perform Systems Engineering To Coordinate The Design Of The Instrument Complement And Spacecraft Bus Components And To Ensure The Compatibility Of The Space-To-Ground And Network Communications. F. Perform Trade Studies To Eliminate And Mitigate Risks G. Deliver The Ibex Flight Segment To Vandenberg Air Force Base (Vafb), Support Integration With The Launch Vehicle, And Assist The Launch Operations H. Establish The Mission Control Center (Mcc) And Ibex Science Operations And Data Analysis Center (Isoc) Including All Computers, Networks, And Operating Software, Instrument Databases And Procedures Necessary To Functionally Test And Later Control The Spacecraft I. Hold Science Team Meetings As Well As Technical Interchange Meetings. J. Baseline The Science Requirements And Science Analysis Plan Into An Ibex Mission Definition Requirements Agreement (Mdra) And The Ibex Data Management Plan. K. Implement An Approved Mission Assurance Plan. L. Implement A Systems Engineering Function To Verify Performance Specification Compliance To The Mission Science Requirements. M. Design, Fabricate, Integrate And Test The Payload, Spacecraft, Solid Rocket Motor And Launch Vehicle Adapter, And Integrate The Ibex Flight Segment With The Launch Vehicle. N. Implement A Safety Program Including The Generation Of The Missile System Pre-Launch Safety Package (Mspsp). O. Support Launch, Perform On-Orbit Checkout, And Establish On-Orbit Data Acquisition Contact With The Payload. Within The First 30 Days After Launch, Initial Engineering And Science Checkout And Verification Of Spacecraft In-Flight Operation Will Be Performed. P. Provide The Services Of The Mcc And The Isoc. Q. Conduct The E/Po Program In Cooperation With The Identified Team Members.
- Nasa Goddard Space Flight Center
- National Aeronautics And Space Administration (Nasa)
- $8,470,711.00
- National Aeronautics And Space Administration (Nasa)