A Electron Flux At 210mev Energy As A Function Of L Vertical

(a) Electron flux at 2.60 MeV energy as a function of L (vertical axis ...
(a) Electron flux at 2.60 MeV energy as a function of L (vertical axis ...
The perpendicular electron flux as a function of energy at L = 4, 4.5 ...
The perpendicular electron flux as a function of energy at L = 4, 4.5 ...
(a) Electron flux at 2.60 MeV energy as a function of L (vertical axis ...
(a) Electron flux at 2.60 MeV energy as a function of L (vertical axis ...
(a) Electron flux at 2.10 MeV energy as a function of L (vertical axis ...
(a) Electron flux at 2.10 MeV energy as a function of L (vertical axis ...
The perpendicular electron flux as a function of energy at L = 4, 4.5 ...
The perpendicular electron flux as a function of energy at L = 4, 4.5 ...
(a) Electron flux at 2.10‐MeV energy as a function of L* (vertical ...
(a) Electron flux at 2.10‐MeV energy as a function of L* (vertical ...
(a and b) Electron flux at 2.10 MeV energy as a function of L‐shell ...
(a and b) Electron flux at 2.10 MeV energy as a function of L‐shell ...
(a and b) Electron flux at 2.10 MeV energy as a function of L‐shell ...
(a and b) Electron flux at 2.10 MeV energy as a function of L‐shell ...
IPIM simulation results. (a) Electron flux as a function of energy at ...
IPIM simulation results. (a) Electron flux as a function of energy at ...
(a and b) Electron flux at 2.10 MeV energy as a function of L‐shell ...
(a and b) Electron flux at 2.10 MeV energy as a function of L‐shell ...
Electron flux variations as a function of kinetic energy and L shell ...
Electron flux variations as a function of kinetic energy and L shell ...
The electron differential number flux as a function of energy for ...
The electron differential number flux as a function of energy for ...
(left) Equatorial energetic electron flux as a function of L shell ...
(left) Equatorial energetic electron flux as a function of L shell ...
(a–d) Relativistic electron flux and wave power as a function of L ...
(a–d) Relativistic electron flux and wave power as a function of L ...
(a) The initial distribution of 304‐keV electron flux at L = 1.25 as a ...
(a) The initial distribution of 304‐keV electron flux at L = 1.25 as a ...
(a) Downward electron energy flux as a function of energy and time with ...
(a) Downward electron energy flux as a function of energy and time with ...
(Panel a) Electron flux (2.10 MeV) as a function of L* (vertical axis ...
(Panel a) Electron flux (2.10 MeV) as a function of L* (vertical axis ...
The comparison of spin‐averaged electron flux evolutions as a function ...
The comparison of spin‐averaged electron flux evolutions as a function ...
Panel (a) shows the 4.2 MeV electron flux as a function of time and ...
Panel (a) shows the 4.2 MeV electron flux as a function of time and ...
The comparison of spin‐averaged electron flux evolutions as a function ...
The comparison of spin‐averaged electron flux evolutions as a function ...
Virtual photon flux Γ as a function of energy of scattered electrons ...
Virtual photon flux Γ as a function of energy of scattered electrons ...
(a) Flux of electrons as a function of the L parameter, for two ...
(a) Flux of electrons as a function of the L parameter, for two ...
Statistical electron flux dropout properties shown as a function of ...
Statistical electron flux dropout properties shown as a function of ...
a): Electron flux as a function of the electron beam current. b ...
a): Electron flux as a function of the electron beam current. b ...
(Panel a) Electron flux (2.10 MeV) as a function of L* (vertical axis ...
(Panel a) Electron flux (2.10 MeV) as a function of L* (vertical axis ...
a): Electron flux as a function of the electron beam current. b ...
a): Electron flux as a function of the electron beam current. b ...
Panel (a) shows the 4.2 MeV electron flux as a function of time and ...
Panel (a) shows the 4.2 MeV electron flux as a function of time and ...
Evolution of electron flux at equatorial pitch angle of 85° ± 5° as a ...
Evolution of electron flux at equatorial pitch angle of 85° ± 5° as a ...
The electron number per initial energy NekeV/E0 as a function of time ...
The electron number per initial energy NekeV/E0 as a function of time ...
(From top to bottom) the electron PAD (vertical‐axis) as a function of ...
(From top to bottom) the electron PAD (vertical‐axis) as a function of ...
A double power law fit of Eq.(3) to the electron flux in the energy ...
A double power law fit of Eq.(3) to the electron flux in the energy ...
(a–i) Spin‐averaged electron flux for a given energy and L* as a ...
(a–i) Spin‐averaged electron flux for a given energy and L* as a ...
The electron differential fluxes as a function of the electron kinetic ...
The electron differential fluxes as a function of the electron kinetic ...
Data from Fig. 10 transformed as a function of 1-MeV equivalent ...
Data from Fig. 10 transformed as a function of 1-MeV equivalent ...
The distribution of the electron energy flux integrated over the energy ...
The distribution of the electron energy flux integrated over the energy ...
Electron flux vs. energy at different locations along the orbit shown ...
Electron flux vs. energy at different locations along the orbit shown ...

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