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Jay R Johnson

Princeton University

$1,765,388
Attributed
$4,375,219
Total exposure
13
Grants
5
Lead (contact PI)

Attributed= this PI's even-split share of every grant they're on (the fair, additive number). Exposure = full size of all those grants.

Funding over time

peak $750.2K · FY200724
$1M$750K$500K$250K$0
'07
'08
'09
'10
'11
'12
'13
'14
'15
'16
'17
'18
'19
'20
'21
'22
'23
'24

Funding mix

By agency

NSF$4,375,219 · 13

By mechanism

$4,375,219 · 13

Top collaborators

Grant awards (13)

Collaborative Research: CEDAR--Effects of Ionospheric Density Irregularities on High-Frequency Radio Wave Propagation$333,016
· FY2024 · GEO
Collaborative Research: GEM--Radiation Belt Losses Using Combined Global Hybrid and Test Particle Simulations$385,656
· FY2021 · GEO · contact PI
Collaborative Research: GEM--Global Propagation Characteristics of Electromagnetic Ion Cyclotron Waves$285,534
· FY2017 · GEO
Collaborative Research: GEM--Comparing Simulations of Electron Acceleration in Kinetic Alfven Waves with Observations from the Van Allen Probes in the Inner Magnetosphere$1,241
· FY2017 · GEO
GEM: Mode Conversion and Kinetic Alfven Waves at the Magnetopause and Their Effects in the Magnetosphere$460,367
· FY2014 · GEO
INSPIRE Track 1: Concept Development for Active Magnetospheric, Radiation Belt, and Ionospheric Experiments using In-situ Relativistic Electron Beam Injection$750,200
· FY2013 · GEO
Identification of Underlying Dynamics of the Magnetosphere$360,000
· FY2011 · GEO
GEM: Ion Outflow Effects on Plasma Sheet Filling and Transport$398,601
· FY2009 · GEO · contact PI
GEM: Cusp Particle Energization from Waves$300,000
· FY2008 · GEO
Plasma Transport at the Magnetospheric Flank Boundary$420,604
· FY2007 · GEO
Thin Ionization Layer of the Enhanced Aurora$324,000
· FY2004 · GEO · contact PI
GEM: Self-Consistent Model for Regions of Downward Auroral Current$268,000
· FY2002 · GEO · contact PI
GEM: Self-Consistent Model for Regions of Downward Auroral Current$88,000
· FY2001 · GEO · contact PI