Grant For Research NNX17AI18G

Award Date 3/10/17
Potential Completion Date 8/10/22
Potential Value $774K
NAICS Category
Not listed
Federal Contract Vehicle
Set-Aside Type
No Set-Aside Used
Extent Competed
Full and Open Competition
Major Defense Program
Not listed
Pricing Type
Other
Place of Performance
Lee, NH 03824, USA
Solicitation Procedures
Basic Research
Number Of Offers Received
Not listed
Legislative Mandate
Not listed
National Interest Action
Not listed
Research Type
Not listed
Primary Consortia Member
Not listed
Similar Awards
This federal contract award is a $542,119.37 grant for research awarded by the National Aeronautics and Space Administration (NASA) to the University of New Hampshire (UNH), operating through its Office of Sponsored Research. The project will investigate the turbulence in the slow solar wind and solar ejecta using a three-dimensional hybrid kinetic simulation. Key goals include identifying the nature of turbulent fluctuations, determining the ion heating processes, and assessing the partition of...
This federal contract award, with ID 80NSSC19K0829, was granted by the National Aeronautics and Space Administration (NASA) to the University of New Hampshire (UNH), a research institution within the University System of New Hampshire. The $665,685 grant is for a research project that will involve a mix of theory, simulation, and data analysis to study the nonlinear evolution of Alfvén waves and slow waves in the solar wind, taking into account the parametric decay instability and mutual...
The National Aeronautics and Space Administration (NASA) awarded a $714,410.00 grant to the University of New Hampshire (UNH), part of the University System of New Hampshire (USNH), to conduct research on plasma instabilities driven by thermal ion distribution functions in the solar wind. The award does not have a set-aside designation. UNH has experience providing research, technical assistance, and education services to U.S. federal agencies such as the Environmental Protection Agency,...
This federal contract award is a $278,979 grant from the National Aeronautics and Space Administration (NASA) to the University of New Hampshire (UNH), operating through the University System of New Hampshire (USNH). The contract, awarded on August 1, 2019, is for research related to analyzing solar wind transients and their effects on the Earth's magnetosphere. The work will be conducted through July 31, 2024 and does not have a set-aside designation. As the prime contractor, UNH will...
This is a $46,265 grant awarded by the National Aeronautics and Space Administration (NASA) to the University of New Hampshire (UNH), operating through its Office of Sponsored Research, to study "The Ion Strahl and Its Contribution to Solar Wind Energization in Different Types of Solar Wind". The grant supports solar physics research and has a period of performance through March 2026. UNH, a non-profit 1862 land grant university, frequently serves as a prime contractor and...
This federal contract award, valued at $664,424.05, was granted by NASA to the University of New Hampshire (UNH), operating through its Office of Sponsored Research. The objective is to conduct a comprehensive investigation of the early development and propagation of a series of coronal mass ejections (CMEs) and the associated solar energetic particle (SEP) acceleration. The research will combine data analysis of remote-sensing observations of the solar corona and in-situ measurements, as well...
The U.S. National Aeronautics and Space Administration (NASA) awarded a $1,452,748.00 grant to the University of New Hampshire (UNH), through its Office of Sponsored Research, to conduct research on "Tracing the Flow of Energy that Heats and Accelerates Solar-Wind Streams that Originate in Coronal Holes." This research grant has an ultimate completion date of October 18, 2026. UNH, as the prime contractor, has a history of providing research, technical assistance, and educational...
This is a grant award from the National Aeronautics and Space Administration (NASA) to the University of New Hampshire (UNH), through its Office of Sponsored Research, for a research project on plasma turbulence in the solar wind. The award, valued at $611,917.74, will support an extensive program of investigations involving hybrid simulations, data analysis, and theoretical modeling to explore the driving of turbulence by interstellar pickup ions in the outer solar system. The research aims...
The University of New Hampshire (UNH), through its Office of Sponsored Research, has been awarded an $817,526 grant by the National Aeronautics and Space Administration (NASA) to study the science goals and objectives of how the solar wind flowing past the terrestrial magnetosphere changes over time, including abruptly. No set-aside designation was used for this award. Work will be performed at a location in Lee, New Hampshire and is expected to be completed by December 31, 2024. UNH will...
This federal contract award with ID 80NSSC19K0914 was issued by the National Aeronautics and Space Administration (NASA) to the University of New Hampshire (UNH), which is part of the University System of New Hampshire (USNH). The $872,263.00 grant funds research into the evolution and interaction of transient phenomena, such as interplanetary coronal mass ejections and small flux ropes, and their effects on galactic cosmic rays in the inner heliosphere. The research leverages data from...

This federal contract award, valued at $773,969.13, was granted by the National Aeronautics and Space Administration (NASA) to the University of New Hampshire (UNH), a non-profit, 1862 land grant educational institution, to conduct research on the behavior of alpha particles in the solar wind. The project aims to develop analytical theories and numerical simulations to better understand the differential flow, anisotropic heating, and abundance variations of helium in the solar wind. The research team will compare simulation results with spacecraft observations to validate the models. This award is not associated with a set-aside contract vehicle and is part of NASA's broader program to "discover and characterize fundamental processes that occur both within the heliosphere and throughout the universe."

Generated 4/2/25, 7:47 PM